SUMMERY OF THE UTILITY MODEL
The utility model mainly solves the technical problem of providing a flapping type transmission mechanism and a massage device, wherein the flapping type transmission mechanism provides a new action mechanism and is better suitable for user requirements.
In order to solve the above problems, the present invention provides a flapping type transmission mechanism, which includes a driving assembly, a transmission component connected to the driving assembly, and an elastic flapping component cooperating with the transmission component, wherein the transmission component converts the rotation of the driving assembly into the flapping motion of the elastic flapping component.
Furthermore, the transmission part comprises a conical wheel connected with an output rotating shaft of the driving assembly, and the geometric axes of the output rotating shaft and the conical wheel are not on the same line to form an eccentric structure.
Further, the output rotating shaft penetrates through the conical wheel.
Further, the elastic flapping part comprises a flapping part integrated with the bottom, the bottom of the flapping part is provided with a poking column protruding towards the inner side of the bottom, a poking hole sleeved on a conical wheel is arranged on the poking column, and the poking hole is coaxial with the output rotating shaft of the driving assembly.
Further, the flapping part is bent to one side.
Furthermore, the bottom of the elastic flapping part is provided with a fixing part extending along the direction away from the flapping part, and the fixing part and the bottom of the elastic flapping part form a coating cavity.
Further, the bottom is provided with an arc-shaped groove, and the flapping part is positioned at the bottom of the arc-shaped groove.
Furthermore, the bottom is provided with a first guide groove, and the first guide groove is positioned at two sides of the beating direction of the poking hole.
Further, the first guide groove is of a closed structure.
Further, the first guide groove is of an elliptical structure, wherein a minor axis of the elliptical first guide groove is consistent with the flapping direction.
Further, the thickness of the bottom of the elastic flapping part becomes thinner gradually from the edge to the approach direction of the flapping part.
Furthermore, the bottom of the elastic flapping part is respectively provided with a second guide groove at two sides in the flapping direction.
Further, the second guide groove is arc-shaped.
The utility model also provides a flapping massage device, which comprises a flapping transmission mechanism, a telescopic transmission mechanism, a driving assembly, a transmission part connected with the driving assembly and an elastic flapping part matched with the transmission part, wherein the transmission part converts the rotation of the driving assembly into the flapping motion of the elastic flapping part.
Furthermore, the transmission part comprises a conical wheel connected with an output rotating shaft of the driving assembly, and the geometric axes of the output rotating shaft and the conical wheel are not on the same line to form an eccentric structure.
Further, the output rotating shaft penetrates through the conical wheel.
Further, the elastic flapping part comprises a flapping part integrated with the bottom, the bottom of the flapping part is provided with a poking column protruding towards the inner side of the bottom, a poking hole sleeved on a conical wheel is arranged on the poking column, and the poking hole is coaxial with the output rotating shaft of the driving assembly.
Further, the flapping part is bent to one side.
Furthermore, the bottom of the elastic flapping part is provided with a fixing part extending along the direction away from the flapping part, and the fixing part and the bottom of the elastic flapping part form a coating cavity.
Further, the bottom is provided with an arc-shaped groove, and the flapping part is positioned at the bottom of the arc-shaped groove.
Furthermore, the bottom is provided with a first guide groove, and the first guide groove is positioned at two sides of the beating direction of the poking hole.
Further, the first guide groove is of a closed structure.
Further, the first guide groove is of an elliptical structure, wherein a minor axis of the elliptical first guide groove is consistent with the flapping direction.
Further, the thickness of the bottom of the elastic flapping part becomes thinner gradually from the edge to the approach direction of the flapping part.
Furthermore, arc-shaped second guide grooves are respectively formed in the two sides of the bottom of the elastic flapping part in the flapping direction.
Further, the second guide groove is arc-shaped.
Furthermore, the flapping massage device further comprises a shell, and a control circuit and a power supply which are in signal connection with the driving component are arranged in the shell.
The utility model relates to a flapping type transmission mechanism and a massage device, wherein the flapping type transmission mechanism comprises a driving component, a transmission part connected with the driving component and an elastic flapping part matched with the transmission part, and the transmission part converts the rotation of the driving component into the flapping motion of the elastic flapping part. During the use, through the epaxial transmission part of drive assembly output pivot with drive assembly rotation conversion for elasticity pat the part and do the motion of patting, realize the frequency and the dynamics of patting the motion through adjusting the rotational speed, realize different motion mechanism, satisfy the different needs of people. The telescopic transmission mechanism can be widely used on massage appliances.
Detailed Description
The following claims of the present invention are further detailed in conjunction with the detailed description of the embodiments and the accompanying drawings, and it is to be understood that the described embodiments are only a subset of the embodiments of the present invention, and not all embodiments. All other embodiments obtained by persons of ordinary skill in the art based on the embodiments of the present invention without any inventive work also belong to the protection scope of the present invention.
It should be understood that in the description of the embodiments of the present invention, all directional terms, such as "upper", "lower", "left", "right", "front", "back", etc., indicate orientations or positional relationships based on the orientations, positional relationships shown in the drawings or the orientations or positional relationships that the products of the present invention usually use, and are used only for the convenience of simplifying the description of the present invention, but do not indicate or imply that the devices, elements or components that are indicated must have specific orientations and specific orientation configurations, and should not be construed as limiting the present invention. For the purpose of explaining only the relative positional relationship between the respective components, the movement, and the like, as shown in the drawings, when the specific posture is changed, the directional indication may be changed accordingly.
Furthermore, the use of ordinal terms such as "first", "second", etc., in the present application is for distinguishing between similar elements and not intended to imply or imply relative importance or the number of technical features indicated. The features defining "first" and "second" may be explicit or implicit in relation to at least one of the technical features. In the description of the present invention, "a plurality" means at least two, i.e., two or more, unless expressly defined otherwise; the meaning of "at least one" is one or both.
In the present invention, unless otherwise explicitly specified or limited, the terms "mounted," "disposed," "connected," "fixed," "screwed" and the like are to be understood in a broad sense, and for example, the positional relationship between the components may be fixed relatively, or the components may be physically fixed, or may be detachably connected, or may be integrated into a single structure; the connection can be mechanical connection or electrical signal connection; either directly or indirectly through intervening media or components; the two elements can be communicated with each other or can be mutually interacted, and unless the specification explicitly defines otherwise, the corresponding function or effect cannot be realized in other understanding manners, and the specific meaning of the terms in the utility model can be understood by a person skilled in the art according to specific conditions.
The controller and the control circuit that may be involved in the present invention are conventional control techniques or units for those skilled in the art, and the control circuit of the controller may be implemented by those skilled in the art by using conventional techniques, such as simple programming. The power supply also adopts the prior art, and the main utility model of the utility model is to improve the mechanical device, so the utility model does not explain the specific circuit control relation and circuit connection in detail.
As shown in fig. 1-4, the present invention provides an embodiment of a beater type drive mechanism.
This pat formula drive mechanism, including drive assembly 1 and the drive disk assembly who is connected with drive assembly 1 to and with drive disk assembly complex elasticity patting part 2, drive disk assembly rotates drive assembly 1 and converts elasticity patting part 2 into and does the motion of patting.
In particular, the drive assembly 1 comprises an electric motor, which may also be provided with a reduction gearbox. The transmission part comprises a conical wheel 11 connected with an output rotating shaft 10 of the driving assembly, and the geometric axes of the output rotating shaft and the conical wheel 11 are not on the same straight line to form an eccentric structure. The drive assembly output shaft 10 extends through the conical wheel 11.
The elastic flapping component 2 is made of elastic materials such as rubber. The elastic flapping part 2 comprises a flapping part 21 integrated with a bottom part 22, the bottom part 22 of the flapping part is provided with a poking column 27 protruding inwards, the poking column 27 is provided with a poking hole 23 sleeved on the conical wheel 11, and the poking hole 23 is coaxial with the output rotating shaft 10 of the driving component. The dial hole 23 is deep at least to the inside of the tapping portion 21. The flapping part 21 is of a flat structure, and preferably, at least the flapping part 21 connected to the bottom 22 of the flapping part is of a flat structure.
When the flapping-type elastic flapping device is used, the driving assembly output rotating shaft 10 is driven by the driving assembly 1, and the driving assembly is rotated and converted into large right swing in the direction perpendicular to the flat surface of the elastic flapping part 1 through the eccentric structure transmission part fixed with the driving assembly output rotating shaft 10, so that flapping motion is realized. The beating movement frequency and force are realized by adjusting the rotating speed, different movement mechanisms are realized, and different requirements of people are met. The telescopic transmission mechanism can be widely used on massage appliances.
In order to improve the amplitude of the flapping movement, the bottom 22 of the elastic flapping part 2 is provided with an arc-shaped groove 20, and the flapping part 21 is located in the middle of the arc-shaped groove 20, i.e. in the middle of the arc-shaped groove 20. The bottom 22 is provided with a first guide groove 24 around the dial post 27, the first guide groove 24 is of a closed structure, and preferably has an oval structure, and when the oval first guide groove 24 is adopted, the minor axis direction of the oval first guide groove 24 is consistent with the flapping motion direction. The flexibility between the tapping portion 21 and the bottom portion 22 can be increased, and the tapping action can be more easily achieved.
According to the requirement, the thickness of the elastic flapping part bottom 22 becomes thinner from the edge to the approaching direction of the flapping part 21, so that the flapping part 21 and the bottom 22 are easier to deform during the action. Meanwhile, the flexible flapping part bottom 22 is provided with second guide grooves 25 on two sides in the flapping direction of the poking column 27, and the flexibility during flapping can be increased. The second guide groove 25 may be provided in an arc shape or the like as needed.
The poking hole 23 may be a long-strip-shaped poking hole 23 as needed, and the left-right flapping action of the flapping part 21 can also be realized.
According to the requirement, the bottom 22 of the elastic flapping part 2 is provided with a fixing part 26 extending in the opposite direction away from the flapping part 21, and the fixing part 26 and the elastic flapping part bottom 22 are integrally structured to form a coating cavity, so that the elastic flapping part 2 can be conveniently fixed.
As shown in fig. 5-7, the present invention also provides an embodiment of a tapping massage device.
This pat formula massage device is including patting formula drive mechanism, this flexible drive mechanism, including drive assembly 1 and the drive disk assembly who is connected with drive assembly 1 to and pat component 2 with drive disk assembly complex elasticity, drive disk assembly rotates drive assembly 1 and converts elasticity into and pat component 2 and do the motion of patting.
Specifically, the flapping massage device further comprises a housing 4, and a control circuit (not shown in the figure) and a power supply 3 which are in signal connection with the driving assembly 1 are arranged in the housing 4. The housing 4 comprises an upper shell 41 and a lower shell 42 fixed with the upper shell 41, the upper shell 41 and the lower shell 42 are fixed to form a cavity for accommodating and fixing the driving assembly 1, the control circuit, the power supply 3 and the like, and a contact electrode 43 electrically connected with the control circuit and the battery is arranged at the bottom of the housing 4.
The drive assembly 1 comprises a motor, which may also be a motor with a reduction gearbox. The transmission part comprises a conical wheel 11 connected with an output rotating shaft 10 of the driving assembly, and the geometric axes of the output rotating shaft and the conical wheel 11 are not on the same straight line to form an eccentric structure. The drive assembly output shaft 10 extends through the conical wheel 11.
The elastic flapping component 2 is made of elastic materials such as rubber. The elastic flapping part 2 comprises a flapping part 21 integrated with a bottom part 22, the bottom part 22 of the flapping part is provided with a poking column 27 protruding inwards, the poking column 27 is provided with a poking hole 23 sleeved on the conical wheel 11, and the poking hole 23 is coaxial with the output rotating shaft 10 of the driving component. The dial hole 23 is deep at least to the inside of the tapping portion 21. The flapping part 21 is of a flat structure, and preferably, at least the flapping part 21 connected to the bottom 22 of the flapping part is of a flat structure. The bottom 22 of the elastic flapping part 2 is provided with a fixing part 26 extending along the opposite direction away from the flapping part 21, and the fixing part 26 and the bottom 22 of the elastic flapping part form a coating cavity in an integrated structure, so that the elastic flapping part 2 and the shell 4 can be conveniently fixed.
When the flapping-type elastic flapping device is used, the driving assembly output rotating shaft 10 is driven by the driving assembly 1, and the driving assembly is rotated and converted into large right swing in the direction perpendicular to the flat surface of the elastic flapping part 1 through the eccentric structure transmission part fixed with the driving assembly output rotating shaft 10, so that flapping motion is realized. The beating movement frequency and force are realized by adjusting the rotating speed, different movement mechanisms are realized, and different requirements of people are met. The telescopic transmission mechanism can be widely used on massage appliances.
In order to improve the amplitude of the flapping movement, the bottom 22 of the elastic flapping part 2 is provided with an arc-shaped groove 20, and the flapping part 21 is located in the middle of the arc-shaped groove 20, i.e. in the middle of the arc-shaped groove 20. The bottom 22 is provided with a first guide groove 24 around the dial post 27, the first guide groove 24 is of a closed structure, and preferably has an oval structure, and when the oval first guide groove 24 is adopted, the minor axis direction of the oval first guide groove 24 is consistent with the flapping motion direction. The flexibility between the tapping portion 21 and the bottom portion 22 can be increased, and the tapping action can be more easily achieved.
According to the requirement, the thickness of the elastic flapping part bottom 22 becomes thinner from the edge to the approaching direction of the flapping part 21, so that the flapping part 21 and the bottom 22 are easier to deform during the action. Meanwhile, the flexible flapping part bottom 22 is provided with second guide grooves 25 on two sides in the flapping direction of the poking column 27, and the flexibility during flapping can be increased. The second guide groove 25 may be provided in an arc shape or the like as needed.
The poking hole 23 may be a long-strip-shaped poking hole 23 as needed, and the left-right flapping action of the flapping part 21 can also be realized.
According to the needs, the surface of the shell 4 is also provided with an elastic layer 6, the elastic layer 6 is made of silica gel materials, on one hand, the vibration generated during use can be reduced, on the other hand, the use hand feeling can be improved, and meanwhile, the anti-blooming effect can be achieved.
The surface of the shell 4 is provided with a control switch 61 connected with a control circuit according to requirements. The beating start and stop can be controlled by the control switch 61.
The above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: it is to be understood that modifications may be made to the above-described arrangements in the embodiments or equivalents may be substituted for some of the features of the embodiments without departing from the spirit or scope of the present invention.