Multi-purpose massager structure
By designing a power mechanism and magnetic attraction mechanism for a multi-purpose massager structure, the problems of the existing massager's simple structure and poor massage effect are solved. This enables the massage part to be replaceable and provides a multi-dimensional massage effect, improving the massager's practicality and stability.
Patent Information
- Application Number
- CN202111176348.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-10-09
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2041-10-09
AI Technical Summary
Existing multi-purpose massagers have a simple internal structure for the massage head, which usually allows for only one-dimensional movement, resulting in poor deformation and massage effects.
A multi-purpose massager structure was designed, including a hollow cavity main unit and a massage head installed in the hollow cavity. The drive seat and turntable are driven by a power mechanism, and combined with a magnetic suction mechanism, the massage head can be twisted, rotated and stretched to achieve a multi-dimensional massage effect.
It enables the replacement of the massage head, reduces the cost of use, and can simultaneously perform twisting, rotating and stretching movements to provide a multi-dimensional massage effect, thus improving the practicality and stability of the massager.
Smart Images

Figure CN113952198B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of health massage technology, and in particular to a multi-purpose massager structure. Background Technology
[0002] Many sports activities cause muscle, tendon, or tendon sheath strain that is concentrated in certain parts of the body. For example, the strain from rock climbing and archery is concentrated in the finger muscles and finger joints, while badminton and table tennis players often suffer major injuries in the wrist joint and forearm.
[0003] This invention is mainly a universal core structure that can achieve multi-dimensional massage effects in a very limited space. With proportional changes, it can be applied to a variety of massager products and can be used on any different parts of the human body.
[0004] For example, by scaling up or down the structure of this massager proportionally, it can be applied to other parts of the human body such as finger muscles, joints, wrists, and forearms. However, the massager structures currently on the market have the following drawbacks: First, most existing multi-purpose massager structures have a simple internal structure for the massage part; second, such multi-purpose massager structures can usually only perform single-dimensional movements; and third, the deformation and massage effect within the massage part are not good. Summary of the Invention
[0005] To address the technical problems mentioned above, the present invention provides a multi-purpose massager structure.
[0006] This invention provides a multi-purpose massager structure, including a main unit with a hollow cavity and a massage part installed in the hollow cavity of the main unit. The main unit includes a drive seat installed in the hollow cavity and having a first receiving cavity, a turntable installed in the first receiving cavity, and a power mechanism for driving the drive seat and the turntable to rotate. The massage part includes an outer cup body connected to the drive seat and having a second receiving cavity, an inner cup body installed in the second receiving cavity, and a head cup part connected to the opening end of the second receiving cavity of the outer cup body. A first bearing is provided between the drive seat and the turntable, a second bearing is provided between the outer cup body and the inner cup body, and a magnetic attraction mechanism is provided between the turntable and the inner cup body.
[0007] Furthermore, the drive base includes a drive base plate and a drive sidewall extending along the edge of the drive base plate to one side of the drive base plate. The space between the drive base plate and the drive sidewall forms the first accommodating cavity. The turntable is connected to the drive base plate via the first bearing. The drive sidewall is provided with internal linkage teeth, and the outer sidewall of the outer cup body is provided with external linkage teeth that cooperate with the internal linkage teeth.
[0008] Furthermore, the outer cup body includes an outer cup bottom and an outer cup wall extending along the edge of the outer cup bottom towards one side of the outer cup bottom. The space between the outer cup bottom and the outer cup wall forms the second receiving cavity. The inner cup body is connected to the outer cup bottom through the second bearing.
[0009] Furthermore, the inner cup body includes an inner cup bottom and an inner cup wall extending along the edge of the inner cup bottom towards one side of the inner cup bottom. The outer cup body is connected to the inner cup bottom through the second bearing, and the space between the inner cup bottom and the inner cup wall forms the third receiving cavity.
[0010] Furthermore, the magnetic attraction mechanism includes a first magnetic attraction part mounted on the turntable and a second magnetic attraction part mounted on the inner cup body; the first magnetic attraction part and the second magnetic attraction part are arranged at intervals.
[0011] Furthermore, the turntable is provided with a first magnetic attraction receiving groove, and a first magnetic attraction part is installed in the first magnetic attraction receiving groove. The inner cup body is provided with a second magnetic attraction receiving groove, and a second magnetic attraction part is installed in the second magnetic attraction receiving groove.
[0012] Furthermore, the first magnetic attraction part and the second magnetic attraction part are arranged in groups or matched with each other, and multiple groups are arranged in an array or in a ring.
[0013] Furthermore, the main unit includes a main unit cup body and a control mechanism installed inside the main unit cup body, the control mechanism controlling the power mechanism.
[0014] Furthermore, the main cup body includes a main cup bottom and a main cup wall extending along the edge of the main cup bottom toward one side of the main cup bottom, the space between the main cup bottom and the main cup wall forms the hollow cavity, and a first connecting mechanism is provided between the main cup wall and the massage part.
[0015] Furthermore, the main unit also includes a base portion installed within the hollow cavity; the power mechanism includes a torsional power mechanism for driving the drive seat to rotate, a rotary power mechanism for driving the turntable to rotate, and a telescopic power mechanism for driving the base portion to move in a specific direction; the torsional power mechanism and the rotary power mechanism are fixedly installed on one side of the base portion, and the telescopic power mechanism is connected to the other side of the base portion; the output end of the rotary power mechanism is connected to the turntable via an output shaft, and the output end of the torsional power mechanism is connected to the drive seat via an annular internal rack.
[0016] Furthermore, the massage unit also includes an inner cup portion connected to the head cup portion. The inner cup portion includes the outer cup body, the inner cup body, and an inner cup adhesive portion installed inside the inner cup body. The head cup portion includes an outer fixing frame for fixed connection with the main unit, a head cup adhesive portion fixedly connected to the outer fixing frame, and an inner fixing frame installed at the end of the head cup adhesive portion away from the end connected to the outer fixing frame. The inner fixing frame is connected to the outer cup body, and a first connecting mechanism is provided between the outer fixing frame and the main unit.
[0017] Furthermore, the head cup adhesive part includes a surface adhesive part connected to the outer fixing frame and a tubular adhesive part connected to the surface adhesive part and having a first massage cavity.
[0018] Furthermore, the inner cup rubber part includes an inner cup rubber bottom and an inner cup rubber wall extending along the edge of the inner cup rubber bottom towards one side of the inner cup rubber bottom, and the space between the inner cup rubber bottom and the inner cup rubber wall forms a second massage cavity.
[0019] The beneficial effects of this invention are as follows: By installing the massage part inside the hollow cavity, the massage part is replaceable, facilitating replacement after damage while the main unit continues to function, effectively reducing operating costs. Simultaneously, the power mechanism drives the drive seat to rotate, causing the head cup to twist and tighten the soft rubber inside, achieving a clamping massage effect. The power mechanism also drives the turntable to rotate, resulting in a rotational massage effect. Furthermore, the power mechanism's reciprocating motion of the drive seat and turntable relative to the head cup allows the soft rubber inside to stretch or contract, achieving a telescopic massage effect. This allows the multi-purpose massager structure to perform different movements simultaneously, achieving various massage effects. Attached Figure Description
[0020] Figure 1 This is a partial cross-sectional view of an embodiment of the multi-purpose massager structure of the present invention.
[0021] Figure 2 This is a cross-sectional view of one direction of an embodiment of the multi-purpose massager structure of the present invention.
[0022] Figure 3 This is a cross-sectional view from another direction of one embodiment of the multi-purpose massager structure of the present invention.
[0023] Figure 4 This is a cross-sectional view of the massage section of an embodiment of the multi-purpose massager structure of the present invention.
[0024] Figure 5 This is a perspective view of an embodiment of the multi-purpose massager structure of the present invention.
[0025] Figure 6 An exploded view of an embodiment of the multi-purpose massager structure of the present invention.
[0026] Figure 7 This is a cross-sectional view of the drive seat of an embodiment of the multi-purpose massager structure of the present invention.
[0027] Figure 8 This is a perspective view of the drive seat of an embodiment of the multi-purpose massager structure of the present invention.
[0028] Figure 9 This is a perspective view of the drive seat from another angle, representing an embodiment of the multi-purpose massager structure of the present invention.
[0029] Figure 10 This is a perspective view of the connection between the drive seat and the base in one embodiment of the multi-purpose massager structure of the present invention. Detailed Implementation
[0030] Embodiments of the present invention are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention.
[0031] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0032] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0033] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0034] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0035] The present invention will now be described in further detail with reference to specific embodiments and accompanying drawings.
[0036] like Figures 1-10 As shown, the present invention provides a multi-purpose massager structure, including a main unit 1 with a hollow cavity and a massage part 2 installed in the hollow cavity of the main unit 1. The main unit 1 includes a drive seat 63 installed in the hollow cavity and having a first accommodating cavity, a turntable 64 installed in the first accommodating cavity, and a power mechanism for driving the drive seat 63 and the turntable 64 to rotate. The massage part 2 includes an outer cup 241 connected to the drive seat 63 and having a second accommodating cavity, an inner cup 244 installed in the second accommodating cavity, and a head cup 20 connected to the opening end of the second accommodating cavity of the outer cup 241. A first bearing 65 is provided between the drive seat 63 and the turntable 64, a second bearing 245 is provided between the outer cup 241 and the inner cup 244, and a magnetic attraction mechanism is provided between the turntable 64 and the inner cup 244.
[0037] This invention, by installing the massage part 2 within the hollow cavity, makes the massage part 2 replaceable, facilitating replacement of the massage part 2 after damage, while the main unit 1 can continue to be used, effectively reducing operating costs. Simultaneously, the power mechanism drives the drive seat 63 to move, thereby causing the head cup 20 to twist, tightening the soft rubber inside the head cup 20 to achieve a clamping massage effect. The power mechanism also drives the turntable 64 to rotate, thereby rotating the inner cup 244 to achieve a rotational massage effect. The power mechanism's back-and-forth movement of the drive seat 63 and turntable 64 relative to the head cup 20 allows the soft rubber inside the head cup 20 to stretch or contract, achieving a telescopic massage effect. This allows the multi-purpose massager structure to perform different movements simultaneously, achieving different massage effects. A magnetic attraction mechanism allows the turntable 64 to rotate the inner cup 244 relative to the outer cup 241, making it simple and convenient.
[0038] In an optional embodiment, the main unit 1 further includes a base portion 6 installed within the hollow cavity; the power mechanism includes a torsional power mechanism 51 for driving the drive seat 63 to rotate, a rotary power mechanism 52 for driving the turntable 64 to rotate, and a telescopic power mechanism 53 for driving the base portion 6 to move in a specific direction; the torsional power mechanism 51 and the rotary power mechanism 52 are fixedly installed on one side of the base portion 6, and the telescopic power mechanism 53 is connected to the other side of the base portion 6; the output end of the rotary power mechanism 52 is connected to the turntable 64 via the output shaft 521. The output end of the torsional power mechanism 51 is connected to the drive seat 63 via an annular internal rack 635.
[0039] In an optional embodiment, the massage part 2 further includes an inner cup part connected to the head cup part 20. The head cup part 20 includes an outer fixing frame 22, a head cup adhesive part 21 connected to the outer fixing frame 22, and an inner fixing frame 23 installed at the end of the head cup adhesive part 21 away from the end connected to the outer fixing frame 22. The drive seat 63 is used to drive the inner fixing frame 23 to rotate, thereby causing the head cup adhesive part 21 to deform radially. The inner fixing frame 23 is provided so that the drive seat 63 can drive the head cup adhesive part 21 to rotate by driving the inner fixing frame 23, thereby causing radial deformation. The head cup adhesive part 21 includes a surface adhesive part 211 covering the end of the outer fixing frame 22 away from the end connected to the main unit 1, and a tubular adhesive part 212 connected to the surface adhesive part 211 and forming the first massage cavity 213. The outer fixing frame 22 effectively secures the massage part 2 to the main unit 1, increasing the stability of the multi-purpose massager structure and facilitating the removal of the massage part 2. The inner fixing frame 23 is fixedly connected to the end of the tubular adhesive part 212 away from the surface adhesive part 211. The tubular adhesive part 212 is annular, and its internal space forms the first massage cavity 213. The surface adhesive part 211 has a first through hole 2111 communicating with the first massage cavity 213. The surface adhesive part 211 facilitates fixing one end of the tubular adhesive part 212, allowing the tubular adhesive part 212 to twist under the action of the inner fixing frame 23 at the other end, resulting in radial deformation and reducing the size of the first massage cavity 213 to achieve a clamping massage effect.
[0040] In an optional embodiment, the inner cup portion 29 further includes an outer cup body 241, an inner cup body 244 disposed on the outer cup body 241, and an inner cup adhesive portion 242 disposed within the inner cup body 244. The inner cup body 244 and the outer cup body 241 are connected by a second bearing 245. The inner cup adhesive portion 242 includes an inner cup adhesive bottom 2422 and an inner cup adhesive wall 2421 extending along the edge of the inner cup adhesive bottom 2422 toward one side of the inner cup adhesive bottom 2422; the space between the inner cup adhesive bottom 2422 and the inner cup adhesive wall 2421 forms the second massage cavity 243.
[0041] In an optional embodiment, the inner wall of the first massage cavity 213 is provided with a plurality of first massage pillars protruding toward the central axis of the first massage cavity 213; the inner wall of the second massage cavity 243 is provided with a plurality of second massage pillars protruding toward the central axis of the second massage cavity 243. In this embodiment, the inner cup 244 and the outer cup 241 are connected by a second bearing 245, so that the inner cup 244 can rotate relative to the outer cup 241 through the second bearing 245; the second bearing 245 is disposed at the central axis position of the outer cup 241 and the inner cup 244; the provision of first massage pillars and second massage pillars can effectively increase the massage stimulation effect of the multi-purpose massager structure. The soft rubber body arranged coaxially with the head cup rubber part 21 is the inner cup rubber part 242, but the number of inner cup rubber parts 242 includes, but is not limited to, one. The head cup rubber part 21 is positioned away from the drive seat 63 relative to the inner cup rubber part 242. The outer cup body 241 is connected to the inner fixing frame 23 by a threaded connection or a snap-fit connection. Specifically, the end of the inner fixing frame 23 connected to the outer cup body 241 is threaded, and the outer cup body 241 is provided with a threaded ring 2411 that is screwed to the inner fixing frame 23. The outer cup body 241 is also provided with a limiting block for limiting the position of the threaded ring 2411. The main unit 1 is cylindrical in shape, and the massage part 2 used with it is also cylindrical in shape. The head cup rubber part 21 inside the massage part 2 is made of a cylindrical shape using a series of synthetic soft rubber materials such as TPE / TPR / SBS / SEBS / TPL, and its central axis coincides with the central axis of the massage part 2.
[0042] In an optional embodiment, the drive seat 63 includes a drive base plate 631 and a drive sidewall 632 extending along the edge of the drive base plate 631 towards one side of the drive base plate 631. The space between the drive base plate 631 and the drive sidewall 632 forms the first receiving cavity; the circumferential cross-section of the first receiving cavity is circular. The receiving cavity facilitates the placement of the outer cup 241 within it, effectively increasing stability and accuracy during torsion; the circular shape of the first receiving cavity facilitates connection with the inner cup portion 29. The drive sidewall 632 is provided with protruding or recessed internal linkage teeth 6341, and the outer sidewall of the outer cup 241 is provided with external linkage teeth 2412 that cooperate with the internal linkage teeth 6341. In this embodiment, the circumferential sidewall of the inner cup portion 29 is provided with multiple recessed external linkage teeth 2412. When the inner cup portion 29 is seated on the drive seat 63, the triangular internal linkage teeth 6341 are matched and inserted into the corresponding external linkage teeth 2412. The internal linkage tooth 6341 is positioned slightly higher than the turntable 64 on the drive side wall, so that when the inner cup 29 is connected to the drive seat 63, a gap is formed between it and the turntable 64, preventing them from being fully connected. When the drive seat 63 rotates, it drives the inner cup 29 to rotate through the meshing of the internal linkage tooth 6341 and the external linkage tooth 2412. Alternatively, the outer cup 241 can also be connected to the drive seat 63 via a snap-fit, threaded connection, or magnetic connection. The coordinated use of the internal linkage tooth 6341 and the external linkage tooth 2412 effectively secures the outer cup 241 to the drive seat 63, facilitating the rotation of the outer cup 241 by the drive seat 63. The internal linkage tooth 6341 is disposed on the drive sidewall 632 and is triangular in shape. The external linkage tooth 2412 is disposed on the outer side of the outer cup wall. The outer cup 241 is supported by the meshing of the internal linkage tooth 6341 and the external linkage tooth 2412. In addition, the turntable 64 and the drive seat 63 are coaxially connected by a first bearing 65. The output end of the rotary power mechanism 52 is connected to the turntable 64 through an output shaft 521, which facilitates the rotation of the turntable 64 relative to the drive seat 63. The outer cup 241 includes an outer cup bottom and an outer cup wall extending from the edge of the outer cup bottom to one side of the outer cup bottom. The space between the outer cup bottom and the outer cup wall forms the second receiving cavity. The inner cup 244 is connected to the outer cup bottom through the second bearing 245. The space between the inner cup bottom and the inner cup wall forms the third receiving cavity.
[0043] In one alternative embodiment, such as Figures 7-9As shown, the drive sidewall 632 is provided with a protruding edge 633 extending away from the end of the drive sidewall 632 that is connected to the drive base plate 631 in a direction away from the central axis of the groove. The edge of the protruding edge 633 that is away from the end connected to the drive sidewall 632 is connected to a protruding sidewall 634 that extends in the same direction as the drive sidewall 632. Specifically, the protruding sidewall 634 is provided with a protruding or recessed internal linkage tooth 6341, and the outer sidewall of the outer cup body 241 is provided with a linkage external tooth 2412 that cooperates with the linkage internal tooth 6341. In this embodiment, the linkage internal tooth 6341 is disposed on the protruding sidewall 634 and is triangular in shape, the linkage external tooth 2412 is disposed on the outer side of the cup wall of the outer cup body, and the outer cup body base plate is supported on the protruding edge 633. The protruding edge 633 and driving sidewall 632 prevent direct contact between the outer cup body 241 and the turntable 64. The internal linkage gear 6341 and external linkage gear 2412 facilitate the rotation of the outer cup body 241 when the driving seat 63 rotates. Furthermore, the turntable 64 and the driving seat 63 are coaxially connected via a first bearing 65. The output end of the rotary power mechanism 52 is connected to the turntable 64 via an output shaft 521, facilitating the rotation of the turntable 64 relative to the driving seat 63. The outer cup body 241 includes an outer cup bottom and an outer cup wall extending along the edge of the outer cup bottom towards one side of the outer cup bottom. The space between the outer cup bottom and the outer cup wall forms the second receiving cavity. The inner cup body 244 is connected to the outer cup bottom via the second bearing 245. The side of the outer cup bottom away from the connection with the inner cup body 244 is connected to the protruding edge 633. The space between the inner cup bottom and the inner cup wall forms the third receiving cavity.
[0044] In an optional embodiment, the end of the drive seat 63 connected to the torsion power mechanism 51 is provided with an annular internal rack 635, and the output end of the torsion power mechanism 51 is connected to the annular internal rack 635 through a gear; the annular internal rack 635 is provided to facilitate the torsion power mechanism 51 to drive the drive seat 63 to rotate, which is simple and convenient.
[0045] In an optional embodiment, a magnetic attraction mechanism is provided between the turntable 64 and the inner cup 244. This magnetic attraction mechanism facilitates the rotation of the inner cup 244 relative to the outer cup 241 by the turntable 64. The magnetic attraction mechanism includes a first magnetic attraction part 641 mounted on the turntable 64 and a second magnetic attraction part 2441 mounted on the inner cup 244, with the first and second magnetic attraction parts 641 spaced apart from each other. The turntable 64 has a first magnetic attraction receiving groove, in which the first magnetic attraction part 641 is installed. The inner cup 244 has a second magnetic attraction receiving groove, in which the second magnetic attraction part 2441 is installed. The first and second magnetic attraction parts 641 are grouped together, and multiple groups are arranged in an array or ring. The first and second magnetic suction slots effectively secure the first magnetic suction part 641 and the second magnetic suction part 2441, significantly increasing the stability of the multi-purpose massager structure. The coordinated use of the first magnetic suction part 641 and the second magnetic suction part 2441 facilitates the rotation of the inner cup 244 by the turntable 64. Simultaneously, the first magnetic suction slot allows the turntable 64 to rotate the first magnetic suction part 641, while the second magnetic suction slot facilitates the rotation of the second magnetic suction part 2441 by the inner cup 244, making the process simple and convenient.
[0046] In an optional embodiment, a magnetic attraction mechanism is provided between the turntable 64 and the inner cup 244. This magnetic attraction mechanism facilitates the rotation of the inner cup 244 relative to the outer cup 241 by the turntable 64. The magnetic attraction mechanism includes a first magnetic attraction part 641 mounted on the turntable 64 and a second magnetic attraction part 2441 mounted on the inner cup 244, with a gap between the first and second magnetic attraction parts 641. The turntable 64 has a first magnetic attraction receiving groove, in which the first magnetic attraction part 641 is installed. The inner cup 244 has a second magnetic attraction receiving groove, in which the second magnetic attraction part 2441 is installed. In this embodiment, the first magnetic attraction part 641 and the second magnetic attraction part 2441 are matched and matched. The six first magnetic attraction parts 641 mounted on the turntable 64 and the three second magnetic attraction parts 2441 mounted on the bottom of the inner cup 244 attract each other. When the turntable 64 rotates, it can effectively drive the inner cup 244 to rotate. At the same time, the use of a magnetic attraction mechanism for transmission connection can effectively prevent liquid leakage from the massage part 2 into the drive and power mechanism of the main unit during movement, so as to maintain the normal use of the multi-purpose massager and increase its lifespan.
[0047] In an optional embodiment, the main unit 1 includes a main unit cup and a control mechanism installed within the main unit cup, the control mechanism controlling the power mechanism. In this embodiment, the main unit 1 also includes a wireless communication mechanism connected to the control mechanism. The control mechanism uses an integrated circuit chip, and the wireless communication mechanism uses a WIFI chip or a Bluetooth chip. By presetting parameters for the control mechanism, the multi-purpose massager structure can operate automatically according to the preset parameters, achieving full automation and effectively improving the user experience. Furthermore, the wireless communication mechanism facilitates control of the multi-purpose massager structure via external smart devices, effectively increasing the practicality of the multi-purpose massager structure.
[0048] In an optional embodiment, the main cup body includes a main cup bottom 11 and a main cup wall 12 extending along the edge of the main cup bottom 11 toward one side of the main cup bottom 11, the space between the main cup bottom 11 and the main cup wall 12 forming the hollow cavity. A first connecting mechanism for fixing the massage part 2 and the main unit 1 is provided between the main cup wall 12 and the outer fixing frame 22. The first connecting mechanism includes a third magnetic suction part 121 installed at the end of the main cup wall 12 connected to the outer fixing frame 22 and a fourth magnetic suction part 221 installed on the outer fixing frame 22, the third magnetic suction part 121 and the fourth magnetic suction part 221 working together. The main cup wall 12 has a third magnetic suction receiving groove for accommodating the third magnetic suction part 121, and the outer fixing frame 22 has a fourth magnetic suction receiving groove for accommodating the fourth magnetic suction part 221. Of course, the first connecting mechanism can also be a snap-fit connection mechanism or a threaded connection mechanism. The first connecting mechanism further securely connects the massage unit 2 and the main unit cup wall 12, facilitating the use of the multi-purpose massager structure. The third and fourth magnetic suction slots effectively secure the third magnetic suction part 121 and the fourth magnetic suction part 221, significantly increasing the stability of the multi-purpose massager structure. Both the third and fourth magnetic suction parts 121 utilize strong magnets; the strong attraction between these magnets effectively secures the massage unit 2 to the main unit cup wall 12. The third and fourth magnetic suction parts 121 are arranged in a group, such as... Figure 6 As shown, the massage unit 2 can be connected to the main unit cup wall 12 in a forward orientation, or it can be rotated 180 degrees clockwise to connect to the main unit cup wall 12 in a reverse orientation, without being limited to a single direction of connection. In addition, the hollow cavity provided effectively protects the massage unit 2 located within the hollow cavity through the main unit cup wall 12, effectively increasing the service life of the device.
[0049] In an optional embodiment, the base portion 6 includes a base plate 61 connected to the connecting rod 4 and a base sidewall 62 extending along the edge of the base plate 61 toward the same side of the base plate 61. The space between the base plate 61 and the base sidewall 62 forms a fourth accommodating cavity. The fourth accommodating cavity can effectively accommodate the inner cup portion and the drive seat 63 therein, thereby providing a stabilizing effect.
[0050] In an optional embodiment, the connecting rod 4 is provided with a sliding groove 41, and the output end of the telescopic power mechanism 53 is connected to a crank 42, the other end of which is slidably connected to the sliding groove 41. The output end of the telescopic power mechanism 53 drives the crank 42 to rotate, causing the other end of the crank 42 to slide in the sliding groove 41, thereby driving the base portion 6 to move vertically. That is, the wheel at the end of the sliding shaft is located in the sliding groove 41, thereby driving the connecting rod 4 to move vertically. Figure 2 The displacement is shown in the vertical direction. The sliding groove 41 is arranged parallel to the side of the base plate 61 that connects to the connecting rod 4. The end of the crank 42 connected to the sliding groove 41 is provided with a roller 421. The roller 421 facilitates the left and right movement of the crank 42 in the sliding groove 41. When the crank 42 rotates upward away from the end connected to the telescopic power mechanism 53 under the action of the telescopic power mechanism 53, it can drive the connecting rod 4 to move upward. When the crank 42 rotates downward away from the end connected to the telescopic power mechanism 53, it can drive the connecting rod 4 to move downward.
[0051] In one optional embodiment, the inner wall of the hollow accommodating cavity of the host is provided with a guide rail 71 for directional movement of the base portion 6 and a sliding member 72 slidably mounted on the guide rail 71. The outer wall of the base sidewall 62 is fixedly connected to the sliding member 72. In another optional embodiment, the inner wall of the accommodating cavity is provided with a guide block, and the outer wall of the base sidewall 62 is provided with a guide groove that cooperates with the guide block. In this embodiment, the combination of the guide rail 71 and the sliding member 72 or the guide block and the guide groove can improve the stability of the vertical movement of the base portion 6.
[0052] In one optional embodiment, the main unit 1 further includes a power supply mechanism housed within the main unit's cup body. In another optional embodiment, the main unit 1 includes a power conversion mechanism for connecting to an external power source. The inclusion of a power supply mechanism effectively increases the ease of use and portability of the multi-purpose massager; while the inclusion of a power conversion mechanism for connecting to an external power source facilitates extended battery life.
[0053] In an optional embodiment, the massage unit 2 further includes a cover 3 that is connected to the end of the outer fixing frame 22 away from the connection with the main unit 1. The cover 3 effectively protects the interior of the massage unit 2 and facilitates storage of the multi-purpose massager structure. The cover 3 is connected to the outer fixing frame 22 by threads or snaps.
[0054] One embodiment of the present invention is as follows: The massage part 2 is installed in the hollow cavity of the main unit 1. The inner cup 244 is magnetically driven to the turntable 64 through a magnetic attraction mechanism. The outer fixing frame 22 is fixedly connected to the cup wall 12 of the main unit through a first connecting mechanism. The linkage external teeth 2412 of the outer cup 241 are connected to the linkage internal teeth 6341 of the drive seat 63. The torsion power mechanism 51 is a motor. When the torsion power mechanism 51 is working, the drive seat 63 is driven to rotate through the annular internal rack 635 at the bottom of the drive seat 63, thereby sequentially driving the outer cup 241 and the inner fixing frame 23 to rotate, causing the tubular rubber part 212 to deform radially, making the first massage cavity 213 smaller, and achieving a clamping massage effect. At the same time, the rotation power mechanism 52 is also a motor. When the rotation power mechanism 52 is working, it is driven to rotate through the input... The output shaft 521 drives the turntable 64 to rotate. The turntable 64, through a magnetic attraction mechanism, drives the inner cup 244 to rotate relative to the outer cup 241, thereby driving the inner cup rubber part 242 to rotate, achieving the rotational massage effect of the multi-purpose massager structure. The telescopic power mechanism 53 uses a motor. When the telescopic power mechanism 53 is working, it drives the crank 42 to rotate around the output end of the motor. The other end of the crank 42 moves left and right in the sliding groove 41 of the connecting rod 4, driving the connecting rod 4 to move up and down. This, in turn, drives the inner cup part relative to the head cup rubber part 21 to move relative to the base part 6, drive seat 63, outer cup 241, and inner fixing frame 23. When the inner cup part moves, it can drive the tubular rubber part 212 to deform, thereby achieving the telescopic massage effect of the head cup rubber part 21, realizing the telescopic massage effect of the multi-purpose massager structure. By using different power mechanisms to operate the drive seat 63, turntable 64, and base part 6 in different ways, the multi-purpose massager structure can perform different operations simultaneously to achieve different massage effects, which is simple and convenient.
[0055] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "an example," "some embodiments," "in an alternative embodiment," "specifically," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0056] The above description, in conjunction with specific embodiments, provides a further detailed explanation of the present invention, but it should not be construed as limiting the specific implementation of the invention to these descriptions. For those skilled in the art, several simple deductions or substitutions can be made without departing from the concept of the present invention.
Claims
1. A multi-purpose massager structure, characterized by, The massage device comprises a main body provided with a hollow cavity and a massage part installed in the hollow cavity of the main body. The main body comprises a driving base installed in the hollow cavity and provided with a first accommodating cavity, a rotating disc installed in the first accommodating cavity, and a power mechanism for driving the driving base and the rotating disc to rotate. The massage part comprises an outer cup provided with a second accommodating cavity and connected with the driving base, an inner cup installed in the second accommodating cavity, and a head cup part connected with the opening end of the second accommodating cavity of the outer cup. A first bearing is arranged between the driving base and the rotating disc, a second bearing is arranged between the outer cup and the inner cup, and a magnetic attraction mechanism is arranged between the rotating disc and the inner cup. The main body further comprises a base part installed in the hollow cavity. The power mechanism comprises a torsion power mechanism for driving the driving base to rotate, a rotating power mechanism for driving the rotating disc to rotate, and a telescopic power mechanism for driving the base part to move in a direction. The torsion power mechanism and the rotating power mechanism are fixedly installed on one side of the base part, and the telescopic power mechanism is connected to the other side of the base part. The output end of the rotating power mechanism is connected to the rotating disc through an output shaft, and the output end of the torsion power mechanism is connected to the driving base through an annular internal gear rack.
2. The multi-purpose massager structure as claimed in claim 1, wherein, The driving base comprises a driving bottom plate and a driving side wall extending from the edge of the driving bottom plate to one side of the driving bottom plate. The space between the driving bottom plate and the driving side wall forms the first accommodating cavity. The rotating disc is connected to the driving bottom plate through the first bearing. The driving side wall is provided with a linkage internal gear. The outer side wall of the outer cup is provided with a linkage external gear matched with the linkage internal gear.
3. The multi-purpose massager structure as claimed in claim 2, wherein The outer cup comprises an outer cup bottom plate and an outer cup wall extending from the edge of the outer cup bottom plate to one side of the outer cup bottom plate. The space between the outer cup bottom plate and the outer cup wall forms the second accommodating cavity. The inner cup is connected to the outer cup bottom plate through the second bearing.
4. The multi-purpose massager structure as claimed in claim 1, wherein The inner cup comprises an inner cup bottom plate and an inner cup wall extending from the edge of the inner cup bottom plate to one side of the inner cup bottom plate. The outer cup is connected to the inner cup bottom plate through the second bearing. The space between the inner cup bottom plate and the inner cup wall forms a third accommodating cavity.
5. The multi-purpose massager structure as claimed in claim 1 or 4 wherein, The magnetic attraction mechanism comprises a first magnetic attraction part installed on the rotating disc and a second magnetic attraction part installed on the inner cup. The first magnetic attraction part and the second magnetic attraction part are arranged in a spaced manner.
6. The multi-purpose massager structure as claimed in claim 5, wherein The rotating disc is provided with a first magnetic attraction accommodating groove. The first magnetic attraction part is arranged in the first magnetic attraction accommodating groove. The inner cup is provided with a second magnetic attraction accommodating groove. The second magnetic attraction part is arranged in the second magnetic attraction accommodating groove.
7. The multi-purpose massager structure as claimed in claim 6, wherein The first magnetic attraction part and the second magnetic attraction part are arranged in a group in a spaced manner, and a plurality of groups are arranged in an array or a circular ring shape.
8. The multi-purpose massager structure as claimed in claim 1, wherein, The main body comprises a main body cup and a control mechanism installed in the main body cup. The control mechanism controls the power mechanism.
9. The multi-purpose massager structure as claimed in claim 8, wherein, The main body cup comprises a main body bottom plate and a main body wall extending from the edge of the main body bottom plate to one side of the main body bottom plate. The space between the main body bottom plate and the main body wall forms the hollow cavity. A first connecting mechanism is arranged between the main body wall and the massage part.
10. The multi-purpose massager structure as claimed in claim 1, wherein, The massage part further comprises an inner cup part connected with the head cup part, the inner cup part comprising the outer cup body, an inner cup body and an inner cup rubber part arranged in the inner cup body; the head cup part comprising an outer fixed frame for fixed connection with the main machine, a head cup rubber part fixedly connected with the outer fixed frame and an inner fixed frame arranged at an end of the head cup rubber part away from the outer fixed frame; the inner fixed frame is connected with the outer cup body, and a first connecting mechanism is arranged between the outer fixed frame and the main machine.
11. The multi-purpose massager structure as claimed in claim 10, wherein, The head cup rubber part comprises a face rubber part connected with the outer fixed frame and a tubular rubber part connected with the face rubber part and provided with a first massage cavity.
12. The multi-purpose massager structure as claimed in claim 10, wherein, The inner cup rubber part comprises an inner cup rubber bottom and an inner cup rubber wall extending from the edge of the inner cup rubber bottom to one side of the inner cup rubber bottom, and a space between the inner cup rubber bottom and the inner cup rubber wall forms a second massage cavity.
Citation Information
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