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NL2022343B1 - Set of coupling assemblies for a board for board sports - Google Patents

Set of coupling assemblies for a board for board sports Download PDF

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Publication number
NL2022343B1
NL2022343B1 NL2022343A NL2022343A NL2022343B1 NL 2022343 B1 NL2022343 B1 NL 2022343B1 NL 2022343 A NL2022343 A NL 2022343A NL 2022343 A NL2022343 A NL 2022343A NL 2022343 B1 NL2022343 B1 NL 2022343B1
Authority
NL
Netherlands
Prior art keywords
shoe
coupling
arm
receiving unit
leaf spring
Prior art date
Application number
NL2022343A
Other languages
Dutch (nl)
Inventor
Zuijdwijk Rik
Original Assignee
Eminent Boardsports B V
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Eminent Boardsports B V filed Critical Eminent Boardsports B V
Priority to NL2022343A priority Critical patent/NL2022343B1/en
Priority to EP20700536.4A priority patent/EP3906099A1/en
Priority to CA3163575A priority patent/CA3163575A1/en
Priority to AU2020205206A priority patent/AU2020205206A1/en
Priority to PCT/NL2020/050002 priority patent/WO2020141979A1/en
Priority to US17/420,533 priority patent/US11731029B2/en
Application granted granted Critical
Publication of NL2022343B1 publication Critical patent/NL2022343B1/en

Links

Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C10/00Snowboard bindings
    • A63C10/02Snowboard bindings characterised by details of the shoe holders
    • A63C10/10Snowboard bindings characterised by details of the shoe holders using parts which are fixed on the shoe, e.g. means to facilitate step-in
    • A63C10/103Snowboard bindings characterised by details of the shoe holders using parts which are fixed on the shoe, e.g. means to facilitate step-in on the sides of the shoe
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C10/00Snowboard bindings
    • A63C10/14Interfaces, e.g. in the shape of a plate
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C10/00Snowboard bindings
    • A63C10/16Systems for adjusting the direction or position of the bindings
    • A63C10/18Systems for adjusting the direction or position of the bindings about a vertical rotation axis relative to the board
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B32/00Water sports boards; Accessories therefor
    • B63B32/30Water skis fastened to the user's feet; Accessories specially adapted therefor
    • B63B32/35Bindings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B32/00Water sports boards; Accessories therefor
    • B63B32/40Twintip boards; Wakeboards; Surfboards; Windsurfing boards; Paddle boards, e.g. SUP boards; Accessories specially adapted therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B32/00Water sports boards; Accessories therefor
    • B63B32/40Twintip boards; Wakeboards; Surfboards; Windsurfing boards; Paddle boards, e.g. SUP boards; Accessories specially adapted therefor
    • B63B32/45Fixation means for feet of the board user, e.g. footstraps

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)

Abstract

The present invention relates to a set of coupling assemblies comprising a right coupling assembly and a left coupling assembly being configured to be mounted on a board for board sports and to receive respectively a right boot and a left boot, wherein the right and left coupling assembly comprise an inner receiving unit and outer receiving unit, wherein each inner receiving unit comprises a locking arm which is pivotable about a main inner pivot axis from a locked position to a released position and vice versa, wherein each inner receiving unit comprises a pull mechanism comprising: - at least one elongate interlink member which extends between the two inner receiving units, and - a link pull member configured to engage the boot or the inner boot coupling part and to receive a pull force from the boot or boot coupling part when the boot or boot coupling part is no longer held by the coupling assembly and moves away from the coupling assembly, and to be pulled over a pull distance by said boot or by the boot coupling part, wherein the pull mechanism is configured to transfer the pull force and the pull distance to the at least one elongate interlink member, and to convert the pull distance in an nterlink pull distance of the elongate interlink member, and wherein said interlink pull distance pivots the locking arm of the other coupling assembly from the locking position to the released position, thereby releasing the other boot.

Description

P33919NLOO/WHA/MLI Title: Set of coupling assemblies for a board for board sports
FIELD OF THE INVENTION The present invention relates to a set of coupling assemblies for a board for board sports in which two feet of the user are connected to the board. The set of coupling assemblies is in particular suitable for wakeboards, kitesurf boards, snowboards and monoski’s. Such sets of coupling assemblies are known in the prior art.
BACKGROUND OF THE INVENTION It is known that wake boarding or kite surfing brings along with it a risk of crashes and associated injuries. Injuries may occur in particular if the wakeboard or kite surfboard “hooks” into the water with one of the edges and subsequently exerts a large pulling force on the body of the wakeboarder or kite surfer. Typical injuries are knee injuries or neck injuries. There is not much that a wakeboarder or kite surfer can do to mitigate this risk.
In the field of the art, several attempts have been made to create a solution to this problem. These attempts are based on the idea that the board should come loose from the feet of the user when the forces between the board and the feet become too large. To this end, special coupling assemblies have been developed.
However, many requirements apply and to this date, to our knowledge no one has achieved a product that complies with all the requirements.
A first requirement is that both feet should come loose simultaneously or almost simultaneously.
Another requirement is that the coupling assemblies should be resistant to sand and salt water, and the functioning of the coupling assemblies should not be disadvantageously affected by sand or salt water. In particular ingress of sand between mechanical parts should not result in malfunctioning.
-2- Another requirement is that the coupling assemblies should be relatively small and lightweight. If the coupling assembly is too bulky or too heavy, it would negatively affect the performance.
Another requirement is that the operation should be quite easy. In particular when a wakeboarder or kite surfer (or generally user) starts, it should be relatively easy to position the boots in the couplings and to fasten the couplings to the boots. This is in particular the case because sometimes, a user needs to do this on the water, where the wakeboard or kite surfboard has no grip on its surroundings. Any attempt to put the feet on the board with some pressure on the board will result in pushing the board away. This is quite different from a ski binding. The user is also in a relatively uncomfortable position, having his feet quite high.
Furthermore, the board itself may flex during use. This flex should not disadvantageously affect the safety couplings. Further, vice versa, the safety coupling should also not negatively affect the flex. Flex of the board is very important in most board sports. The safety coupling should also not disadvantageously affect the control which the user has over the board, because control over the board is also important.
One system known from the prior art is disclosed in US5029890. This system is based on having one coupling at the toe end of the boot, and one coupling at the heel end of the boot. It was recognized in the present invention that this is not a very good solution. In particular the couplings are far removed from the location of the attachment points of boards in board sport, which are near the centreline of the board. Also in case of a user with large feet but a small board, the coupling may extend beyond the edge of the board which is undesirable.
Furthermore, the system of US5029890 is quite complicated. In particular when the boots come loose and need to be reconnected to the coupling assemblies underwater, this is quite difficult. Furthermore, the adapter connected to the boot is quite cumbersome and makes it difficult to walk on the boot, see figure 3.
Furthermore, the system of US5029890 may get jammed as a result of sand entering the spaces around the holding pin 14a and the locking pin 18. This creates a risk that when one boot comes loose from the coupling, the other coupling does not come loose. It was recognized in the present invention that one of the causes of this problem is the operating principle of US5029890.
The system of US5029890 is based on a pretensioned push force for the locking pin 18. When the shoe comes loose, the pretensioned push force created by the compression spring 16
23. releases. However, the shoe itself or the adapter connected to the shoe doesn't do anything besides coming loose and releasing the pretension. WO2012074884A1 discloses another system. This system is based on compression forces created by compression springs, see for instance figures 5-7. It was recognized in the present invention that systems based on compression forces and compression springs are unreliable, because the compression springs can deteriorate over time, resulting in a reduced compression force. Furthermore, sand may enter the cavities of the system and can jam the various mechanical parts of the system, resulting in a risk of injuries.
EP039/969A1 discloses another system. In this system, when a boot comes loose, it has no further function in the working of the system. The system itself creates a pull force in order to release the other coupling. However, the pull force is created by a pretension delivered by springs, see figure 4. Such springs can deteriorate over time and loose spring force. Such a deterioration will result in an unreliable system, and risk of injuries. FR2630922 discloses another system based on similar operating principles as the previous systems.
SUMMARY OF THE INVENTION The invention provides a set of coupling assemblies comprising a right coupling assembly and a left coupling assembly, the set of coupling assemblies being configured to be mounted on a board for board sports in which both feet of a user are connected to a single board, wherein the board is in particular a wakeboard, a kiteboard, a snowboard, or a monoski, wherein the right coupling assembly is configured to receive a right boot and comprises: - aright inner receiving unit configured to receive and engage an inner boot coupling part which is positioned on a left side of the right boot, - aright outer receiving unit configured to receive and engage an outer boot coupling part which is positioned on a right side of the right boot, wherein the left coupling assembly is configured to receive a left boot and comprises: - aleft inner receiving unit configured to receive and engage an inner boot coupling part which is positioned on a right side of the left boot, - a left outer receiving unit configured to receive and engage an outer boot coupling part which is positioned on a left side of the left boot,
-4- wherein each outer receiving unit comprises an outer locking element configured to engage the outer boot coupling part and to hold the outer boot coupling part in place, characterized in that each inner receiving unit comprises a locking arm which is pivotable about a main inner pivot axis from a locked position to a released position and vice versa, wherein the locking arm comprises an inner locking cam configured to engage the inner boot coupling part and to hold the inner boot coupling part in place, wherein each inner receiving unit comprises a pull mechanism connected to the locking arm, the pull mechanism comprising: - at least one elongate interlink member which extends between the two inner receiving units and interlinks the two inner receiving units, and - a link pull member configured to engage the boot or the inner boot coupling part and to receive a pull force from the boot or boot coupling part when the boot or boot coupling part is no longer held by the coupling assembly and moves away from the coupling assembly, and to be pulled over a pull distance by said boot or by the boot coupling part, wherein the pull mechanism is configured to transfer the pull force and the pull distance to the at least one elongate interlink member, and to convert the pull distance in an interlink pull distance of the elongate interlink member, and wherein said interlink pull distance pivots the locking arm of the other coupling assembly from the locking position to the released position, thereby releasing the other boot.
The set of coupling assemblies is based on the principle that the boot from the released coupling assembly pulls the other coupling assembly to the released state.
The pulling action is safer and provides a better guarantee that the other coupling assembly releases.
The boot which is released is able to generate a considerable force.
This force is effectively used to release the other coupling.
In an embodiment, wherein each inner receiving unit comprises a release arm pivotably connected to the locking arm and being pivotable relative to the locking arm about a release arm pivot axis, wherein each release arm comprises a cable connector to which an end of an elongate interlink member is connected.
In an embodiment the set comprises a first elongate interlink member and a second elongate interlink member, wherein the first elongate interlink member is connected at one end to the link pull member of the right coupling assembly and connected at the opposite end to the release arm of the left coupling assembly and wherein the second elongate interlink
-5. member is connected at one end to the link pull member of the left coupling assembly and connected at the opposite end to the release arm of the right coupling assembly. An opposite end of that elongate interlink member is connected to the release arm of the inner receiving unit of the other coupling assembly, and wherein the pull force exerted by the elongate interlink member pivots the release arm of that other inner receiving unit relative to the associated locking arm, and wherein the release arm in turn pulls the locking arm of that other inner receiving unit from the locked position to the released position. In an embodiment, the inner or outer receiving unit of each coupling assembly comprises a force release mechanism configured to release the inner locking cam or outer locking element when a force on the locking cam or the outer locking element exceeds a threshold force. The force release mechanism ensures that the coupling assemblies releases the boot when necessary. In an alternative embodiment, the force release mechanism does not form part of the coupling assembly but is part of a boot adapter.
In an embodiment, the link pull member of each coupling assembly comprises a pull protrusion configured to be pulled by the inner boot coupling part, in particular in a direction away from the locking arm. In an embodiment, the force release mechanism of the inner or outer receiving unit comprises: - a leaf spring, the leaf spring comprising a fixed part which is configured to be fixed to the board and a movable part , wherein the movable part is not fixed to the board, wherein the movable part of the leaf spring is configured to move in a direction away from the board when a force is exerted on the movable part of the leaf spring, said force flexing the leaf spring, - a stop configured to be fixed to the board, wherein the outer or inner receiving unit comprises: o ahold and release component being connected to the movable part of the leaf spring, the hold and release component comprising the locking cam configured to engage the outer or inner boot coupling part and to hold the outer boot coupling part in place, o athreshold part configured to engage the stop, and wherein when the force on the movable part of the leaf spring is below the threshold force the hold and release component is held in place by the stop which acts on the threshold part, and
-6- when the force on the movable part of the leaf spring exceeds the threshold force, the threshold part disengages from the stop and the hold and release component releases the inner or outer boot coupling part.
The present invention further relates to a boot adapter set comprising a right boot adapter and a left boot adapter configured to be connected to or to be integrated with respectively a right boot and a left boot, wherein the right and left boot adapter are each configured to be connected to a coupling assembly on a wakeboard, kiteboard, snowboard, or a monoski, each of the right and left boot adapter comprising: — an inner boot coupling part configured to be positioned at an inner side of the boot and configured to engage an inner receiving unit of a coupling assembly for a board, wherein the inner boot coupling part comprises an inner contact surface which faces upward, — an outer boot coupling part configured to be positioned at an outer side of the boot and configured to engage an outer receiving unit of a coupling assembly for a board, wherein the outer boot coupling part comprises an outer contact surface which faces upward.
The boot adapter set is configured to work with the set of coupling assemblies according to the invention.
In a separate, independent aspect, a coupling assembly is provided for a ski or board for board sports, the coupling assembly comprising at least one receiving unit for receiving a boot coupling part connected to a boot or integrated with a boot, the coupling assembly comprising a force release mechanism comprising : - a leaf spring, the leaf spring comprising a fixed part which is configured to be fixed to the board and a movable part , wherein the movable part is not fixed to the board, wherein the movable part of the leaf spring is configured to move in a direction away from the board when a force is exerted on the movable part of the leaf spring, said force flexing the leaf spring, - a stop configured to be fixed to the board, wherein the at least one receiving unit comprises: o ahold and release component being connected to the movable part of the leaf spring, the hold and release component comprising the locking cam configured to engage the boot coupling part and to hold the boot coupling part in place, o a threshold part configured to engage the stop, and
-7- wherein when the force on the movable part of the leaf spring is below the threshold force the hold and release component is held in place by the stop which acts on the threshold part, and when the force on the movable part of the leaf spring exceeds the threshold force, the threshold part disengages from the stop and the hold and release component releases the boot coupling part. The coupling assembly provides a robust and reliable way of releasably coupling a boot to a ski or to a board for board sports.
These and other aspects of the invention will be more readily appreciated as the same becomes better understood by reference to the following detailed description and considered in connection with the accompanying drawings in which like reference symbols designate like parts.
SHORT DESCRIPTION OF THE FIGURES Figure 1 shows an isometric view of a set of a first embodiment of the invention, the set comprising a board, boots and coupling assemblies. Figure 2 shows an isometric view of the boot and the coupling assembly of the first embodiment. Figure 3 shows an isometric view of the coupling assembly and the boot adapter of the first embodiment. Figure 4 shows another isometric view of the coupling assembly and the boot adapter of the first embodiment. Figure 5 shows a top view of a coupling assembly and a boot adapter of the first embodiment. Figures 6 and 7 show sectional side views of the coupling assembly and the boot adapter of the first embodiment. Figures 8, 9 and 10 show respectively a top view, side view and sectional view of a set of the first embodiment. Figures 11A and 11B show sectional side views of the set when being released. Fig. 12 shows an isometric view of a second embodiment of the invention. Fig. 13 shows an isometric view of a the coupling assembly of the second embodiment. Figs 14A and 14B show a top view and a side view of the coupling assembly. Figs 15A, 15B and 15C show top views of the leaf spring.
-8- Fig. 16 shows another isometric view of a the coupling assembly of the second embodiment. Fig. 17 shows a sectional side view of the coupling assembly of the 2™ embodiment. Fig. 18 shows a detailed sectional side view of the outer receiving unit of the 2" embodiment. Figs. 19A, 19B, 19C show detailed sectional side views of the inner receiving unit of the 2" embodiment in various positions. Figs. 20 and 21 show sectional side views of the releasing outer receiving unit. Figs. 22 and 23 show sectional side views of the releasing set of coupling assemblies. Fig. 24 shows an isometric view of a third embodiment. Fig. 25 shows a top view of the third embodiment. Figures 26, 27 show respectively a side view and a sectional side view of the third embodiment. Figures 28, 29 show isometric views of the third embodiment with and without a boot adapter. Figures 30A, 30B show side views of the third embodiment at the moment of release. Figures 31, 32, show side views of the third embodiment in the released state. Figures 33, 34, show isometric views of the third embodiment in the released state. Figs. 35 and 36 show a further embodiment having magnetic parts. Figures 37-40 show an embodiment of the boot adapter. Fig. 41 shows another embodiment of the boot adapter. Fig. 42 shows another embodiment of the boot adapter. Figs. 43-45 show another embodiment of the boot adapter. Figs. 46-48 show another embodiment of the boot adapter.
DETAILED DESCRIPTION OF THE FIGURES Turning to figures 1 through 11B, the present invention relates to a set 10 of coupling assemblies comprising a right coupling assembly 12 and a left coupling assembly 14. The set may further comprise a board 16. The board 16 is a board for board sports in which both feet of a user are connected to a single board, e.g. a wakeboard, a kiteboard, a snowboard, or a monoski. The set 10 of coupling assemblies 12, 14 is configured to be mounted on the board
16.
The right coupling assembly 12 comprises: - aright inner receiving unit 18Ri configured to receive and engage an inner boot coupling part 19 which is positioned on a left side of the right boot,
-9- - aright outer receiving unit 20Ro configured to receive and engage an outer boot coupling part 21 which is positioned on a right side of the right boot, The left coupling assembly 14 comprises: - a left inner receiving unit 18Li configured to receive and engage an inner boot coupling part 19 which is positioned on a right side of the left boot, - a left outer receiving unit 20Lo configured to receive and engage an outer boot coupling part 21 which is positioned on a left side of the left boot.
The inner receiving units are commonly denoted as 18. The outer receiving units are commonly denoted as 20. The inner boot coupling part 19 is attached to the boot 40 or forms a part of the boot. The outer boot coupling part 21 is also attached to the boot or forms a part of the boot 40.
The set 10 can be used with a boot adapter set 148 comprising a right boot adapter 150 and a left boot adapter 151. Each boot adapter 150, 151 is configured to be connected to respectively a right boot 40R and a left boot 40L. The right and left boot adapter 150, 151 are each configured to be connected to one of the coupling assemblies 12, 14 on the wakeboard, kiteboard, snowboard, or a monoski.
Each of the right and left boot adapter 150, 151 comprises: — an inner boot coupling part 19 configured to be positioned at an inner side of the boot and configured to engage the inner receiving unit 18, wherein the inner boot coupling part comprises an inner contact surface 155 which faces upward, — an outer boot coupling part 21 configured to be positioned at an outer side of the boot and configured to engage an outer receiving unit of a coupling assembly for a board, wherein the outer boot coupling part 21 comprises an outer contact surface 156 which faces upward.
A side 158 of the outer boot coupling part 21 is curved. The outer boot coupling part 21 and the inner boot coupling part 19 are interconnected by a rigid plate 160, in particular a steel plate, configured to extend underneath the boot 40 from aright side 170 of the boot to a left side 171 of the boot and to project outwards on the left side and the right side of the boot when seen in top view. The outer and inner boot coupling parts 21,19 are connected to opposite outer ends 161, 162 of the rigid plate and
-10- extend upward from the rigid plate and are configured to be positioned at a right side 170 and a left side 171 of the boot 40 and configured to engage and be held by an outer receiving unit 20 of a coupling assembly 12, 14 which is mounted on the board.
The plate 160 is configured to be connected to the boot via bolts 166. The bolts can extend through slots or holes 113 in the boot. The slots may comprise relief to increase the grip of the bolts.
Each coupling assembly 12, 14 comprises a coupling base 55 via which the coupling assembly can be mounted to the board 18. The coupling base may comprise mounting holes for bolts 130. In this embodiment, the coupling base also interconnects the inner and outer receiving unit. However, it is also conceivable that the inner and outer receiving unit are not interconnected, but separate. In such an embodiment, both the inner and outer receiving unit would have a separate coupling base.
Each inner receiving unit comprises a locking arm 22 which is pivotable from a locked position 25 to a released position 26 and vice versa about a main inner pivot axis 24. The locking arm is connected to the coupling base via the main inner pivot axis 24 and two inner struts 280. The main inner pivot axis 24 of the right and left coupling assembly is oriented horizontally.
The locking arm 22 comprises an inner locking cam 28 configured to engage the inner boot coupling part 19 and to hold the inner boot coupling part in place. In the locked position of the locking arm the inner locking cam 28 faces downward.
25 Each outer receiving unit 20 comprises an outer locking element 30 configured to engage the outer boot coupling part 21 and to hold the outer boot coupling part in place. In this embodiment the outer locking element 30 comprises two openings 47 in a plate 45. The plate 45 is curved. The outer boot coupling part 21 comprises two projections 46 which are inserted in the openings 47. Obviously, a mechanical inversion is also possible.
Each inner receiving unit 18 comprises a release arm 42 pivotably connected to the locking arm 22 and being pivotable relative to the locking arm about the release arm pivot axis 49. The release arm 42 is connected to an upper end 65 of the locking arm. The main inner pivot axis 24 and the release arm pivot axis 49 are located at opposite ends of the locking arm 22. The release arm pivot axis 49 of the right and left coupling assembly is
-11 - oriented horizontally.
The main inner pivot axis 24 and the release arm pivot axis 49 are parallel.
The release arm comprises a slot 44 having a stop 61 at one end and an opening 62 atthe opposite end, wherein the boot strap comprises a slider 43 configured to be accommodated in the slot, wherein in the first position 50 the slider 43 engages the stop 81 and is held in place by the stop, and wherein in the second position 51 the slider leaves the slot via the opening thereof.
The release arm pivot axis 49 of the right and left coupling assembly is oriented transverse, in particular orthogonal to a main coupling axis 60 (see fig. 5) which extends from the inner receiving unit 18 to the outer receiving unit 20. Each coupling assembly 12, 14 further comprises a boot strap 36 (also indicated with the functional term link pull member 36 because of its function to pull the elongate interlink member 48). The boot strap 36 is configured to extend over the boot 40 (right boot 40R, left boot 40L). The boot strap 36 is resilient.
One end 37 of the boot strap 36 is connected (indirectly) to the locking arm 22. The opposite end 38 of the boot strap is connected to the outer receiving unit 20. In an alternative embodiment, the opposite end 38 may be connected to the boot 40 itself.
The end 37 is connected to the locking arm 22 via a bracket 39 and the release arm 42. The boot strap 36 is configured to provide pretension on the locking arm 22, wherein the pretension keeps the locking arm in the locked position.
The release arm 42 is pivotable relative to the locking arm between a first position 50 in which the release arm holds the boot strap 36 taut, and a second position 51 (see left side of fig. 11). The first position 50 of the release arm 42 is associated with the locked position of the locking arm 22. The second position 51 of the release arm is associated with the released position of the locking arm 22. When both the locking arm 22 and the release arm 42 are in the locked position, the locking arm 22 extends upwards from the coupling base 55 and the release arm 42 extends downwards from the upper end 65 of the locking arm.
The coupling assembly further comprises a release arm stop 54 connected to the coupling base 55. In the first position 50 of the release arm 42, the release arm rests against the release arm stop 54 and is kept in said first position by the release arm stop.
The slot 44 and the release arm 42 are curved and wherein the release arm stop 54 is curved in a corresponding manner.
-12- The inner receiving unit 18 of each coupling assembly comprises the release arm 42 comprising a strap holder, in the form of a slot 44, configured for holding an end of a boot strap 36.
The set 10 further comprises an elongate interlink member 48 which is connected at one end 56 thereof to the release arm 42 of the right coupling assembly 12 and at the opposite end 57 thereof to the release arm of the left coupling assembly 14. Each release 42 arm comprises a cable connector 55 to which the end of the elongate interlink member 48 is connected. The cable connector 55 is located at a free end of the release arm 42.
The various parts of each coupling assembly form two mechanisms which each performs a specific function and which cooperate with one another: a force release mechanism 32 and a pull mechanism 34. The force release mechanism 32 is configured to maintain the coupling assembly in the secured position when a force exerted by one of the boot coupling parts on the coupling assembly stays below a threshold force and to release the coupling assembly when a force exerted by one of the boot coupling parts on the coupling assembly exceeds a threshold force. The pull mechanism 34 is configured to ensure that when the coupling assembly releases, the other coupling assembly also releases. This prevents a situation in which one foot of the user stays attached to the board.
Some parts belong to the force release mechanism 32, some parts belong to the pull mechanism 34 and some parts belong to both the force release mechanism 32 and the pull mechanism 34.
In this embodiment the force release mechanism 32 is associated with the inner receiving unit 20 of each coupling assembly 12, 14. The force release mechanism 32 is configured to release the inner locking cam 28 when a force on the locking cam exceeds the threshold force. The force release mechanism 32 comprises at least the locking arm 22, the inner locking cam 28 and the boot strap 36. The bracket 39 including the slider 43 and the release arm 42 are also considered to form part of the force release mechanism 32.
The pull mechanism 34 is also associated with — and incorporated in - the inner receiving unit 18. The pull mechanism is connected to the locking arm 22. The pull mechanism 34 comprises: — the at least one elongate interlink member 48 which extends between the two inner receiving units 18 and interlinks the two inner receiving units, and
-13- — the boot strap 36 (also indicated with the functional term link pull member 36 because of its function to pull the elongate interlink member 48) configured to engage the boot 40 to receive a pull force from the boot or boot coupling part which is no longer held by the force release mechanism and to be pulled over a pull distance D by said boot or by the boot coupling part, — the bracket 39 and slider 43, — the release arm 42.
The pull mechanism 34 is configured to transfer the pull force Ft from the boot strap 36 (the link pull member) to the at least one elongate interlink member 48, and to convert the pull force Ft into an interlink pull force in the elongate interlink member 48. The pull mechanism also converts the distance over which the boot strap 36 pulls the slider 43 to a distance D over which the release arm 48 pulls the elongate interlink member 48. In this way, the locking arm 22 of the other coupling assembly is pivoted from the locking position to the released position, thereby releasing the other boot. The distance D is difficult to indicate in a figure because the elongate link member also moves upward as a result of the pivoting movement of the release arm 48.
Operation of first embodiment In operation, when both coupling assemblies are secured (figs. 1 — 6, 8-9), the tension force (Ft) in the boot strap 36 holds the locking arm 22 in place and ensures that the inner locking cam 28 holds the inner boot coupling part 19 secured in its place. In this state the user can safely do board sports with both feet secured to the board. The coupling assemblies 12, 14 can take serious loads without releasing.
Turning to fig. 7, when the inner boot coupling part 19 exerts a force on the inner locking cam 28 which exceeds a certain threshold force, the locking arm 22 is initially pivoted against the pretension of the boot strap 36, the locking arm 22 pivots from the locked position 25 to the released position 26. During this movement the inner locking cam 28 moves away from the inner boot coupling part 19 and the inner boot coupling part 19 is released from under the inner locking cam 28.
Turning to figures 10, 11A and 11B, subsequently the locking arm 22 is pivoted in the opposite direction under the pretension of the boot strap 36. During this movement the release arm 42 pivots about the locking arm from the first position 50 to the second position 51 as indicated by arrow A, thereby pulling the elongate interlink member 48 as indicated by arrow T in order to uncouple the other coupling assembly.
-14 - During the pivoting movement the release arm 42 also releases the boot strap 36. The boot strap 36 is released because the opening in the slot is turned in the direction from which the boot strap pulls and as a result the bracket 39 slides out of the slot 44. Figure 10, left side, shows the release arm 42 in an intermediate position during the pivoting movement from the first position 50 to the second position 51.
During the movement of the release arm 42 from the first position 50 to the second position 51 a moment M which is exerted by the force Ft from boot strap 36 on the release arm 42 about the release arm pivot axis 49 reverses as a result of a change in position of a force axis of the force Ft relative to the release arm pivot axis 49. In figure 9, this moment is clockwise, thereby pressing the release arm 42 against the release arm stop 54. In fig. 10, this moment is counter clockwise, thereby pulling the release arm 42 in a counter clockwise direction away from the release arm stop 54, upwards and over the locking arm 22 as indicated by arrow A.
The pull force exerted by the elongate interlink member pivots the release arm 42 of that other inner receiving unit relative to the associated locking arm 22. The release arm 42 in turn pulls the locking arm 22 of the other inner receiving unit 18 from the locked position to the released position by pulling the release arm 42 as shown in figs 11A and 11B.
The set 10 may comprise only the coupling assemblies 12,14. The set may also include the board 16 itself, wherein the right coupling assembly 12 and the left coupling assembly 14 are mounted on the board and wherein the right and left coupling assembly are interconnected via the at least one elongate interlink member 48. The set 10 may also comprise the coupling assemblies and the boot adapters, or the coupling assemblies, the boot adapters and the board and/or the boots.
When the coupling assemblies are mounted on the board, wherein the main inner pivot axis 24 of the right and left coupling assembly is oriented transverse to a longitudinal axis of the board. The main inner pivot axis 24 extends horizontally.
When the coupling assemblies are mounted on the board, the elongate interlink member is not under tension or under compression. This allows flexing of the board without the coupling assemblies being released. The set of coupling assemblies does not comprise a compression spring.
-15- Second embodiment Turning to figures 12-23, another embodiment of a set 10 of coupling assemblies 12, 14 according to the invention is shown. In this embodiment, the force release mechanism 32 and the pull mechanism 34 are separate. The force release mechanism 32 is associated with the outer receiving unit 20 and the pull mechanism 34 is associated with the inner receiving unit 18. In this embodiment the inner receiving unit 18 does not comprise a force release mechanism 32. Each coupling assembly 12, 14 is configured to hold the boot 40 {via the boot coupling parts) only on the left and right side thereof and not on the heal end and on the toe end of the boot.
The force release mechanism 32 comprises a leaf spring 70. The leaf spring 70 is part of the coupling base 55 and interconnects the inner and outer receiving unit. However, it is also possible that the inner and outer receiving units are separate and not interconnected. It is also possible that the inner and outer receiving unit 18, 20 are interconnected by a plate or other member which is separate from the leaf spring 70.
The leaf spring 70 comprises a fixed part 71 which is configured to be fixed to the board and a movable part 72, wherein the movable part is not fixed to the board. The movable part 72 of the leaf spring 70 is connected to the outer receiving unit 20, and wherein when seen in top view the movable part of the leaf spring is directed away from the inner receiving unit 18.
The movable part 72 of the leaf spring is configured to move in a direction 83 away from the board when a force is exerted on the movable part of the leaf spring, said force flexing the leaf spring 70. Each coupling assembly 12, 14 comprises only a single leaf spring
70.
The force release mechanism 32 comprises a stop 75 configured to be fixed to the board. The stop 75 is connected to the fixed part 71 of the leaf spring 70, but may be fixed to the board in a different way.
The force release mechanism 32 further comprises a hold and release component 76 which is connected to the movable 72 part of the leaf spring. The hold and release component comprising the outer locking element 30 configured to engage the outer boot coupling part 21 and to hold the outer boot coupling 21 part in place. The hold and release component 76 is pivotably connected to the movable 72 part of the leaf spring 70 via two outer struts 80 and a hold and release axis 81.
-16 - The hold and release component 76 is pivotable about the hold and release pivot axis
81. The hold and release pivot axis extends in particular substantially parallel to a main upper side 82 of the leaf spring 70 and extends transverse to a main longitudinal direction of the leaf spring.
The hold and release component 76 further comprises a threshold part 78 configured to engage the stop 75. An upward force exerted on the boot coupling part 21 by the boot is transferred into the hold and release component 76 via the outer locking element 30. The upward force is then transferred onto the movable part 72 of the leaf spring 70 via the hold and release axis and the outer struts 80 which are connected to the movable part 72.
The hold and release component 76 is pivotable between a secured position 84 and a released position 85. In the secured position 84 the threshold part 78 engages the stop 75, thereby preventing the hold and release component 76 from pivoting. In said secured position the boot holding surface holds the inner or outer boot coupling part in place. When the force on the movable part 72 of the leaf spring is below the threshold force the leaf spring may deform somewhat in the direction 83 as a result of which the hold and release component 76 moves upward, but not enough to release the force release mechanism 32.
The hold and release component 76 is biased to the secured position. This is carried out by the curvature of the surface 175 which adjoins the threshold part 78. The surface 175 has a curvature with a varying radius from the axis 81. Near the threshold pat 78 the radius r1 is relatively small and the radius increases to a larger radius r2 when travelling away from the threshold part. Due to the curvature, the hold and release component will be urged to the secured position. It is also possible to use an extra spring.
In the released position 85 the threshold part moves upward as indicated by arrow 83 until it is located above the stop 75 and is no longer engaged with the stop, allowing the hold and release component 76 to pivot in the direction of arrow 73 and to release the outer boot coupling part by the pivoting movement.
The leaf spring 70 comprises one or more mounting holes 86 via which it can be mounted to the board 16. The leaf spring 70 is configured to be mounted on the board with the main upper side 87 thereof oriented parallel to an upper side 17 of the board, and wherein to this end the main upper side 87 of the leaf spring extends substantially parallel to an underside 88 of the coupling base 55.
-17 - When seen in top view the fixed part 71 of the leaf spring is positioned at least partially and in particular completely between the inner receiving unit 18 and the outer receiving unit
20. When seen in top view the movable part 72 of the spring leaf extends outwardly from a location between the inner receiving unit 18 and outer receiving unit 20 to a location beyond a contour 88 of a boot position 89. The contour 88 of the boot position may be defined by the outer contour of the coupling base 55 but essentially this contour is defined by a boot 40 when the boot is positioned in the coupling assembly.
The configuration with the leaf spring 70, the hold and release component 76 and the stop 75 can be applied independently of other aspects of the present invention, for instance in a coupling of a ski.
Turning to figures 15A, 15B, 15C the coupling assembly comprises an adjustment member 90 for adjusting the stiffness of the leaf spring 70. The adjustment member 90 is in particular configured to adjust the length of the movable part 72. The adjustment member 90 can be a plate which can be mounted on top of the leaf spring 70 and fixed to the leaf spring at a number of different positions via bolts 91, 92. By varying the position of the adjustment member 90, the length L of the movable part 72 is adjusted, thereby adjusting the stiffness of the leaf spring. Fig. 15A shows the leaf spring 70 with the adjustment member in a “flexible“ position. Fig. 15A shows the leaf spring 70 with the adjustment member 90 in a “rigid “ position. Fig. 15C shows an embodiment wherein the adjustment member is slideable in a stepless manner.
In top view the adjustment member 90 is positioned between the inner receiving unit 18 and the outer receiving unit 20. The adjustment member 20 is movable in a direction substantially parallel, in particular parallel, to a main coupling axis 60 which extends between the inner receiving unit and the outer receiving unit.
The adjustment member 90 may also be a rotary unit. Other variants are also conceivable.
As an alternative to the adjustment member 90, the leaf spring 70 may be exchangeable. In this embodiment the set 10 comprising at least one additional leaf spring (typically at least two) having a different stiffness. For instance the leaf springs of the replacement set may have a different thickness or be made of a different material which is less or more resilient.
-18- In an embodiment, the movable part 72 of the leaf spring comprises a right section 94 and a left section 95 wherein when seen in top view the fixed part 71 extends between the right and left section 94,95. The hold and release component is connected to an end of the leaf spring 70 via the outer struts 80. In top view the stop 75 may be positioned in a space between the projections.
The leaf spring 70 comprises a longitudinal axis 96 which is intended and configured to be oriented parallel to a longitudinal axis 97 of the board 16. To this end the longitudinal axis 96 of the leaf spring is oriented substantially parallel, in particular parallel, to the main coupling axis 60 which extends between the inner receiving unit 18 and the outer receiving unit 20.
Turning to figures 12-23, each inner receiving unit 18 has a number of parts which are similar to the embodiment of figures 1-11B. In particular the pivotable locking arm 22 having an inner locking cam 28 and the pivotable release arm 42 are also present.
In this embodiment, the inner receiving unit 18 comprises a ramp 98 which faces upwards. The ramp 98 is curved in a concave manner, and a height 103 of the ramp increases when travelling away from inner receiving unit.
The release arm 42 comprises a second end 99 (also referred to as the free end) being configured to slide toward and away from the locking arm 22 over the ramp and to a position beyond the ramp between a release arm secured position and a release arm released position. In the release arm secured position the release arm 42 is located relatively close to the locking arm 18 and secures the locking arm in the locked position. In the release arm released position the release arm is located beyond the ramp and releases the locking arm, allowing the locking arm to pivot to its released position.
In this embodiment, the link pull member 36 of each inner receiving unit 18 is pivotably connected to the locking arm 22, in particular via a link pull member axis 136 at the upper end 65 of the locking arm 22.
The link pull member 36 of each coupling assembly 12,14 comprises a pull protrusion 101 configured to be pulled by a projection 102 on the inner boot coupling part 19 over a distance, in particular in a direction away from the locking arm 22. To this end the projection 102 comprises a surface which in use faces the boot (or boot position). The pull protrusion 101 comprises a surface which faces away from the boot (or boot position).
-19- The projection 102 and the pull protrusion 101 have a shape which bears some resemblance to a hook, but is very rounded in order to ensure that after the link pull member 36 has been pulled the pull protrusion 101 comes loose from the projection 102. This is important, because otherwise the boot would stay attached to the board.
The or inner boot coupling part comprises a projection 102 which projects upward from the inner or outer contact surface and which is configured to pull on a pull mechanism of a coupling assembly when the boot is released from the coupling assembly.
Each inner receiving unit 18 comprises a biasing member 104, in this embodiment an elastic band, configured to bias the release arm 42 toward the locking arm when the release arm is in the locked position. The elastic band is connected at one end to the locking arm 22 and at the other end to the release arm 42.
When seen in top view the coupling assembly 12, 14 has a toe side 106 and a heel side 107. When seen in top view the locking arm 22 including the inner locking cam 28 comprises a toe side part 108 located on a toe side of the link pull member 36 and a heel side part 109 located on a heel side of the link pull member 36. The link pull member 36 is located between the toe side part 108 and the heel side part 109.
In the locked position, the inner locking cam 28 faces downward and holds the inner boot coupling part 19 down under pretension, thereby holding the boot 40 down against the coupling base.
The link pull member 36 and the release arm 42 are both pivotably coupled to the locking arm 22.
The link pull member 36 is pivotably connected to the locking arm at a link pull member axis 136. The main inner pivot axis 24, the release arm pivot axis 49 and the link pull member axis 136 are parallel to one another.
The sliding end 99 of the release arm 42 is further configured to be manually movable across and beyond the ramp 98 toward and away from the locking arm 22 and can be used to manually release the inner receiving unit. A hand grip 110 is provided on the release arm to allow manual uncoupling.
-20- The set 10 comprises a first elongate interlink member 48A and a second elongate interlink member 48B. The first elongate interlink member 48A is connected at one end 120 to an end 121 of the link pull member 36 of the right coupling assembly 12 and connected at the opposite end 122 to the free end 99 of the release arm 42 of the left coupling assembly 14.
The second elongate interlink member 48B is connected at one end 120 to an end 121 of the link pull member 36 of the left coupling assembly 14 and connected at the opposite end 122 to the free end 99 of the release arm 42 of the right coupling assembly 12. Second embodiment — boot adapter Turning to figs. 46-48, each boot adapter 150, 151 comprises a rigid plate 160 which interconnects the outer and inner boot coupling parts 19, 21. The rigid plate comprises a slot
165. The slot 165 allows access to the spring leaf and the adjustment member below the slot. Bolts 166 extend through the rigid plate 160. The bolts are configured to connect each boot adapter 150,152 to a boot 40R, 40L.
The inner boot coupling part 19 comprises a projection 102 which projects upward from the inner contact surface 155 and which is configured to pull on the pull protrusion 101 of the inner receiving unit 18 when the boot is released from the coupling assembly.
A side 158 of the inner boot coupling part and outer boot coupling part is curved.
The outer contact surface 156 and the inner contact surface 155 extend at an angle a1 to the horizontal between 0 and 50 degrees, in particular about 20-40 degrees.
The contact surface 155 of the inner boot coupling part comprises a forward part 190 and a rear part 191, the forward part being located at a toe side of the coupling assembly and the rear part being located at a heel side of the coupling assembly, wherein the pull projection 101 is located between the forward part and the rear part.
Operation of second embodiment Turning in particular to figures 20-23, in use the set 10 of coupling assemblies is mounted on a board 16 for instance with the bolts 130.
A user puts on boots 40. Generally the right and left boot coupling parts 19, 21 will already be connected to his boots (or be integral with his boot). If not the user also has to connect the right and left boot coupling parts to his boots. The user then steps on the boot
-21- positions 89 with his boots and couples the boots 40 to the board with the coupling assemblies 12,14. The user positions the outer boot coupling part 21 under the outer locking element 30 of the outer receiving unit 20 and positions the inner boot coupling 19 part under the inner locking cam 28 of the inner receiving unit 18. The inner receiving unit 18 is then secured by pivoting the locking arm 22 to the locked position and pivoting the release arm 42 to the locked position by sliding the end 65 of the release arm over the ramp 98 toward the locking arm 22. The biasing member 104 urges the release arm 42 in this direction. When both feet are secured, the user is ready to go.
When in use the user falls with his front edge into the water, a pull force will be created as a result of the board decelerating by the force of the water while the body of the user continues to move forward, due to its inertia. The leaf spring 70 will deform as a result. In figures 22, 23 this is the left coupling assembly 14 but obviously it may also be the right coupling assembly 12. When the pull force on the coupling assembly 14 exceeds the threshold force, the force release mechanism 32 on the outer receiving unit 20 releases. The boot is now no longer held by the coupling assembly 14.
The foot of the user with the boot 40 and the boot coupling parts 19, 21 starts to move away from the coupling assembly 14. During this movement, the projection 102 on the inner boot coupling part 19 pulls on the pull protrusion 101 of the link pull member 36 and pull this pull protrusion 101 over a distance D. Because the link pull member 36 is connected to the release arm 42 of the other coupling assembly via the elongate link member 48B, the release arm 42 of the other coupling assembly is pulled to its released position. The release arm in turn pulls the locking arm 22 of the right coupling assembly to its released position. This releases the other coupling assembly 12. Now both feet (and boots 40) of the user are released from the board.
The second embodiment shares with the first embodiment the principle that the boot 40 or the coupling part 19 pulls on the link pull member 36 and pulls the link pull member 36 over a distance. The link pull member 36 pulls on the release arm 42 of the other coupling assembly via the elongate link member 48. The release arm 42 of the other coupling member pulls associated the locking arm 18 to the released position. There is a continuous {or uninterrupted pull action) from the boot or boot coupling part which is first released to the locking arm 18 of the other coupling assembly in both embodiments.
Also both the first and second embodiment have the pivotable locking arm 22 and the pivotable release arm 42 which is pivotably connected to the locking arm.
22.
Third embodiment Turning to figures 24-28, in a third embodiment, both the force release mechanism 32 and the pull mechanism 34 are associated with the inner receiving unit 18. The inner receiving unit comprises both the force release mechanism 32 and the pull mechanism 34.
This embodiment also comprises the leaf spring 70, but the movable part 72 of the leaf spring 70 is positioned at the inner receiving unit 18. In this embodiment the outer receiving unit does not have a force release mechanism 32.
The locking arm 22 is pivotably connected to the movable part 72 of the leaf spring. To this end the outer struts 280 are fixed to the movable part of the leaf spring. The movable part of the leaf spring is forked and comprises a separate right and separate left section. The ramp 98 is connected to 71 fixed part 71 of the leaf spring. The leaf spring extends between the inner and outer receiving unit.
The ramp 98 comprises ramp indentations 200 or ramp protrusions. The end 99 of the release arm 42 forms the threshold part 78 and is configured to engage these ramp indentations or ramp protrusions. The ramp indentations or ramp protrusions form the stop 75 which holds the force release mechanism 32 in the locked position.
The movable part 72 of the leaf spring is located at the inner receiving unit. The locking arm 22 and the release arm 42 together form the hold and release component 76.
The stop 75 is mounted to the fixed part of the leaf spring.
The outer receiving unit 20 has a relatively simple construction and comprises the outer locking element 30 which is fixed.
Turning to figures 29 and 30A, 30B, when the force exerted by the inner boot coupling part 19 on the inner locking cam 28 is present, the movable part 72 of the leaf spring flexes upward. The locking arm and the release arm also move upward, because the outer struts 280 move upward. As long as the force is lower than the threshold force, the end 99 of the release arm 42 remains locked by the indentations or protrusions 200. Once the force exceeds the threshold force, the end 99 of the release arm disengages from the stop 75 formed by the indentations. The force release mechanism 32 is now released. The outer boot
23.
coupling part 19 is nog longer held down by the inner locking cam 28. and starts to move upward.
Turning to figures 31-34, when the outer boot coupling part 19 moves upward, it pulls onthe link pull member 36. The projection 102 pulls on the pull protrusion 101 of the link pull member 36. The link pull member 36 pivots about the link pull member axis 136. The end 121 of the link pull member 36 to which the elongate link member 48B (in this example) moves over a distance D away from the other coupling assembly and pulls the release arm of the other coupling assembly over a distance D. This releases the other coupling assembly 12. Both coupling assemblies have now released the boot adapters 150.
Boot adapter The manufacturer ensures that the boot can be connected to the board, often with a part which is called a binding. Different kinds of bindings exist.
A first kind of binding uses a baseplate having holes. The baseplate is permanently attached to the boot. Bolts connect the baseplate to the board.
A second kind of binding fits around the boot and comprises a baseplate of its own. In such a binding the boot does not comprise a baseplate. Hyperlite bindings are an example of the second kind.
In a third kind of binding, serrated edges extend along the side of the boot. Separate connectors are connected to the board and engage the serrated edges. Slingshot RAD is an example of such a binding.
The present invention is intended to be placed between the board on the one hand and the boot and its connectors on the other hand. The present invention is not intended to be limited to wakeboards only, but is also suitable for kitesurfboards and, with a small modification, for snowboards.
In a first way, the boot adapter 150 comprises a plate 160 which is configured to extend underneath the boot from the right side of the boot to the left side. The boot coupling parts 19, 21 are rigidly connected to the plate 160 and extend upward from the plate 160. The plate 160 itself is connected to the boot, for instance via bolts 166. This embodiment is shown in figures 1, 2, 3 and 16, 17 and figures 46-48..
-24- Turning to figures 37-40 in another embodiment, the outer boot coupling part and the inner boot coupling part are separate parts and are each are configured to be mounted on top of the baseplate of the boot.
Turning to fig. 41, in a second embodiment, the boot coupling parts 19, 21 are connected to a binding 130 which is connected to the boot 40. The binding itself comprise a baseplate construction 132 which is configured to connect the binding to a board in a conventional way. This embodiment of the invention is a further development of a binding 130 produced by the company Hyperlite. The boot coupling parts can be connected to the binding which in turn is connected to the boot.
Turning to fig. 42 in a third embodiment, the boot coupling parts 19,21 are directly and permanently connected to a boot 40, without a separate base plate extending underneath the boot. The baseplate which is integrated in the boot is used. The boot coupling parts 19,21 may be integrated with this baseplate.
Turning to figs. 43, 44 and 45, in another embodiment, the boot adapter 150 comprises the force release mechanism 32. The force release mechanism 32 comprises a spring leaf 70. The spring leaf forms part of the plate 160 extending under the boot from the right side to the left side. The leaf spring comprising a first part 71 which is integral with the boot or configured to be fixed to the boot and at least one movable part 72 configured to deform by the force.
The leaf spring comprises a first movable part 72A and a second movable part 72B, wherein the first movable part 72A is associated with the inner boot coupling part 19 and the second movable part 72B is associated with the outer boot coupling part.
When seen in top view the first and second movable part 72A, 72B of the leaf spring 70 are configured to extend outwardly to respectively a right and left side of a boot to which the boot adapter is connected or with which the boot adapter is integral.
Turning to figures 35 and 36, in a variant of the second embodiment the right and left coupling assembly and the right and left boot adapter 150, 151 comprise at least one first magnetic part 180 and one second magnetic part 181 which engage with one another. The magnetic parts make it easier to click the boots in the coupling assemblies, in particular in the water. The magnetic part(s) 180 on the boot adapter 150 may be fixed to the rigid plate 160
25. or to the inner or outer boot coupling part 19, 21. The magnetic parts on the coupling assembly may be integrated in the leaf spring or in the inner or outer receiving unit.
The terms "a" or "an", as used herein, are defined as one or more than one. The term plurality, as used herein, is defined as two or more than two. The term another, as used herein, is defined as at least a second or more. The terms including and/or having, as used herein, are defined as comprising i.e., open language, not excluding other elements or steps.
Any reference signs in the claims should not be construed as limiting the scope of the claims or the invention. It will be recognized that a specific embodiment as claimed may not achieve all of the stated objects.
The mere fact that certain measures are recited in mutually different dependent claims does not indicate that a combination of these measures cannot be used to advantage.
White lines between text paragraphs in the text above indicate that the technical features presented in the paragraph may be considered independent from technical features discussed in a preceding paragraph or in a subsequent paragraph.

Claims (75)

-26- CONCLUSIES-26- CONCLUSIONS 1. Set (10) van koppelingsinrichtingen omvattende een rechter koppelingsinrichting (12) en een linker koppelingsinrichting (14), waarbij de koppelingsinrichtingen zijn geconfigureerd om te worden gemonteerd op een board (16) voor boardsporten waarbij beide voeten van een gebruiker verbonden zijn met het enkele board, waarbij het board met name een wakeboard, een kiteboard, een snowboard of een monoski is, waarbij de rechter koppelingsinrichting is geconfigureerd om een rechter schoen te ontvangen en omvat: — een rechter binnenste ontvangeenheid (18) die is geconfigureerd om een binnenste schoenkoppelingsdeel (19), dat aan de linkerzijde van de rechter schoen is geplaatst, te ontvangen en daarop aan te grijpen, — een rechter buiten-ontvangeenheid {20) die is geconfigureerd om een buitenste schoenkoppelingsdeel (21) dat zich aan de rechterkant van de rechter schoen bevindt, te ontvangen en daarop aan te grijpen waarbij de linker koppelingsinrichting is geconfigureerd om een linkerschoen te ontvangen en omvat: — een linker binnenste ontvangeenheid (18) die is geconfigureerd om een binnenste schoenkoppelingsdeel (19) dat zich aan de rechterkant van de linker schoen bevindt, te ontvangen en daarop aan te grijpen — een linker buitenste ontvangeenheid (20) die is geconfigureerd om een buitenste schoenkoppelingsdeel (21) dat zich aan de linkerzijde van de linker schoen bevindt, te ontvangen en daarop aan te grijpen waarbij elke buitenste ontvangeenheid een buitenste vergrendelelement (30) omvat dat is geconfigureerd om op het buitenste deel van de schoenkoppeling aan te grijpen en het buitenste deel van de schoenkoppeling op zijn plaats te houden, met het kenmerk dat elke binnenste ontvangeenheid een vergrendelarm (22) omvat die om een binnenste scharnier-as (24) kan worden gedraaid vanuit een vergrendelde positie naar een ontgrendelde positie en vice versa, waarbij de vergrendelarm een binnenste vergrendelnok (28) omvat die is geconfigureerd om op het binnenste deel van de schoenkoppeling aan te grijpen en het binnenste deel van de schoenkoppeling op zijn plaats te houden, waarbij elke binnenste ontvangeenheid een trekmechanisme (34) omvat dat verbonden is met de vergrendelarm, het trekmechanisme omvattende: - ten minste één langwerpig verbindingselement (48; 48A,48B) dat zich uitstrekt tussen de twee binnenste ontvangeenheden en de twee binnenste ontvangeenheden onderling verbindt, enA set (10) of coupling devices comprising a right coupling device (12) and a left coupling device (14), the coupling devices being configured to be mounted on a board (16) for board sports with both feet of a user connected to the single board, the board being typically a wakeboard, kiteboard, snowboard or monoski, the right coupling device configured to receive a right shoe and comprising: - a right inner receiver unit (18) configured to receive an inner shoe coupling part (19), which is placed on the left side of the right shoe, to receive and engage thereon, - a right outer receiving unit (20) configured to receive an outer shoe coupling part (21) located on the right side of the right shoe, receive and engage with the left clutch device configured to be a left shoe and includes: - a left inner receiving unit (18) configured to receive and engage an inner shoe coupling member (19) located on the right side of the left shoe - a left outer receiving unit (20) which is configured to receive and engage an outer shoe coupling portion (21) located on the left side of the left shoe, each outer receiving unit including an outer locking member (30) configured to engage the outer portion of the shoe coupling. to grip and hold the outer part of the shoe coupling in place, characterized in that each inner receiving unit comprises a locking arm (22) that can be rotated about an inner pivot axis (24) from a locked position to an unlocked position and vice versa, wherein the locking arm includes an inner locking cam (28) configured to engage the inner portion of the engaging the shoe clutch and holding the inner portion of the shoe clutch in place, each inner receiving unit comprising a pulling mechanism (34) associated with the locking arm, the pulling mechanism comprising: - at least one elongated connecting element (48; 48A, 48B) which extends between the two inner receiving units and interconnects the two inner receiving units, and -27- - een verbindingstrekelement (36) dat is geconfigureerd om op de schoen of op het binnenste deel van de schoenkoppeling aan te grijpen en een trekkracht van de schoen of het onderdeel van de schoenkoppeling te ontvangen wanneer de schoen of het onderdeel van de schoenkoppeling niet langer door de koppelingsinrichting wordt vastgehouden en zich van de koppelingsinrichting verwijdert, en om door deze schoen of door het onderdeel van de schoenkoppeling over een trekafstand (D) te worden getrokken, waarbij het trekmechanisme is geconfigureerd om de trekkracht en de trekafstand (D) over te brengen op het ten minste ene langwerpige verbindingselement (48; 48A,48B), en om de trekafstand om te zetten in een trekafstand van het langwerpig verbindingselement, en waarbij deze trekafstand de vergrendelarm (22) van de andere koppelingsinrichting (12,14) van de vergrendelpositie naar de ontgrendelde positie draait, waardoor de andere schoen wordt losgelaten.-27- - a connection puller (36) configured to engage the shoe or the inner part of the shoe clutch and receive a pulling force from the shoe or the shoe clutch part when the shoe or the shoe clutch part is no longer held by the clutch device and moves away from the clutch device, and to be pulled through this shoe or by the shoe clutch component over a pull distance (D), the pull mechanism configured to adjust the pull force and the pull distance (D) to the at least one elongated connection element (48; 48A, 48B), and to convert the pulling distance into a pulling distance of the elongate connection element, and with this pulling distance the locking arm (22) of the other coupling device (12, 14) ) from the lock position to the unlocked position, releasing the other shoe. 2. Set (10) volgens conclusie 1, waarbij elke binnenste ontvangeenheid (20) een ontgrendelarm (42) omvat die draaibaar verbonden is met de vergrendelarm (22) en draaibaar is ten opzichte van de vergrendelarm om ontgrendelarm-scharnieras (49), waarbij elke ontgrendelarm een kabelconnector (58) omvat waarop een uiteinde van een langwerpig verbindingselement (48; 48A,48B) is aangesloten.The kit (10) of claim 1, wherein each inner receiving unit (20) includes a release arm (42) pivotally connected to the locking arm (22) and rotatable relative to the locking arm about the release arm pivot axis (49), wherein each release arm includes a cable connector (58) to which one end of an elongated connector (48; 48A, 48B) is connected. 3. Set volgens de vorige conclusie, omvattende een eerste langwerpig verbindingselement (48A) en een tweede langwerpig verbindingselement (48B), waarbij het eerste langwerpig verbindingselement aan het ene uiteinde is verbonden met het verbindingstrekelement (36) van de rechter koppelingsinrichting (12) en aan het andere uiteinde met de ontgrendelarm (42) van de linker koppelingsinrichting en waarbij het tweede langwerpig verbindingselement (48B) aan het ene uiteinde is verbonden met het verbindings-trekelement van de linker koppelingsinrichting en aan het andere uiteinde met de ontgrendelarm van de rechter koppelingsinrichting.The kit according to the preceding claim, comprising a first elongated connector (48A) and a second elongated connector (48B), the first elongated connector being connected at one end to the connector extension (36) of the right connector (12) and at the other end to the left coupling device release arm (42) and the second elongated connector (48B) being connected at one end to the connector pull member of the left connector and at the other end to the release arm of the right connector . 4. Set volgens conclusie 2, waarbij een tegenovergesteld uiteinde van dat langwerpige verbindingselement is verbonden met de ontgrendelarm (42) van de binnenste ontvangeenheid van de andere koppelingsinrichting en waarbij de trekkracht die wordt uitgeoefend door het langwerpige verbindingselement de ontgrendelarm van die andere binnenste ontvangeenheid ten opzichte van de bijbehorende vergrendelarm draait en waarbij de ontgrendelarm op zijn beurt de vergrendelarm van die andere binnenste ontvangeenheid vanuit de vergrendelde positie naar de ontgrendelde positie trekt.A kit according to claim 2, wherein an opposite end of said elongate connection element is connected to the release arm (42) of the inner receiving unit of the other coupling device and wherein the pulling force applied by the elongate connection element opposes the release arm of said other inner receiving unit. pivots relative to the associated locking arm and the unlocking arm in turn pulling the locking arm of that other inner receiving unit from the locked position to the unlocked position. 5. Set (10) volgens een van de voorgaande conclusies, waarbij de binnenste of buitenste ontvangeenheid van elke koppelingsinrichting een kracht-loslaat-mechanisme (32) omvat datThe kit (10) of any preceding claim, wherein the inner or outer receiving unit of each coupling device includes a force release mechanism (32) that -28- is geconfigureerd om de binnenste vergrendelnok of het buitenste vergrendelelement vrij te geven wanneer een kracht op de vergrendelnok of op het buitenste vergrendelelement een drempelkracht overschrijdt.-28- is configured to release the inner locking cam or outer locking member when a force on the locking cam or outer locking member exceeds a threshold force. 6. Stel (10) in volgens een van de voorgaande conclusies, waarbij het trekmechanisme is opgenomen in de binnenste ontvang-eenheid.The set (10) according to any of the preceding claims, wherein the pull mechanism is incorporated in the inner receiving unit. 7. Set (10) volgens een van de conclusies 2-6, waarbij de ontgrendelarm (42) verbonden is met een boveneinde (65) van de vergrendelarm (22), waarbij de ontgrendelarm een vergrendelde positie (50) heeft, waarbij, wanneer zowel de vergrendelarm als de ontgrendelarm in de vergrendelde stand staan, de vergrendelarm (22) zich vanuit de hoofd- binnenste scharnier-as (24) omhoog uitstrekt en de ontgrendelarm (42) zich vanuit een boveneinde van de vergrendelarm naar beneden toe uitstrekt.The kit (10) of any one of claims 2-6, wherein the unlocking arm (42) is connected to an upper end (65) of the locking arm (22), the unlocking arm having a locked position (50), wherein, when both the locking arm and the unlocking arm are in the locked position, the locking arm (22) extends upward from the main inner pivot shaft (24) and the unlocking arm (42) extends downward from an upper end of the locking arm. 8. Set volgens de vorige conclusie, waarbij het verbindingstrekelement van elke binnenste ontvang-eenheid draaibaar verbonden is met de vergrendelarm, in het bijzonder aan de bovenzijde van de vergrendelarm.Set according to the preceding claim, wherein the connecting tension element of each inner receiving unit is pivotally connected to the locking arm, in particular at the top of the locking arm. 9. Set volgens een van de voorgaande conclusies, waarbij het verbindingstrekelement (36) van elke koppeling een trekuitsteeksel (101) omvat die geconfigureerd is om getrokken te worden door het binnenste deel van de koppeling van de schoen, in het bijzonder in een richting van de vergrendelarm (22) vandaan.A kit according to any one of the preceding claims, wherein the connecting extension element (36) of each coupling comprises a pulling protrusion (101) configured to be pulled through the inner part of the coupling of the shoe, in particular in a direction of the locking arm (22). 10. Set volgens een van de voorgaande conclusies, waarbij elk van de rechter- en linker koppelingsinrichting een koppelingsvoet (55) omvat via welke ten minste de binnenste ontvang-eenheid met het board kan worden verbonden, waarbij de vergrendelarm via de hoofd-binnenste scharnier-as (24) met de koppelingsvoet is verbonden.Set according to any one of the preceding claims, wherein each of the right and left coupling devices comprises a coupling base (55) through which at least the inner receiving unit can be connected to the board, the locking arm via the main inner hinge shaft (24) is connected to the coupling foot. 11. Set volgens een van de voorgaande conclusies 2-10, waarbij de hoofd-binnenste scharnier-as (24) en de scharnier-as van de ontgrendelarm (49) zich aan de tegenovergestelde uiteinden van de vergrendelarm bevinden.A kit according to any one of the preceding claims 2-10, wherein the main inner pivot axis (24) and the pivot axis of the release arm (49) are at opposite ends of the locking arm. 12. Set volgens een van de voorgaande conclusies 10-11, waarbij elke koppelingsbasis (55) de binnenste ontvang-eenheid (18) en de buitenste ontvang-eenheid (20) van de bijbehorende koppelingsinrichting verbindt.Set according to any one of the preceding claims 10-11, wherein each coupling base (55) connects the inner receiving unit (18) and the outer receiving unit (20) of the associated coupling device. 13. Set volgens een van de voorgaande conclusies, waarbij in de vergrendelde stand van de vergrendelarm (22) de vergrendelnok (28) naar beneden gericht is.Set according to one of the preceding claims, wherein in the locked position of the locking arm (22) the locking cam (28) is directed downwards. -29--29- 14. Set volgens een van de voorgaande conclusies, waarbij de hoofd-binnenste scharnier-as (24) van de rechter- en linker koppelingsinrichting horizontaal is georiënteerd.Set according to one of the preceding claims, wherein the main-inner pivot axis (24) of the right and left coupling device is oriented horizontally. 15. Set volgens een van de voorgaande conclusies 2-14, waarbij de scharnier-as (49) van de rechter- en linker koppelingsinrichting horizontaal is georiënteerd.Set according to any one of the preceding claims 2-14, wherein the pivot shaft (49) of the right and left coupling device is oriented horizontally. 16. Set volgens een van de voorgaande conclusies 2-15, waarbij de scharnier-as van de ontgrendelarm van de rechter- en linker koppelingsinrichting dwars op een hoofd- koppelingsas is georiënteerd die zich uitstrekt van de binnenste ontvang-eenheid naar de buitenste ontvang-eenheid.A kit according to any one of the preceding claims 2-15, wherein the pivot axis of the right and left coupling device release arm is oriented transversely to a main coupling axis extending from the inner receiver unit to the outer receiver unit. unit. 17. Set volgens een van de voorgaande conclusies 5-16, waarbij het kracht-loslaat- mechanisme (32) van de binnenste of buitenste ontvang-eenheid omvat: — een bladveer (70), de bladveer omvattende een vast deel (71) dat is geconfigureerd om aan het board te worden bevestigd en een beweegbaar deel (72), waarbij het beweegbare deel van de bladveer is geconfigureerd om zich in een richting te bewegen van het board vandaan wanneer een kracht wordt uitgeoefend op het beweegbare deel van de bladveer, waarbij deze kracht die de bladveer buigt, — een aanslag (75) die is geconfigureerd voor bevestiging aan het board, waarbij de buitenste of binnenste ontvang-eenheid omvat: o een vasthoud- en loslaatcomponent (76) dat verbonden is met het beweegbare deel van de bladveer, waarbij het vasthoud- en loslaatcomponent de vergrendelnok omvat die is geconfigureerd om op het buitenste of binnenste schoenkoppelingsdeel aan te grijpen en het buitenste deel van de schachtkoppeling op zijn plaats te houden, co een drempeldeel (78) dat is geconfigureerd om de aanslag in te schakelen, en waarbij, wanneer de kracht op het beweegbare deel van de bladveer onder de drempelwaarde ligt, het vasthoud- en loslaatcomponent op zijn plaats wordt gehouden door de aanslag die op het drempeldeel werkt, en wanneer de kracht op het beweegbare deel van de bladveer de drempelkracht overschrijdt, het drempeldeel loskomt van de aanslag en het vasthoud- en loslaatcomponent het binnenste of buitenste deel van de schoenkoppeling loslaat.Set according to any one of the preceding claims 5 - 16, wherein the force release mechanism (32) of the inner or outer receiving unit comprises: - a leaf spring (70), the leaf spring comprising a fixed part (71) that is configured to be attached to the board and a movable portion (72), the movable portion of the leaf spring configured to move in a direction away from the board when a force is applied to the movable portion of the leaf spring, said force bending the leaf spring, - a stop (75) configured for attachment to the board, the outer or inner receiving unit comprising: o a holding and releasing component (76) connected to the movable portion of the the leaf spring, the retaining and releasing component comprising the locking cam configured to engage the outer or inner shoe coupling portion and hold the outer portion of the shaft coupling in place, c o a threshold portion (78) configured to engage the stop, and wherein, when the force on the movable portion of the leaf spring is below the threshold, the retention and release component is held in place by the stop located on the threshold part operates, and when the force on the movable part of the leaf spring exceeds the threshold force, the threshold part disengages from the stop and the holding and releasing component releases the inner or outer part of the shoe clutch. 18. Set volgens de vorige conclusie, waarbij de bladveer deel uitmaakt van de koppelingsbasis en de binnenste en buitenste ontvangeenheid met elkaar verbindt.Set according to the preceding claim, wherein the leaf spring forms part of the coupling base and connects the inner and outer receiving units together. 19. Set volgens een van de voorgaande conclusies 17-18, waarbij het vasthoud- en loslaatcomponent (78) draaibaar is rond een vasthoud- en loslaatscharnier-as (81), waarbijThe kit of any of the preceding claims 17-18, wherein the retention and release component (78) is rotatable about a retention and release pivot axis (81), wherein -30- de vasthoud- en loslaat scharnier-as in het bijzonder in hoofdzaak parallel loopt met een hoofdvlak van de bladveer en dwars staat op een hoofdrichting van de bladveer.In particular, the holding and releasing pivot axis is substantially parallel to a major plane of the leaf spring and transverse to a major direction of the leaf spring. 20. Set volgens een van de voorgaande conclusies 18-19, waarbij de vasthoud- en loslaat component draaibaar is tussen een vastgezette positie en een vrijgegeven positie, en waarbij: in de vastgezette positie het drempeldeel (78) aangrijpt op de aanslag (75), waardoor de vasthoud- en loslaat component niet kan draaien, en waarbij in deze vastgezette positie de vergrendelnok (28, 30) het binnenste of buitenste schoenkoppelingsdeel (19,21) op zijn plaats houdt, en in de ontgrendelde positie het drempeldeel zich boven de aanslag (75) bevindt en niet meer in contact is met de aanslag, waardoor de vasthoud- en loslaat component kan draaien en het koppelingsdeel van de schoen door de draaiende beweging kan worden ontgrendeld.Set according to any of the preceding claims 18-19, wherein the holding and releasing component is rotatable between a locked position and a released position, and wherein: in the locked position the threshold member (78) engages the stop (75) preventing the retaining and releasing component from rotating, and wherein in this locked position the locking cam (28, 30) holds the inner or outer shoe engaging member (19, 21) in place, and in the unlocked position the threshold member is above the stop (75) and is no longer in contact with the stop, allowing the holding and releasing component to rotate and release the clutch portion of the shoe by the twisting motion. 21. Set volgens een van de voorgaande conclusies 19-20, waarbij de bladveer een of meer bevestigingsgaten omvat via welke de bladveer op het board kan worden gemonteerd, waarbij de bladveer is geconfigureerd om op het board te worden gemonteerd met de bovenzijde daarvan parallel aan een bovenzijde van het board, en waarbij een bovenzijde van de bladveer in hoofdzaak parallel aan een onderzijde van de koppelingsbasis loopt.The kit of any one of the preceding claims 19-20, wherein the leaf spring includes one or more mounting holes through which the leaf spring can be mounted on the board, the leaf spring being configured to be mounted on the board with its top side parallel to it. a top of the board, and wherein a top of the leaf spring is substantially parallel to a bottom of the link base. 22. Set volgens een van de voorgaande conclusies 17-21, waarbij in bovenaanzicht het vaste deel (71) van de bladveer minstens gedeeltelijk en in het bijzonder volledig tussen de binnenste ontvangeenheid en de buitenste ontvangeenheid is geplaatst.Set according to one of the preceding claims 17-21, in which, in plan view, the fixed part (71) of the leaf spring is placed at least partially and in particular completely between the inner receiving unit and the outer receiving unit. 23. Set volgens een van de voorgaande conclusies 17-22, waarbij zich in bovenaanzicht een overgang tussen het vaste deel en het beweegbare deel van het beweegbare deel van de bladveer (72) bevindt tussen de binnenste en buitenste ontvangeenheid, en waarbij de bladveer zich naar buiten uitstrekt vanuit deze overgang, in het bijzonder naar een plaats voorbij een contour (88) van een schoenpositie.Set according to any one of the preceding claims 17-22, wherein in plan view a transition between the fixed part and the movable part of the movable part of the leaf spring (72) is between the inner and outer receiving unit, and wherein the leaf spring is located extends outwardly from this transition, particularly to a location beyond a contour (88) of a shoe position. 24. Set volgens een van de voorgaande conclusies 17-23, omvattende een instelelement voor het aanpassen van de stijfheid van de bladveer, waarbij het instelelement in het bijzonder is geconfigureerd om de lengte van het beweegbare deel aan te passen.Set according to any one of the preceding claims 17-23, comprising an adjustment element for adjusting the stiffness of the leaf spring, the adjustment element being configured in particular to adjust the length of the movable part. 25. Set volgens de vorige conclusie, waarbij het instelelement zich in bovenaanzicht tussen de binnenste ontvangeenheid en de buitenste ontvangeenheid bevindt.Set according to the preceding claim, wherein the adjustment element is located between the inner receiving unit and the outer receiving unit in plan view. 26. Set volgens een van de voorgaande conclusies 17-25, waarbij de bladveer uitwisselbaar is, de set omvattende ten minste één extra bladveer met een andere stijfheid.Set according to any one of the preceding claims 17-25, wherein the leaf spring is interchangeable, the set comprising at least one extra leaf spring with a different stiffness. -31--31- 27. Set volgens een van de voorgaande conclusies 17-26, waarbij de bladveer een lengteas heeft die bedoeld en geconfigureerd is om evenwijdig aan een lengteas van het board te worden georiënteerd en waarbij de lengteas van de bladveer met het oog hierop in hoofdzaak evenwijdig, in het bijzonder parallel, is aan de hoofd-koppelingsas die zich uitstrekt tussen de binnenste ontvangeenheid en de buitenste ontvangeenheid.Set according to any one of the preceding claims 17-26, wherein the leaf spring has a longitudinal axis which is intended and configured to be oriented parallel to a longitudinal axis of the board and wherein the longitudinal axis of the leaf spring in view of this is substantially parallel, particularly parallel, is to the main coupling shaft which extends between the inner receiving unit and the outer receiving unit. 28. Set volgens een van de voorgaande conclusies 17-27, waarbij het beweegbare deel van de bladveer is verbonden met de buitenste ontvangeenheid en waarbij het beweegbare deel van de bladveer, gezien in bovenaanzicht, van de binnenste ontvangeenheid vandaan is gericht.Set according to any one of the preceding claims 17-27, wherein the movable part of the leaf spring is connected to the outer receiving unit and wherein the movable part of the leaf spring faces away from the inner receiving unit as seen in plan view. 29. Set volgens een van de conclusies 17-28, waarbij het beweegbare deel (72) van de bladveer zich op de binnenste ontvangeenheid bevindt en waarbij de vasthoud- en loslaatcomponent en de vergrendelarm zijn geïntegreerd.The kit of any one of claims 17-28, wherein the movable portion (72) of the leaf spring is on the inner receiving unit and wherein the holding and releasing component and the locking arm are integrated. 30. Set volgens een van de voorgaande conclusies 17-29, waarbij de aanslag is gemonteerd op het vaste deel van de bladveer.Set according to any one of the preceding claims 17-29, wherein the stop is mounted on the fixed part of the leaf spring. 31. Set volgens een van de voorgaande conclusies 17-30, waarbij elke koppeling slechts één bladveer omvat.Set according to any of the preceding claims 17-30, wherein each coupling comprises only one leaf spring. 32. Set volgens een van de voorgaande conclusies, waarbij elke koppeling is geconfigureerd om de schoen alleen aan de linker- en rechterkant vast te houden en niet aan de hielzijde en aan de teenzijde van de schoen.The kit of any preceding claim, wherein each clutch is configured to hold the shoe on the left and right sides only and not on the heel side and toe side of the shoe. 33. Set volgens een van de voorgaande conclusies 2-31, waarbij elke binnenste ontvang- eenheid een hellingbaan (98) omvat die naar boven gericht is, waarbij de ontgrendelarm een tweede uiteinde heeft dat geconfigureerd is om over de hellingbaan naar de vergrendelarm toe te schuiven en naar een positie voorbij de hellingbaan te schuiven, tussen een ontgrendelarm-vastgezette positie en een ontgrendelarm-loslaatpositie, waarbij: in de vastgezette positie van de ontgrendel-arm de ontgrendelarm zich relatief dicht bij de vergrendelarm bevindt en de vergrendelarm in de vergrendelde positie houdt en in de losgelaten positie van de ontgrendelarm de ontgrendelarm zich voorbij de hellingbaan bevindt en de vergrendelarm ontgrendelt, waardoor de vergrendelarm naar de ontgrendelde positie kan draaien.The kit of any of the preceding claims 2-31, wherein each inner receiving unit includes a ramp (98) facing upward, the release arm having a second end configured to travel up the ramp to the locking arm. and slide to a position beyond the ramp, between an unlock arm locked position and an unlock arm release position, where: in the locked position of the unlock arm the unlock arm is relatively close to the locking arm and the lock arm is in the locked position and in the released position of the release arm, the release arm is past the ramp and the locking arm unlocks, allowing the locking arm to rotate to the unlocked position. -32--32- 34. Set volgens de vorige conclusie, waarbij de hellingbaan concaaf gebogen is en waarbij de hoogte van de hellingbaan toeneemt in een richting van de binnenste ontvang-eenheid vandaan.A kit according to the preceding claim, wherein the ramp is curved concave and the height of the ramp increases in a direction away from the inner receiving unit. 35. Set volgens een van de conclusies 2-34, waarbij elke binnenste ontvang-eenheid een voorspanelement omvat, bijvoorbeeld een elastische band, die is geconfigureerd om de ontgrendelarm naar de vergrendelarm toe voor te spannen wanneer de ontgrendelarm in de vergrendelde positie staat.Set according to any of claims 2-34, wherein each inner receiving unit comprises a biasing element, for example an elastic band, configured to bias the release arm towards the lock arm when the release arm is in the locked position. 36. Set volgens een van de voorgaande conclusies, waarbij de koppelingsinrichting in bovenaanzicht een teenzijde en een hielzijde heeft, waarbij de vergrendelarm inclusief de binnenste vergrendelnok in bovenaanzicht een teenzijdedeel heeft dat zich aan de teenzijde van verbindingstrekelement bevindt en een hielzijdedeel heeft dat zich aan de hielzijde van verbindingstrekelement bevindt, waarbij het verbindingstrekelement zich bevindt tussen het teenzijdedeel en het hielzijdedeel bevindt.Set according to any one of the preceding claims, wherein the coupling device has, in plan view, a toe side and a heel side, wherein the locking arm including the inner locking cam has, in plan view, a toe side portion located on the toe side of the connecting extension element and having a heel side portion located on the top view. heel side of connecting extension, the connecting extension being located between the toe-side portion and the heel-side portion. 37. Set volgens een van de voorgaande conclusies, waarbij de binnenste vergrendelnok in de vergrendelde stand naar beneden gericht is en het binnenste deel van het schoenkoppelingsdeel onder voorspanning naar beneden gedrukt houdt, waardoor de schoen tegen de koppelingsbasis naar beneden wordt gedrukt.A kit according to any one of the preceding claims, wherein the inner locking cam faces downward in the locked position and holds the inner portion of the shoe coupling member biased downward, thereby pressing down the shoe against the coupling base. 38. Set volgens een van de conclusies 2-37, waarbij het verbindingstrekelement en de ontgrendelarm beide draaibaar aan de vergrendelarm zijn gekoppeld.Set according to any one of claims 2-37, wherein the connecting tie and the release arm are both pivotally coupled to the locking arm. 39. Set volgens een van de conclusies 2-38, waarbij het verbindingstrekelement scharnierend verbonden is met de vergrendelarm bij een verbindingstrekelement-as, waarbij de hoofd- binnenste scharnier-as, de scharnier-as van de ontgrendelarm en de verbindingstrekelement- as evenwijdig aan elkaar zijn.The kit of any one of claims 2 to 38, wherein the connecting extension element is pivotally connected to the locking arm at a connecting extension element axis, the main inner pivot axis, the release arm pivot axis and the connecting extension element axis being parallel to be each other. 40. Set volgens een van de conclusies 33- 39, waarbij het schuifbare uiteinde van de ontgrendelarm verder geconfigureerd is om handmatig over en voorbij de hellingbaan te bewegen in de richting van - en weg van - de vergrendelarm en kan worden gebruikt om de binnenste ontvangeenheid handmatig te ontgrendelen.The kit of any of claims 33-39, wherein the sliding end of the release arm is further configured to move manually up and down the ramp toward - and away from - the locking arm and can be used to move the inner receiver unit. manually unlocked. 41. Set volgens een van de conclusies 33-40, waarbij de hellingbaan inkepingen of uitsteeksels omvat die de aanslag vormen, waarbij het uiteinde van de ontgrendelarm geconfigureerd is om op deze inkepingen of uitsteeksels van de hellingbaan aan te grijpen.The kit of any one of claims 33 to 40, wherein the ramp includes notches or protrusions forming the stop, the end of the release arm configured to engage these notches or protrusions of the ramp. -33--33- 42. Set volgens een van de voorgaande conclusies, waarbij de buitenste ontvang-eenheid het kracht-loslaat-mechanisme omvat en de binnenste ontvang-eenheid geen kracht-loslaat- mechanisme omvat.A kit according to any of the preceding claims, wherein the outer receiving unit includes the force release mechanism and the inner receiving unit does not include a force release mechanism. 43. Set volgens een van de voorgaande conclusies, waarbij de binnenste ontvang-eenheid het kracht-loslaat-mechanisme omvat en de buitenste ontvang-eenheid geen kracht-loslaat- mechanisme omvat.The kit of any of the preceding claims, wherein the inner receiving unit includes the force release mechanism and the outer receiving unit does not include a force release mechanism. 44. Set (10) volgens een van de voorgaande conclusies, met uitzondering van conclusies 40- 42, waarbij de binnenste ontvang-eenheid van elke koppelingsinrichting omvat: — de ontgrendelarm omvattende een riemhouder die is geconfigureerd om een uiteinde van een schoenriem (36) vast te houden (36), waarbij het tegenovergestelde uiteinde van de schoenriem is verbonden met de buitenste ontvangeenheid {20) van de koppelingsinrichting of met de schoen zelf, waarbij de ontgrendelarm (42) ten opzichte van de vergrendelarm (22) kantelbaar is tussen een eerste stand waarbij de ontgrendelarm de schoenriem strak houdt, en een tweede stand waarbij de ontgrendelarm de schoenriem ten minste gedeeltelijk losmaakt en aan het langwerpige verbindingselement tussen de schoenriem trekt, — een ontgrendelarm-stop (54) die is verbonden met de koppelingsbasis (55), waarbij de ontgrendelarm in de eerste stand van de ontgrendelarm tegen de ontgrendelarm-stop rust en in deze eerste stand wordt gehouden door de ontgrendelarm-stop, waarbij de schoenriem zo is geconfigureerd dat er een voorspanning op de vergrendelarm ontstaat, waarbij de voorspanning de vergrendelarm in de vergrendelde positie houdt, waarbij, wanneer het binnenste schoenkoppelingsdeel een kracht uitoefent op de vergrendelnok (28) die een drempelwaarde overschrijdt, de vergrendelarm eerst tegen de voorspanning van de schoenriem in wordt gedraaid, waarbij de binnenste vergrendelnok zich van het binnenste deel van de achterklepkoppeling verwijdert en zo het binnenste deel van de achterklepkoppeling loslaat, waarbij de vergrendelarm vervolgens in een omgekeerde richting wordt gedraaid onder de voorspanning van de schoenriem, waarbij de ontgrendelarm om de vergrendelarm heen draait van een eerste naar een tweede positie, waarbij de schoenriem wordt losgemaakt en het langwerpige verbindingselement wordt aangetrokken om de andere koppelingsinrichting los te koppelen.A kit (10) according to any one of the preceding claims, except from claims 40-42, wherein the inner receiving unit of each coupling device comprises: - the release arm comprising a strap holder configured to hold one end of a shoe strap (36) (36), the opposite end of the shoe strap being connected to the outer receiving unit (20) of the coupling device or to the shoe itself, the release arm (42) being tiltable relative to the locking arm (22) between a first position in which the release arm keeps the shoe strap taut, and a second position in which the release arm at least partially loosens the shoe strap and pulls the elongated connector between the shoe strap, - a release arm stop (54) connected to the clutch base (55) wherein the release arm rests against the release arm stop in the first position of the release arm and is held in this first position by the release arm locking arm stop, wherein the shoe strap is configured to provide a bias on the locking arm, the bias holding the locking arm in the locked position, wherein when the inner shoe engaging portion applies a force to the locking cam (28) exceeding a threshold, the locking arm is first turned against the preload of the shoe strap, the inner locking lug moves away from the inner part of the tailgate clutch, releasing the inner part of the tailgate clutch, then turning the locking arm in the reverse direction under the preload of the shoe strap, wherein the release arm pivots around the locking arm from a first to a second position, the shoe strap being released and the elongated connector tightened to release the other coupling device. 45. Set volgens de vorige conclusie, omvattende een enkel langwerpig verbindingselement (48), waarbij het langwerpig verbindingselement aan het ene uiteinde is verbonden met de ontgrendelarm van de rechter koppelingsinrichting en aan het andere uiteinde met de ontgrendelarm van de linker koppelingsinrichting.The kit of the preceding claim, comprising a single elongated connector (48), wherein the elongated connector is connected at one end to the release arm of the right engagement device and at the other end to the release arm of the left engagement device. -34--34- 46. Set volgens een van de voorgaande conclusies 44-45, waarbij tijdens de beweging van de ontgrendelarm van de eerste positie naar de tweede positie een moment dat door de schoenriem op de ontgrendelarm wordt uitgeoefend om de as van de ontgrendelarm, omdraait als gevolg van een verandering in de positie van een krachtvector van de kracht die wordt uitgeoefend door de schoenriem ten opzichte van de as van de ontgrendelarm.A set according to any one of the preceding claims 44-45, wherein during the movement of the release arm from the first position to the second position, a moment exerted by the shoe strap on the release arm rotates about the axis of the release arm as a result of a change in the position of a force vector of the force applied by the shoe strap relative to the axis of the release arm. 47. Set volgens een van de voorgaande conclusies 44-46, waarbij de ontgrendelarm een gleuf (44) omvat met een stop aan het ene uiteinde en een opening aan het andere uiteinde, waarbij de schoenriem een schuif (43) omvat die is geconfigureerd om in de gleuf te worden ondergebracht, waarbij de schuif in de eerste positie de stop activeert en op zijn plaats wordt gehouden door de stop, en waarbij de schuif in de tweede positie de gleuf verlaat via de opening daarvan.The kit according to any of the preceding claims 44-46, wherein the release arm comprises a slot (44) with a stop at one end and an opening at the other, the shoe strap including a slider (43) configured to in the slot, the slider in the first position activating the plug and being held in place by the plug, and the slider in the second position leaving the slot through the opening thereof. 48. Set volgens een van de conclusies 44-47, waarbij in de vergrendelde stand van de vergrendelarm de vergrendelnok naar beneden gericht is.Set according to any one of claims 44-47, wherein in the locked position of the locking arm the locking cam is directed downwards. 49. Set volgens een van de conclusies 44-48, waarbij de eerste positie van de ontgrendelarm geassocieerd is met de vergrendelde positie van de vergrendelarm en waarbij de tweede positie van de ontgrendelarm geassocieerd is met de ontgrendelde positie van de ontgrendelarm.The set of any of claims 44-48, wherein the first position of the release arm is associated with the locked position of the locking arm and wherein the second position of the release arm is associated with the unlocked position of the release arm. 50. Set volgens een van de conclusies 44-49, waarbij de gleuf en de ontgrendelarm gebogen zijn en waarbij de ontgrendelarm-stop op een overeenkomstige manier gebogen is.The kit of any of claims 44-49, wherein the slot and the release arm are curved and the release arm stop is curved in a corresponding manner. 51. Set volgens een van de voorgaande conclusies, waarbij de rechter- en linker koppelingsinrichting en de rechter- en linker schoenkoppelingsdelen ten minste een eerste magnetisch deel en een tweede magnetische deel omvatten die op elkaar aangrijpen.A kit according to any one of the preceding claims, wherein the right and left coupling device and the right and left shoe coupling parts comprise at least a first magnetic part and a second magnetic part that engage each other. 52. Schoen-adapterset (148) omvattende een adapter voor de rechterschoen (150) en een adapter voor de linkerschoen (151) die geconfigureerd zijn om te worden verbonden met - of te worden geïntegreerd met - respectievelijk een rechterschoen (40R) en een linkerschoen (40L), waarbij de adapters voor de rechterschoen en de linkerschoen (12, 14) zijn geconfigureerd om te worden aangesloten op een koppelingsinrichting (12, 14) op een wakeboard, kiteboard, snowboard of een monoski, waarbij de rechter- en linkerschoen adapter elk omvat: — een binnenste schoenkoppelingsdeel (19) dat is ingericht om aan een binnenzijde van de schoen te worden gepositioneerd om aan te grijpen op een binnenste52. Shoe adapter kit (148) comprising a right shoe adapter (150) and a left shoe adapter (151) configured to be connected to - or integrated with - a right shoe (40R) and a left shoe, respectively (40L), where the right shoe and left shoe adapters (12, 14) are configured to be connected to a coupling device (12, 14) on a wakeboard, kiteboard, snowboard or monoski, with the right and left shoe adapters each comprises: - an inner shoe coupling member (19) adapted to be positioned on an inner side of the shoe to engage an inner -35.- ontvangeenheid van een koppelingsinrichting, waarbij het binnenste schoenkoppelingsdeel een naar boven gericht binnenste contactoppervlak omvat, — een buitenste schoenkoppelingsdeel (21) dat is ingericht om aan een buitenzijde van de schoen te worden gepositioneerd om aan te grijpen op een buitenste ontvangeenheid van een koppelingsinrichting voor een board, waarbij het buitenste schoenkoppelingsdeel een naar boven gericht buitenste contactoppervlak heeft.-35.- receiving unit of a coupling device, wherein the inner shoe coupling part comprises an upwardly facing inner contact surface, - an outer shoe coupling part (21) adapted to be positioned on an outer side of the shoe to engage an outer receiving unit of a docking device for a board, wherein the outer shoe engagement portion has an upwardly facing outer contact surface. 53. Schoen-adapterset volgens de vorige conclusie, waarbij het buitenste schoenkoppelingsdeel of het binnenste schoenkoppelingsdeel van elke schoenadapter een uitsteeksel (102) omvat dat vanaf het binnen- of buitencontactoppervlak omhoog steekt en dat is geconfigureerd om aan een trekmechanisme (34) van een koppelingsinrichting te trekken wanneer de schoen van de koppelingsinrichting wordt losgemaakt.A shoe adapter kit according to the preceding claim, wherein the outer shoe coupling part or inner shoe coupling part of each shoe adapter comprises a protrusion (102) that projects upward from the inner or outer contact surface and is configured to attach to a pulling mechanism (34) of a coupling device. pulling when the shoe is released from the coupling device. 54. Schoen-adapterset volgens de vorige conclusie 52 of 53, waarbij het binnenste deel van elke schoenadapter het trekuitsteeksel (102) omvat, waarbij het trekuitsteeksel uitsteekt boven het binnenste contactvlak (155).The shoe adapter set of any preceding claim 52 or 53, wherein the inner portion of each shoe adapter includes the pull protrusion (102), the pull protrusion protruding above the inner contact surface (155). 55. Schoen-adapterset volgens een van de conclusies 52-54, waarbij het contactoppervlak van het binnenste deel van de schoenkoppeling of het buitenste deel van elke schoenadapter een voorste deel (190) en een achterste deel (191) omvat, waarbij het trekuitsteeksel (102) zich bevindt tussen het voorste deel en het achterste deel.The shoe adapter set of any one of claims 52 to 54, wherein the contact surface of the inner portion of the shoe coupling or the outer portion of each shoe adapter comprises a front portion (190) and a rear portion (191), wherein the pull protrusion ( 102) is located between the front part and the rear part. 56. Schoen-adapterset volgens de vorige conclusie 52-55, waarbij een zijkant van het binnenste deel van de schoenkoppeling en het buitenste deel van de schoenkoppeling gebogen is.A shoe adapter set according to the preceding claims 52-55, wherein a side of the inner part of the shoe coupling and the outer part of the shoe coupling is curved. 57. Schoen-adapterset volgens een van de voorgaande conclusies 52-56, waarbij het buitenste schoenkoppelingsdeel en het binnenste schoenkoppelingsdeel van elke schoenadapter met elkaar zijn verbonden door een stijve plaat, in het bijzonder een stalen plaat, die is geconfigureerd om zich onderlangs de schoen uit te strekken van een linkerzijde van de schoen naar een rechterzijde van de schoen en om naar buiten uit te steken aan de linker- en rechterkant van de schoen, gezien in bovenaanzicht, waarbij de buitenste en binnenste schoenkoppelingsdelen verbonden zijn met tegenovergestelde uiteinden van de stijve plaat en zich vanaf de stijve plaat naar boven toe uitstrekken en geconfigureerd zijn om aan de rechter- en linkerkant van de schoen te worden geplaatst en te worden vastgehouden door een buitenste en binnenste ontvangeenheid van een koppelingsinrichting die op het board is gemonteerd.A shoe adapter set according to any one of the preceding claims 52-56, wherein the outer shoe coupling part and the inner shoe coupling part of each shoe adapter are connected to each other by a rigid plate, in particular a steel plate, which is configured to extend underneath the shoe. extending from a left side of the shoe to a right side of the shoe and projecting outwardly on the left and right sides of the shoe as seen in plan view, the outer and inner shoe coupling members being connected to opposite ends of the rigid plate and extend upwardly from the rigid plate and are configured to be placed on the right and left sides of the shoe and held by an outer and inner receptacle unit of a coupling device mounted on the board. -36--36- 58. Schoen-adapterset volgens een van de voorgaande conclusies 52-57, waarbij de rechter schoenadapter en een linker schoenadapter elk een kracht-loslaat-mechanisme omvatten dat een bladveer omvat, waarbij het kracht-loslaat-mechanisme is ingericht om lost te komen wanneer een kracht die door de schoenadapter op de koppelingsinrichting wordt uitgeoefend een drempelwaarde overschrijdt, waarbij de bladveer een eerste deel omvat dat integraal is met de schoen of is geconfigureerd om aan de schoen te worden bevestigd en ten minste één beweegbaar deel dat is geconfigureerd om te vervormen door de kracht.A shoe adapter set according to any of the preceding claims 52-57, wherein the right shoe adapter and a left shoe adapter each comprise a force-release mechanism comprising a leaf spring, the force-release mechanism being arranged to disengage when a force applied to the coupling device by the shoe adapter exceeds a threshold, the leaf spring comprising a first portion integral with the shoe or configured to be attached to the shoe and at least one movable portion configured to deform by the force. 59. Schoen-adapterset volgens de vorige conclusie, waarbij de bladveer een eerste beweegbaar deel omvat en een tweede beweegbaar deel, waarbij het eerste beweegbare deel geassocieerd is met het binnenste deel van de schoenkoppeling en het tweede beweegbare deel met het buitenste deel van de schoenkoppeling.A shoe adapter set according to the preceding claim, wherein the leaf spring comprises a first movable part and a second movable part, the first movable part being associated with the inner part of the shoe clutch and the second movable part with the outer part of the shoe clutch. . 60. Schoen-adapterset volgens de vorige conclusie, waarbij wanneer gezien in bovenaanzicht het eerste en tweede beweegbare deel van de bladveer is ingericht om zich naar buiten toe uit te strekken aan respectievelijk een rechterkant en linkerkant van een schoen waaraan de schoenadapter is bevestigd of waarmee de schoenadapter integraal is.A shoe adapter set according to the preceding claim, wherein when viewed in plan view the first and second movable portion of the leaf spring are arranged to extend outwardly on a right and left side, respectively, of a shoe to which the shoe adapter is attached or with which the shoe adapter is integral. 61. Schoen-adapterset volgens een van de vorige conclusies 52-60, waarbij het buitenste schoenkoppelingsdeel en het binnenste schoenkoppelingsdeel gescheiden zijn en niet onderling verbonden zijn en elk een connector omvatten die geconfigureerd is om aan de zijkant van een schoen te worden bevestigd.A shoe adapter set according to any one of the preceding claims 52-60, wherein the outer shoe coupling part and the inner shoe coupling part are separate and not interconnected and each comprises a connector configured to be attached to the side of a shoe. 62. Schoen-adapterset volgens een van de voorgaande conclusies 52 - 61, waarbij het buitenste deel van de schoenkoppeling en het binnenste deel van de schoenkoppeling zijn geconfigureerd om bovenop een basisplaat van de schoen te worden gemonteerd.A shoe adapter set according to any one of the preceding claims 52 to 61, wherein the outer part of the shoe coupling and the inner part of the shoe coupling are configured to be mounted on top of a base plate of the shoe. 63. Schoen-adapterset volgens een van de voorgaande conclusies 52 - 62, waarbij het buitenste schoenkoppelingsdeel en het binnenste schoenkoppelingsdeel zijn geconfigureerd om aan de buitenzijden van een basisplaat van de schoen te worden gemonteerd.A shoe adapter set according to any of the preceding claims 52 to 62, wherein the outer shoe coupling part and the inner shoe coupling part are configured to be mounted on the outer sides of a base plate of the shoe. 64. Schoen-adapterset volgens een van de voorgaande conclusies 58 - 63, waarbij de bladveer uitwisselbaar is, de set omvattende ten minste één extra bladveer met een andere stijfheid.A shoe adapter set according to any of the preceding claims 58-63, wherein the leaf spring is interchangeable, the set comprising at least one additional leaf spring of different stiffness. 65. Schoen-adapterset volgens een van de voorgaande conclusie 58 - 64, waarbij elke schoen-adapter is geïntegreerd in een schoen.A shoe adapter set according to any of the preceding claims 58-64, wherein each shoe adapter is integrated in a shoe. -37--37- 66. Set van onderdelen omvattende: - een paar schoenen omvattende een rechterschoen en een linkerschoen, en - de schoenadapter set volgens een van de conclusies 52-64,66. Set of parts comprising: - a pair of shoes comprising a right shoe and a left shoe, and - the shoe adapter set according to any one of claims 52-64, 67. Set volgens een van de voorgaande conclusies 1-51, verder omvattende een schoen- adapterset volgens een van de conclusies 52-64.The set according to any of the preceding claims 1-51, further comprising a shoe adapter set according to any of the claims 52-64. 68. Set volgens de vorige conclusie, verder omvattende een rechter- en een linkerschoen.The set of the preceding claim, further comprising a right and a left shoe. 69. Set volgens een van de conclusies 1-51, verder omvattende een board voor boardsporten, in het bijzonder een wakeboard, een kiteboard, een snowboard of een monoski, waarbij de rechter koppelingsinrichting en de linker koppelingsinrichting op het board zijn gemonteerd en waarbij de rechter- en linker koppelingsinrichting met elkaar zijn verbonden via ten minste één langwerpig verbindingselement.The set according to any one of claims 1 to 51, further comprising a board for board sports, in particular a wakeboard, a kiteboard, a snowboard or a monoski, wherein the right coupling device and the left coupling device are mounted on the board and wherein the right and left coupling devices are connected together via at least one elongated connecting element. 70. Set volgens de vorige conclusie, waarbij de binnenste hoofdscharnier-as van de rechter- en linker koppelingsinrichting dwars op een lengteas van het board is georiënteerd.A kit according to the preceding claim, wherein the inner main pivot axis of the right and left coupling devices is oriented transversely to a longitudinal axis of the board. 71. Set volgens de vorige conclusie, waarbij het langwerpige verbindingselement niet onder spanning of onder druk staat.A set according to the preceding claim, wherein the elongated connecting element is not under tension or under pressure. 72. Koppelingsinrichting voor een ski of board voor boardsporten, de koppelingsinrichting omvattende ten minste één ontvang-eenheid voor het ontvangen van een schoenkoppelingsdeel dat verbonden is met een schoen of geïntegreerd is met een schoen, de koppelingsinrichting omvattende een kracht-loslaat-mechanisme (32) omvattende : — een bladveer (70), de bladveer omvattende een vast deel (71) dat is geconfigureerd om aan het board te worden bevestigd en een beweegbaar deel (72), waarbij het beweegbare deel van de bladveer is geconfigureerd om zich in een richting van het board vandaan te bewegen wanneer een kracht wordt uitgeoefend op het beweegbare deel van de bladveer, waarbij deze kracht de bladveer buigt, — een aanslag (75) die is geconfigureerd voor bevestiging aan het board, waarbij de ten minste ene ontvang-eenheid omvat: o een vasthoud- en loslaatcomponent (76) die verbonden is met het beweegbare deel van de bladveer, het vasthoud- en loslaatcomponent omvattende de vergrendelnok die is geconfigureerd om op het koppelingsdeel van de schoen aan te grijpen en het koppelingsdeel van de schoen op zijn plaats te houden, o een drempeldeel (78) dat is geconfigureerd om aan te grijpen op de aanslag, en72. Coupling device for a ski or board for board sports, the coupling device comprising at least one receiving unit for receiving a shoe coupling member connected to a shoe or integrated with a shoe, the coupling device comprising a force-release mechanism (32 ) comprising: - a leaf spring (70), the leaf spring comprising a fixed part (71) configured to be attached to the board and a movable part (72), the movable part of the leaf spring being configured to move into a moving away from the board when a force is applied to the movable part of the leaf spring, this force bending the leaf spring, - a stop (75) configured for attachment to the board, the at least one receiving unit comprises: o a retaining and releasing component (76) connected to the movable portion of the leaf spring, the retaining and releasing component comprising the locking cam d it is configured to engage the coupling portion of the shoe and hold the coupling portion of the shoe in place, a threshold portion (78) configured to engage the stop, and -38- waarbij, wanneer de kracht op het beweegbare deel van de bladveer onder de drempelwaarde ligt, de vasthoud- en loslaatcomponent op zijn plaats wordt gehouden door de aanslag die op het drempeldeel werkt, en wanneer de kracht op het beweegbare deel van de bladveer de drempelkracht overschrijdt, het drempeldeel wordt losgekoppeld van de aanslag en het vasthoud- en loslaatcomponent het koppelingsdeel van de schoen loslaat.-38- where, when the force on the movable part of the leaf spring is below the threshold, the retaining and releasing component is held in place by the stop acting on the threshold part, and when the force on the movable part of the leaf spring exceeds the threshold force, the threshold portion is disengaged from the stop, and the hold and release component releases the clutch portion of the shoe. 73. Koppelingsinrichting volgens de vorige conclusie, waarbij de bladveer deel uitmaakt van de koppelingsbasis en de binnenste en buitenste ontvangeenheid met elkaar verbindt.The coupling device of the preceding claim, wherein the leaf spring forms part of the coupling base and connects the inner and outer receiving units together. 74. Koppelingsinrichting volgens een van de voorgaande conclusies 72-73, waarbij het vasthoud- en loslaatcomponent (76) om een vasthoud- en loskoppelingsdraaipunt (81) draaibaar is, waarbij de vasthoud- en loskoppelingsdraaipuntas in het bijzonder substantieel parallel loopt met een hoofdvlak van de bladveer en dwars doorloopt tot een hoofdrichting van de bladveer.A coupling device according to any one of the preceding claims 72-73, wherein the retention and release component (76) is rotatable about a retention and release fulcrum (81), the retention and release fulcrum axis being in particular substantially parallel to a major plane of the leaf spring and continues across to a principal direction of the leaf spring. 75. Koppelingsinrichting volgens een van de voorgaande conclusies 72-74, waarbij het vasthoud- en loslaatcomponent draaibaar is tussen een vastgezette en een vrijgegeven positie, en waarbij: in de vastgezette stand het drempeldeel (78) aangrijpt op de aanslag (75), waardoor het vasthoud- en loslaatcomponent niet kan draaien, en waarbij in deze vastgezette stand de vergrendelnok (28, 30) het binnenste of buitenste schoenkoppelingsdeel (18,20) op zijn plaats houdt, en in de ontgrendelde positie het drempeldeel zich boven de aanslag (75) bevindt en niet meer metde aanslag in contact is, waardoor het vasthoud- en loskoppelingsinrichting kan draaien en het koppelingsdeel van de schoen door de draaiende beweging kan worden ontgrendeld.A coupling device according to any one of the preceding claims 72-74, wherein the holding and releasing component is rotatable between a locked and a released position, and wherein: in the locked position the threshold member (78) engages the stop (75), thereby the holding and releasing component cannot rotate, and wherein in this locked position the locking cam (28, 30) holds the inner or outer shoe coupling member (18,20) in place, and in the unlocked position the threshold member is above the stop (75 ) and is no longer in contact with the stop, allowing the holding and release device to rotate and the coupling part of the shoe to be released by the rotary movement.
NL2022343A 2019-01-04 2019-01-04 Set of coupling assemblies for a board for board sports NL2022343B1 (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
NL2022343A NL2022343B1 (en) 2019-01-04 2019-01-04 Set of coupling assemblies for a board for board sports
EP20700536.4A EP3906099A1 (en) 2019-01-04 2020-01-03 Set of coupling assemblies for a board for board sports
CA3163575A CA3163575A1 (en) 2019-01-04 2020-01-03 Set of coupling assemblies for a board for board sports
AU2020205206A AU2020205206A1 (en) 2019-01-04 2020-01-03 Set of coupling assemblies for a board for board sports
PCT/NL2020/050002 WO2020141979A1 (en) 2019-01-04 2020-01-03 Set of coupling assemblies for a board for board sports
US17/420,533 US11731029B2 (en) 2019-01-04 2020-01-03 Set of coupling assemblies for a board for board sports

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Citations (7)

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Publication number Priority date Publication date Assignee Title
FR2630922A2 (en) 1987-11-24 1989-11-10 Arnaud Max Safety binding device for ski boots on a snowboard, with synchronized release on both feet
EP0350411A2 (en) * 1988-07-07 1990-01-10 Salomon S.A. Releasable binding system for snow-boarding
EP0352662A2 (en) * 1988-07-28 1990-01-31 Look S.A. Mono ski with two ski boot bindings
EP0397969A1 (en) 1989-05-18 1990-11-22 Hannes Marker Safety binding for snow boards
US5029890A (en) 1987-10-22 1991-07-09 Tmc Corporation Safety ski binding
WO2012074864A1 (en) 2010-11-29 2012-06-07 Board Of Supervisors Of Louisiana State University And Agricultural And Mechanical College Wakeboard release mechanism
US20150238843A1 (en) * 2014-02-24 2015-08-27 Ob4 Systems, Inc. Binding systems for boards and skis

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5029890A (en) 1987-10-22 1991-07-09 Tmc Corporation Safety ski binding
FR2630922A2 (en) 1987-11-24 1989-11-10 Arnaud Max Safety binding device for ski boots on a snowboard, with synchronized release on both feet
EP0350411A2 (en) * 1988-07-07 1990-01-10 Salomon S.A. Releasable binding system for snow-boarding
EP0352662A2 (en) * 1988-07-28 1990-01-31 Look S.A. Mono ski with two ski boot bindings
EP0397969A1 (en) 1989-05-18 1990-11-22 Hannes Marker Safety binding for snow boards
WO2012074864A1 (en) 2010-11-29 2012-06-07 Board Of Supervisors Of Louisiana State University And Agricultural And Mechanical College Wakeboard release mechanism
US20150238843A1 (en) * 2014-02-24 2015-08-27 Ob4 Systems, Inc. Binding systems for boards and skis

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