EP3613397B1 - Dispositif de chargement destiné à une civière d'ambulance motorisée - Google Patents
Dispositif de chargement destiné à une civière d'ambulance motorisée Download PDFInfo
- Publication number
- EP3613397B1 EP3613397B1 EP19020481.8A EP19020481A EP3613397B1 EP 3613397 B1 EP3613397 B1 EP 3613397B1 EP 19020481 A EP19020481 A EP 19020481A EP 3613397 B1 EP3613397 B1 EP 3613397B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- ambulance cot
- ambulance
- extension arm
- lock
- locking
- Prior art date
- Legal status (The legal status 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 status listed.)
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Links
- 230000007246 mechanism Effects 0.000 claims description 30
- 230000005540 biological transmission Effects 0.000 claims description 10
- 230000008878 coupling Effects 0.000 claims description 10
- 238000010168 coupling process Methods 0.000 claims description 10
- 238000005859 coupling reaction Methods 0.000 claims description 10
- 125000006850 spacer group Chemical group 0.000 claims description 10
- 238000006073 displacement reaction Methods 0.000 claims description 7
- 230000000284 resting effect Effects 0.000 claims description 7
- 230000000903 blocking effect Effects 0.000 claims description 4
- 101100384865 Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) cot-1 gene Proteins 0.000 description 16
- 210000001364 upper extremity Anatomy 0.000 description 4
- 238000010276 construction Methods 0.000 description 3
- 238000000034 method Methods 0.000 description 2
- 238000004873 anchoring Methods 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 239000003381 stabilizer Substances 0.000 description 1
Images
Classifications
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61G—TRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
- A61G1/00—Stretchers
- A61G1/02—Stretchers with wheels
- A61G1/0237—Stretchers with wheels having at least one swivelling wheel, e.g. castors
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61G—TRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
- A61G3/00—Ambulance aspects of vehicles; Vehicles with special provisions for transporting patients or disabled persons, or their personal conveyances, e.g. for facilitating access of, or for loading, wheelchairs
- A61G3/02—Loading or unloading personal conveyances; Facilitating access of patients or disabled persons to, or exit from, vehicles
- A61G3/0218—Loading or unloading stretchers
- A61G3/0245—Loading or unloading stretchers by translating the support
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61G—TRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
- A61G1/00—Stretchers
- A61G1/02—Stretchers with wheels
- A61G1/0206—Stretchers with wheels characterised by the number of supporting wheels if stretcher is extended
- A61G1/0212—2 pairs having wheels within a pair on the same position in longitudinal direction, e.g. on the same axis
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61G—TRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
- A61G1/00—Stretchers
- A61G1/04—Parts, details or accessories, e.g. head-, foot-, or like rests specially adapted for stretchers
- A61G1/052—Struts, spars or legs
- A61G1/056—Swivelling legs
- A61G1/0565—Swivelling legs simultaneously folding, e.g. parallelogram structures
- A61G1/0567—Swivelling legs simultaneously folding, e.g. parallelogram structures folding in x-shape
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61G—TRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
- A61G3/00—Ambulance aspects of vehicles; Vehicles with special provisions for transporting patients or disabled persons, or their personal conveyances, e.g. for facilitating access of, or for loading, wheelchairs
- A61G3/02—Loading or unloading personal conveyances; Facilitating access of patients or disabled persons to, or exit from, vehicles
- A61G3/0218—Loading or unloading stretchers
- A61G3/0272—Loading or unloading stretchers by support protruding from the vehicle
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61G—TRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
- A61G3/00—Ambulance aspects of vehicles; Vehicles with special provisions for transporting patients or disabled persons, or their personal conveyances, e.g. for facilitating access of, or for loading, wheelchairs
- A61G3/08—Accommodating or securing wheelchairs or stretchers
- A61G3/0816—Accommodating or securing stretchers
- A61G3/0875—Securing stretchers, e.g. fastening means
- A61G3/0891—Securing stretchers, e.g. fastening means by preventing longitudinal movement
Definitions
- the invention relates to an assembly of a powered ambulance cot and a loading device therefor, the loading device comprising a sliding guide block, an extension arm, a linear guide configured to be fixedly mounted in an ambulance floor, and a fastening system.
- the proposed device falls within the field of medical devices, namely devices used for loading medical powered ambulance cots in a road ambulance.
- Loading devices are used in road ambulances through which medical ambulance cots are loaded from an external environment into an internal ambulance structures and subsequently secured for safe transport.
- the terrain conditions of the external environment cause height and angular differences in the reference planes of the cot and the loading system.
- the cot operators approach the loading system from variable directions in real conditions, which increases these differences.
- an extension arm which includes the contact surfaces.
- the cot In the extended state of the arm, the cot is placed on the resting surfaces with all its weight.
- the loading system including the cot locks into a precisely defined lock position of the fastening system.
- Resting the cot on the extendable arm is a critical step in the loading process.
- the cot is placed with its full weight on the defined resting surfaces of the arm. Correct alignment of the cot before resting requires increased operator attention. This also increases working time. There is a risk that the cot may be placed outside the resting surfaces, which can significantly increase safety risks for both the patient and the operator.
- US 20160287454 A1 describes self-actuating ambulance cots which include a support frame, a pair of legs and a hydraulic actuator.
- the support frame is guided from a front end to a rear end of the cot.
- the pair of legs are in movable engagement with the support frame.
- the hydraulic actuator is in movable engagement with the pair of legs and the support frame, extending and retracting the pair of legs to the support frame.
- the hydraulic actuator comprises a cylindrical housing, a rod and a sliding guide member.
- the sliding guide member is movably engaged with the cylinder housing and is rigidly engaged with the bar, the sliding guide member moving in the direction of the cylinder body.
- Powered roll-in cots are described in EP 2523642 A1 and include a support frame, a pair of front legs, a pair of rear legs and a cot actuation system.
- the pair of front legs may be slidably coupled to the support frame.
- the front leg comprises at least one front wheel.
- the pair of rear legs is slidably coupled to the support frame and each rear leg comprises at least one rear wheel.
- the cot actuation system includes a front actuator that moves the front legs and a rear actuator that moves the rear legs.
- the front actuator and rear actuator raise or lower the support frame in tandem.
- the front actuator raises or lowers the front end of the support frame independently of the rear actuator, while the rear actuator raises or lowers the rear end of the support frame independently of the front actuator.
- the telescopic ambulance table comprises a lower table, which is arranged horizontally in the ambulance in the longitudinal direction to the cot and which is equipped with a hinged joint so that its vertical position can be changed.
- the telescopic ambulance table further includes extendable supports which are slidably connected to the lower table and which are used to extend from the ambulance cargo compartment and subsequently to fasten the cot.
- the telescopic ambulance table further includes a drive for extendable supports that controls the movement of the supports in the longitudinal direction and which ensures the patient to be transported on the cot in and out of the ambulance. The drive is controlled by a drive control, depending on the load and the position of the extendable supports.
- the ambulance cot described in EP 2431015 A2 consists of a base frame, a litter frame and a support mechanism coupled to the base frame and the litter frame.
- the support mechanism comprises at least one pair of frame members that are centrally connected to each other.
- the frame members each have opposite ends fixed to the base frame and the litter frame, wherein at least one of said pair of frame members is provided with a first mount arranged between their middle length and the base frame, while the second mount is arranged between their middle length and the litter frame.
- the first and second mounts are arranged to contact the base frame and the litter frame.
- a combination cot loading and fastening system is described in EP 2384728 A1 .
- This system is designed for loading and unloading ambulance cots of normal height, approximately 76 centimetres, into an emergency rescue vehicle with a transport deck in excess of 78 centimetres.
- the system includes a pair of tracks, a shuttle assembly to securely pull the ambulance cot along the pair of tracks, and a locking mechanism mounted on the shuttle assembly.
- the shuttle assembly comprises a frame having a first end, a second end, a longitudinal body, two pairs of stabilizer bars, a pair of lifting cylinders, and a three-point attachment yoke assembly mounting the locking mechanism. The other end is located adjacent to the interior of the vehicle.
- the pair of tracks guides the ambulance cot into or out of the vehicle, while the locking mechanism releasably fixes the ambulance cot to the tracks.
- the shuttle assembly is arranged such that the locking mechanism is positioned below the vehicle level at an angle of 10° to 25° and at a distance of 22.8 to 50 cm from the vehicle.
- the stretcher loading platform described in WO 9804228 A1 comprises a base frame that is adapted to secure the stretcher in an ambulance, and a support tray with a head and foot portions arranged on the base frame.
- the support tray further comprises lift arms which are rotatably mounted between the base frame and the support tray.
- the front lift arm allows the stretcher to be pulled in and out of the ambulance, while the rear lift arm is slidably connected to the stretcher via a pivot joint formed on the front lift arm. This allows the stretcher to tilt to the desired position.
- the European patent application EP 2366369 A2 discloses a support module having a base unit receiving a patient stretcher, and a guiding path enabling formation of an intermediate position between a patient supporting position and a patient receiving position, in a non-telescopic condition of the base unit. Change of inclination of the patient stretcher is achieved with respect to the patient supporting position in addition to a change in a horizontal position of the patient stretcher, in the patient receiving position. The patient supporting position is achieved from the intermediate position by telescopic movement of the base unit.
- the international patent application WO 2011041170 A2 discloses an ambulance cot loading and unloading apparatus, including a base for mounting to an emergency vehicle deck and an arm mounted for linear movement along the base, which is configured for engaging an ambulance cot.
- a drive mechanism is provided for raising the arm, which is configured in the presence of an applied force with a first magnitude on the arm to raise the arm at a first speed and in the presence of an applied force on the arm with a second magnitude greater than the first magnitude to raise the arm at another speed or speeds lower than the first speed.
- the object of the invention is to design a loading device for safe and intuitive loading of a powered ambulance cot in a road ambulance.
- the present invention provides an assembly of a powered ambulance cot and a loading device therefor, the loading device comprising a sliding guide block, an extension arm, a linear guide configured to be fixedly mounted in an ambulance floor, and a fastening system.
- the ambulance cot comprises a stretcher portion and a built-in chassis, wherein a U-shaped horizontal bar is arranged in the front portion of the chassis, and the chassis is further provided with two front pins, a surface for guiding a locking axis and a double-action lock comprising an upper lock and a lower latch.
- a rear pin and a lever of the double-action lock are located, which lever unlocks it after pulling.
- the sliding guide block guides the ambulance cot to the correct position relative to the extension arm, which in turn guides the entire assembly through a linear guide to the fastening system.
- the sliding guide block is formed by a set of approach ramps to assist the operator in the initial alignment of the ambulance cot relative to the loading system.
- the set of approach ramps is formed by a main approach ramp, side approach ramps and adjacent surfaces in the longitudinal direction that are engageable with the horizontal bar in the front portion of the ambulance cot, wherein the main approach ramp guides the ambulance cot to a correct vertical position and the side approach ramps with the adjacent surfaces in the longitudinal direction guide the ambulance cot to a correct horizontal position.
- the ambulance cot is guided along the approach ramps to two automatic autonomous locks, which simply by pushing unlock the guide block displacement and at the same time lock the construction of the ambulance cot and the guide block together.
- Each autonomous lock comprises a thrust lever, a first gear mechanism and a latch, wherein with the front portion of the ambulance cot being pressed simultaneously on both thrust levers of the autonomous locks, the latch is released by means of the first gear mechanism thereby to unlock the sliding guide block for linear displacement over the extension arm by means of sliders mounted on the sliding guide block.
- Lock control is automatic and does not require operator's attention.
- the locks are designed with respect to the construction in such a way that they cannot be unlocked when the ambulance cot is approached from the wrong positions in the vertical and horizontal sense.
- the autonomous locks block the horizontal backward movement of the ambulance cot when the sliding guide block is unlocked.
- the extension arm includes two guide ends with rollers, two guiding side bars with end stops in the front portion and a shaped recess for the latch, further the locking axis arranged on a lever mechanism, an arm lock and an arm lock lever.
- the lever mechanism which is mounted on the extension arm, controls the position of the locking axis relative to the position of the sliding guide block, the arm lock fixes the extension arm in the maximum extension position and the arm lock lever has a contact surface allowing to unlock the extension arm manually or by the chassis of the ambulance cot.
- the mechanism including the locking axis, is raised, which is then automatically locked into the double-action lock consisting of the upper lock and the lower latch and mounted on the chassis of the ambulance cot and the ambulance cot is locked against reverse displacement.
- Locking of the locking axis in the upper lock ensures correct positioning of the ambulance cot in the longitudinal direction after resting the ambulance cot on the extension arm, and the lower latch automatically locks with a transverse axis located in the extension arm when the ambulance cot rests on the extension arm, thereby preventing the ambulance cot from tilting in the longitudinal direction.
- the sequence of the steps of anchoring the ambulance cot allows the cot to rest in a precisely defined and secure position on the extension arm.
- the double-action lock is unlocked by pulling the lever on the ambulance cot.
- the sliding guide block design together with the design of the extension arm allows a wide range of relative positions of the loading system relative to the ambulance cot, but critical positions are eliminated.
- the lower construction of the ambulance cot is folded to compress the extension arm lock lever.
- the unlocked extension arm is inserted into the ambulance via the linear guide, wherein the front and rear pins on the chassis of the ambulance cot are automatically locked into the fastening system in the extreme position.
- the entire assembly is locked in the fastening system against lateral, longitudinal and vertical movements during transport.
- the linear guide has a pair of mirrored stationary rails configured to be fixedly mounted in the ambulance floor, wherein a telescopic sliding bar is arranged in each stationary rail and the extension arm is slidably arranged between the sliding bars, wherein a linear displacement of the extension arm is provided along the sliding bars between its extreme positions.
- the extension arm is supported on both sides on a pair of sliding carriages travelling between the pair of sliding bars.
- the fastening system has a front block, a rear block and a coupling pull rod.
- the front pin of the ambulance cot is fastened to the front block and the rear pin of the ambulance cot to the rear block.
- the front block is configured to be fixedly mounted in the ambulance floor and has two spring-loaded locking pins provided in the lower portion with pull rods connected to a transmission axis, and in the central portion of the front block, the transmission axis is provided with a second gear mechanism that positions the coupling pull rod with respect to the transmission axis. Above the locking pins of the front block there are grooves for the front pins of the ambulance cot.
- the rear block is also configured to be fixedly mounted in the ambulance floor and has a strutting gear in the lower portion, which positions the coupling pull rod with respect to locking blocks, and two locking blocks in the upper portion, a spring-loaded spacer between them, a groove above them for the rear pin of the ambulance cot, and further in the rear portion two guide surfaces and a control lever. Above the locking blocks, there is a groove for the rear pin of the ambulance cot.
- both front pins must fit into the grooves for the front pins as well as the rear pin into the groove for the rear pin.
- both locking pins and both locking blocks are unlocked and thereby blocked simultaneously, thereby blocking the movement of the ambulance cot by the fastening system in all directions.
- Fig. 1 is an isometric view of a loading device including an ambulance cot
- Fig. 2 is an isometric view of a sliding guide block
- Fig. 3 shows a detailed view of a sliding guide block mechanism from below
- Fig. 4 is an isometric view of an extension arm
- Fig. 5 shows a detailed view of the principle of the locking mechanism of the extension arm and the ambulance cot
- Fig. 6 is an isometric view of the fastening system
- Fig. 7 shows a detailed view of the locking mechanism arrangement in the front block of the fastening system
- Fig. 8 shows a detailed view of the strutting gear in the rear block of the fastening system
- Fig. 1 is an isometric view of a loading device including an ambulance cot
- Fig. 2 is an isometric view of a sliding guide block
- Fig. 3 shows a detailed view of a sliding guide block mechanism from below
- Fig. 4 is an isometric view of an extension arm
- Fig. 5
- FIG. 9 shows an isometric view of the arrangement of the mechanisms in the rear block of the fastening system
- Fig. 10 shows a detail of the rear portion of the ambulance cot including the lever of the double-action lock and the rear pin
- Fig. 11 shows an isometric view of the extension arm positioning on the linear guide
- Fig. 12 shows a detail of the front portion of the ambulance cot including the horizontal bar and the front pins from the bottom
- Fig. 13 shows the extreme positions of the locking axis on the extension arm.
- the assembly comprises an ambulance cot 1 and a loading device comprising a sliding guide block 4 , an extension arm 3 , a linear guide 2 fixedly mounted in the ambulance floor and a fastening system 5 , also fixedly mounted in the ambulance floor.
- the ambulance cot 1 is shown in Figs. 4 , 10 and 12 and includes a stretcher portion and a built-in chassis.
- a horizontal bar 43 is arranged in the front portion of the chassis, and the chassis is further provided with two front pins 44 , a surface 22 for guiding a locking axis 16 and a double-action lock 23 comprising an upper lock 24 and a lower latch 25 , wherein a rear pin 45 and a lever 40 of the double-action lock 23 are located in the rear portion of the chassis.
- the sliding guide block 4 is shown in Fig. 2 .
- the sliding guide block 4 comprises a structure covered by a main approach ramp 6 serving as its cover.
- side approach ramps 7 which are the contact surfaces for the front portion of the structure of the ambulance cot 1 , comprise the horizontal bar 43 and a pair of the front pins 44 as shown in Fig. 12 .
- the side approach ramps 7 are adjoined by longitudinal surfaces 8 which precisely define the horizontal bar 43 in the horizontal plane of the ambulance cot 1 .
- the sliding guide block 4 is further provided with two autonomous locks 9 formed by a thrust lever 10 , a first gear mechanism 11 and a latch 12 , as it is depicted in Fig. 3 .
- the function of the sliding guide block 4 is as follows.
- the sliding guide block 4 is released only when the two autonomous locks 9 are unlocked by means of the horizontal bar 43 which pushes the lever 10 in such a way that the latch 12 is released by the first gear mechanism 11 , and thereby ensures the movability of the sliding guide block 4 .
- the autonomous locks 9 are set in the position in which they block the backward movement of the ambulance cot 1 in the horizontal direction. This blocking is effective throughout the whole trajectory along the extension arm 3 except for the extreme starting position, i.e. the position where the sliding block 4 is located at the edge of the arm 3 .
- the sliding guide block 4 is provided with sliders 13 which allow linear displacement over the extension arm 3 .
- the extension arm 3 comprises guiding side bars 14 , guide ends 15 with rollers, a locking axis 16 fixed in the arms of a lever mechanism 17 , an arm lock 18 and an arm lock lever 19 .
- the guiding side bars 14 for the sliding guide block 4 are provided with end stops 20 and a shaped recess 21 for the latch 12 .
- the lever mechanism 17 controls the position of the locking axis 16 in relation to the position of the sliding guide block 4 .
- the locking axis 16 is automatically raised to the highest position as shown in Fig. 13 .
- the interval between the lowest and the highest position of the locking axis 16 defines the range of permissible vertical distance between the extension arm 3 and the ambulance cot 1 .
- the ambulance cot 1 has a surface 22 for guiding the locking axis 16 into the double-action lock 23 arranged in the chassis of the ambulance cot 1 , wherein the double-action lock 23 comprises an upper lock 24 and a lower latch 25 as shown in Fig. 5 .
- the first step of locking the double-action lock 23 is to lock the locking axis 16 in the upper lock 24 . This step ensures that the ambulance cot 1 is positioned correctly in the longitudinal direction after it has contacted the extension arm 3 .
- the second step of locking the double-action lock 23 is that the lower latch 25 automatically locks the transverse axis 26 when the ambulance cot 1 rests on the extension arm 3 , thereby blocking the tilting of the ambulance cot 1 in the longitudinal direction.
- both steps are performed simultaneously by pulling the lever 40 on the ambulance cot 1 shown in Fig. 10 .
- the arm lock 18 of the extension arm 3 fixes the extension arm 3 in the position of maximum extension of the loading device.
- the arm lock lever 19 of the lock 18 of the extension arm 3 has a contact surface 27 enabling the unlocking manually or by the chassis structures as shown in Fig. 4 .
- the linear guide 2 comprises a pair of mirrored stationary rails 41 fixedly mounted in the ambulance floor, wherein each stationary rail receives a telescopic sliding rail 48 .
- An extension arm 3 is slidably arranged between the sliding rails 48 .
- the extension arm 3 is supported on both sides on sliding carriages 42 travelling on sliding rails 48 , as can be seen in Fig. 11 .
- the travel range of the telescopic sliding rails defines the working trajectory of the extension arm 3 .
- the maximum extension of the telescopic sliding rails is designed with respect to the installation dimensions of commonly used vehicles, wherein during handling, a collision with any part of the vehicle body (e.g. road ambulance) must not occur.
- the fastening system 5 comprises a front block 28 , a rear block 29 , and a coupling pull rod 30 , as shown in Fig. 6 .
- the front block 28 has two grooves 46 for the front pins 44 arranged on the ambulance cot 1 , as shown in Figs. 6 and 12 , and on the sides, two spring-loaded locking pins 31 provided with pull rods 32 in the lower portion, which are connected to the transmission axis 33 , as shown in Fig. 7 .
- the transmission axis 33 is fitted with a second gear mechanism 34 which is adjustable so that the position of the coupling pull rod 30 relative to the transmission axis 33 can be finely adjusted. As shown in Figs.
- the rear block 29 comprises a strutting gear 35 , locking blocks 36 , a spring-loaded spacer 37 , guide surfaces 38 , a control lever 39 , and a groove 47 for the rear pin 45 arranged on the ambulance cot 1 .
- Applying force to the control lever 39 simultaneously unlocks the two locking pins 31 (see Fig. 6 ) and the two locking blocks 36 (see Fig. 9 ).
- the spring-loaded spacer 37 automatically blocks it.
- the interlocking of the assembly comprising the front and rear blocks 28 and 29 and the coupling pull rod 30 ensures that both locking pins 31 and both locking blocks 36 remain in the unlocked position.
- the front and rear blocks 28 and 29 are unlocked and they simultaneously lock both locking pins 31 and both locking blocks 36 .
- the fastening system 5 locks the front pins 44 and the rear pin 45 , and thereby the movement of the ambulance cot 1 in all directions.
- the present invention can be used in the medical field, particularly in devices for loading powered medical or ambulance cots in a road ambulance.
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- Public Health (AREA)
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- General Health & Medical Sciences (AREA)
- Veterinary Medicine (AREA)
- Accommodation For Nursing Or Treatment Tables (AREA)
Claims (2)
- Un ensemble d'une civière d'ambulance motorisée (1) et un dispositif de chargement associé, le dispositif de chargement comprenant un bloc de guidage coulissant (4), un bras d'extension (3), un guide linéaire (2) configuré pour être monté de manière fixe dans un plancher d'ambulance et un système de fixation (5), caractérisé en ce quea. la civière d'ambulance (1) comprend une partie tendeur et un châssis intégré, où une barre horizontale (43) est disposée dans la partie avant du châssis, et le châssis est en outre pourvu de deux broches avant (44), d'une surface (22) pour guider un axe de verrouillage (16) et d'un verrou à double action (23) comprenant un verrou supérieur (24) et un loquet inférieur (25), où une broche arrière (45) et un levier (40) du verrou à double action (23) sont disposés dans la partie arrière du châssis;b. le bloc de guidage coulissant (4) comprend une rampe d'approche principale (6), des rampes d'approche latérales (7) et des surfaces adjacentes (8) dans la direction longitudinale qui peuvent venir en prise avec la partie avant de la civière d'ambulance (1), où la rampe d'approche principale (6) guide la civière d'ambulance (1) à une position verticale correcte et les rampes d'approche latérales (7) avec les surfaces adjacentes (8) dans la direction longitudinale guident la civière d'ambulance (1) à une position horizontale correcte, et le bloc de guidage coulissant (4) est en outre pourvu de deux verrous autonomes (9), chacun comprenant un levier de poussée (10), un premier mécanisme d'engrenage (11) et un verrou (12), où lorsque la partie avant de la civière d'ambulance (1) est pressée simultanément sur les deux leviers de poussée (10) des verrous autonomes (9), le verrou (12) est libéré au moyen du premier mécanisme d'engrenage (11) pour déverrouiller ainsi le bloc de guidage coulissant (4) pour un déplacement linéaire sur le bras d'extension (3) au moyen de curseurs (13) montés sur le bloc de guidage coulissant (4), où les verrous autonomes (9) bloquent le mouvement vers l'arrière de la civière d'ambulance (1) dans la direction horizontale après le déverrouillage du bloc de guidage coulissant (4);c. le bras d'extension (3) comprend deux extrémités de guidage (15) avec des rouleaux, deux barres latérales de guidage (14) avec des butées d'extrémité (20) dans la partie avant et un renfoncement de forme (21) pour le loquet (12), en outre l'axe de verrouillage (16) disposé sur un mécanisme de levier (17), un verrou de bras (18) et un levier de verrouillage de bras (19), où le mécanisme de levier (17) commande la position de l'axe de verrouillage (16) par rapport à la position du bloc de guidage coulissant (4), le verrou de bras (18) fixe le bras d'extension (3) dans la position d'extension maximale et le levier de verrouillage de bras (19) comprend une surface de contact (27) permettant de déverrouiller le bras d'extension (3) manuellement ou par le châssis de la civière d'ambulance (1), où l'axe de verrouillage (16) est guidé dans le verrou à double action (23) de la civière d'ambulance (1) par la surface (22), où le verrouillage de l'axe de verrouillage (16) dans le verrou supérieur (24) du verrou à double action (23) assure un positionnement correct de la civière d'ambulance (1) dans la direction longitudinale après avoir posée la civière d'ambulance (1) sur le bras d'extension (3), et le loquet inférieur (25) du verrou à double action (23) se verrouille automatiquement avec un axe transversal (26) disposé dans le bras d'extension (3) lorsque la civière d'ambulance (1) repose sur le bras d'extension (3), empêchant ainsi la civière d'ambulance (1) de s'incliner dans la direction longitudinale et où le verrou à double action (23) est déverrouillé par traction du levier (40) du verrou à double action (23) sur la civière d'ambulance (1);d. le guide linéaire (2) comprend une paire de rails fixes en miroir (41) configurés pour être montés de manière fixe dans le plancher d'ambulance, où une barre coulissante télescopique (48) est disposée dans chaque rail fixe (41) et le bras d'extension (3) est disposé de manière coulissante entre les barres coulissantes (48), où un déplacement linéaire du bras d'extension (3) est fourni le long des barres coulissantes (48) entre ses positions extrêmes; ete. le système de fixation (5) comprend un bloc avant (28), un bloc arrière (29), et une tige de traction de couplage (30), où le bloc avant (28) est configuré pour être monté de manière fixe dans le plancher d'ambulance et comprend deux broches de verrouillage à ressort (31) sur lesquelles sont ménagées des rainures (46) pour les broches avant (44) de la civière d'ambulance (1) et qui sont disposées dans la partie inférieure avec des tiges de traction (32) connectées à un axe de transmission (33), et dans la partie centrale du bloc avant (28), l'axe de transmission (33) est pourvu d'un second mécanisme d'engrenage (34) qui positionne la tige de traction de couplage (30) par rapport à l'axe de transmission (33), où le bloc arrière (29) est configuré pour être monté de manière fixe dans le plancher d'ambulance et comprend un engrenage d'étai (35) dans la partie inférieure, qui positionne la tige de traction de couplage (30) par rapport à des blocs de verrouillage (36), et deux blocs de verrouillage (36) dans la partie supérieure, un élément d'espacement à ressort (37) entre eux, une rainure (47) au-dessus de ceux-ci pour la broche arrière (45) de la civière d'ambulance (1), et en outre dans la partie arrière deux surfaces de guidage (38) et un levier de commande (39), où les deux broches de verrouillage (31) et les deux blocs de verrouillage (36) sont déverrouillés simultanément par déplacement du levier de commande (39), et avec les blocs de verrouillage (36) atteignant la position extrême, l'élément d'espacement à ressort (37) se verrouille automatiquement pour guider la civière d'ambulance (1) avec le bloc de guidage coulissant (4) et le bras d'extension (3) dans le système de fixation (5), et où par compression de l'élément d'espacement à ressort (37), les deux broches de verrouillage (31) et les deux blocs de verrouillage (36) sont déverrouillés et ainsi bloqués simultanément, bloquant ainsi le mouvement de la civière d'ambulance (1) par le système de fixation (5) dans toutes les directions.
- L'ensemble selon la revendication 1, caractérisé en ce que le bras d'extension (3) est supporté des deux côtés sur une paire de chariots coulissants (42) se déplaçant entre la paire de barres coulissantes (48).
Priority Applications (1)
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PL19020481T PL3613397T3 (pl) | 2018-08-21 | 2019-08-19 | Urządzenie ładujące do zespołu zasilanego nosidełka karetki |
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CZ2018-422A CZ2018422A3 (cs) | 2018-08-21 | 2018-08-21 | Nakládací zařízení pro nosítka s posilovačem |
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EP3613397A1 EP3613397A1 (fr) | 2020-02-26 |
EP3613397B1 true EP3613397B1 (fr) | 2021-04-21 |
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EP19020481.8A Active EP3613397B1 (fr) | 2018-08-21 | 2019-08-19 | Dispositif de chargement destiné à une civière d'ambulance motorisée |
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EP (1) | EP3613397B1 (fr) |
CZ (1) | CZ2018422A3 (fr) |
DK (1) | DK3613397T3 (fr) |
ES (1) | ES2878270T3 (fr) |
PL (1) | PL3613397T3 (fr) |
PT (1) | PT3613397T (fr) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20220354718A1 (en) * | 2009-10-02 | 2022-11-10 | Stryker Corporation | Ambulance cot and loading and unloading system |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN115429547A (zh) * | 2022-09-19 | 2022-12-06 | 江阴万事兴医疗器械股份有限公司 | 一种可自主识别上下救护车的智能电动担架 |
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WO1998004228A1 (fr) | 1996-07-26 | 1998-02-05 | Huntleigh Technology Plc | Plate-forme de chargement pour civiere |
AU2005259881B2 (en) * | 2004-06-30 | 2010-09-30 | Ferno-Washington, Inc. | Combination cot loading and fastening system |
US7398571B2 (en) * | 2004-09-24 | 2008-07-15 | Stryker Corporation | Ambulance cot and hydraulic elevating mechanism therefor |
DE102008005900A1 (de) | 2008-01-24 | 2009-07-30 | Bayerisches Rotes Kreuz, Körperschaft des öffentlichen Rechts | Ambulanztisch für Rettungsfahrzeuge sowie ein Rettungsfahrzeug aufweisend einen derartigen Ambulanztisch und Verfahren zur Beförderung eines Krankentransportmittels auf einen Ambulanztisch, sowie Verfahren zur Ermittlung des Patientengewichts mittels eines Ambulanztisches |
EP2537499B1 (fr) * | 2009-10-02 | 2017-01-11 | Stryker Corporation | Civière d'ambulance et système de chargement et de déchargement |
KR101793178B1 (ko) | 2010-01-13 | 2017-11-02 | 페르노-와싱턴, 인코포레이티드. | 전동식 롤인 간이침대 |
DE102010012065A1 (de) * | 2010-03-19 | 2011-09-22 | Eads Deutschland Gmbh | Tragenmodul |
US10045894B2 (en) | 2013-11-15 | 2018-08-14 | Ferno-Washington, Inc. | Self-actuating cots |
-
2018
- 2018-08-21 CZ CZ2018-422A patent/CZ2018422A3/cs unknown
-
2019
- 2019-08-19 DK DK19020481.8T patent/DK3613397T3/da active
- 2019-08-19 ES ES19020481T patent/ES2878270T3/es active Active
- 2019-08-19 EP EP19020481.8A patent/EP3613397B1/fr active Active
- 2019-08-19 PT PT190204818T patent/PT3613397T/pt unknown
- 2019-08-19 PL PL19020481T patent/PL3613397T3/pl unknown
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20220354718A1 (en) * | 2009-10-02 | 2022-11-10 | Stryker Corporation | Ambulance cot and loading and unloading system |
Also Published As
Publication number | Publication date |
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ES2878270T3 (es) | 2021-11-18 |
CZ307874B6 (cs) | 2019-07-10 |
EP3613397A1 (fr) | 2020-02-26 |
PT3613397T (pt) | 2021-06-23 |
PL3613397T3 (pl) | 2021-10-25 |
CZ2018422A3 (cs) | 2019-07-10 |
DK3613397T3 (da) | 2021-05-31 |
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