Leg massager

By setting up close or away massage components for soles and soles in the leg massager, the problem of narrow massage area of the existing massager is solved, and comprehensive massage in multiple areas of the feet is achieved, improving the user experience.

CN223126856UActive Publication Date: 2025-07-22FOSHAN MIEN ELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202421916735.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-07-22
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

When existing leg massagers provide foot massage function, the massage area is small and cannot effectively massage other key parts of the feet, affecting the overall experience and satisfaction of the user.

Method used

A leg massager is designed, including a first massage assembly for massage the soles of the feet and a second massage assembly for the soles of the feet. The second massage assembly can be close to or away from the first massage assembly, increase the massage area, and realize a diverse massage technique through a sliding mechanism.

Benefits of technology

A comprehensive massage of multiple areas of the feet has been achieved, which improves the diversity and comprehensiveness of the massage effects, effectively alleviates user foot fatigue, and improves user comfort and satisfaction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of massagers, in particular to a leg massager, which is characterized in that a first massage component for massaging the arch of the foot and a second massage component for massaging the sole of the foot are arranged to comprehensively massage multiple areas of the foot, and the first massage component is matched with the second massage component, so that the massage area of a device body can be increased; secondly, the second massage assembly can be arranged close to or far away from the first massage assembly, the massage area of the device body is further increased, and the problems that when an existing leg massage instrument provides the foot arch massage function, the massage area is generally narrow and can only act on the foot arch area in a concentrated mode, and the massage effect is poor are effectively solved. The synchronous massage requirement of other key parts of the foot is neglected, so that the massage effect is not comprehensive enough, and the overall experience feeling and satisfaction degree of the user are influenced.
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Description

Technical Field

[0001] The utility model relates to the technical field of massagers, specifically a leg massager. Background Art

[0002] The leg massager is a great tool for modern people to pursue a healthy and comfortable life. The leg massager combines traditional massage wisdom and modern technology. Through diversified massage techniques, such as gentle roller rolling, soothing vibration massage, and warm hot compress function, etc., it accurately acts on the key areas of the soles of the feet, bringing deep relaxation and relief to the feet. Whether it is the fatigue accumulated from daily walking, or the tightness caused by standing for a long time or wearing high heels, the leg massager can effectively relieve it and help restore the natural vitality and good state of the feet. The convenient and easy-to-use design of the leg massager allows everyone to easily enjoy a professional foot massage experience at home, becoming an indispensable self-care method in modern life.

[0003] When the current leg massagers on the market provide the foot center massage function, the general massage area is relatively small. They often only focus on acting on the foot center area, while ignoring the synchronous massage needs of other key parts of the feet, resulting in an incomplete massage effect, thus affecting the overall experience and satisfaction of users.

[0004] The present utility model is studied and proposed in view of the deficiencies of the prior art. Content of the Utility Model

[0005] In view of the problem that when the existing leg massagers mentioned above provide the foot center massage function, the general massage area is relatively small, often only focusing on acting on the foot center area, while ignoring the synchronous massage needs of other key parts of the feet, resulting in an incomplete massage effect, thus affecting the overall experience and satisfaction of users, the technical solution adopted by the present utility model to solve its technical problems is:

[0006] The leg massager includes a device body. The device body includes a driving component, a transmission component connected to the driving component, and a massage component connected to the transmission component. The massage component includes a first massage component for massaging the foot center and a second massage component for massaging the sole of the foot. The driving component drives the transmission component to drive the second massage component to approach or move away from the first massage component.

[0007] Further, the first massage component includes a rotating disc. The transmission component includes a first transmission disc located below the rotating disc and a second transmission disc located below the first transmission disc and connected to the driving component. A first connecting column is provided between the rotating disc and the first transmission disc, and a second connecting column is provided between the first transmission disc and the second transmission disc, so that the rotating disc, the first transmission disc, and the second transmission disc can rotate synchronously.

[0008] Further, the second massage component includes a first massage member located on one side of the rotating disc and for massaging the heel, and a second massage member located on the other side of the rotating disc and for massaging the sole. One of the first connecting column and the second connecting column is located on the side close to the first massage member, and the other of the first connecting column and the second connecting column is located on the side close to the second massage member.

[0009] Further, a first sliding mechanism is provided between the first massage member and the first transmission disc, so that the first massage member can move relatively closer to or away from the first massage assembly.

[0010] Further, the device body includes a first supporting base for supporting the first massage member. The first sliding mechanism includes a first hinge block hinged to the first connecting column, a third connecting column located on the first massage member and connected to the first hinge block, a first sliding column located on the first massage member, and a first sliding groove located on the first supporting base and slidably connected to the third connecting column and the first sliding column respectively.

[0011] Further, a second sliding mechanism is provided between the second massage member and the second transmission disc, so that the second massage member can move relatively closer to or away from the first massage assembly.

[0012] Further, the device body includes a second supporting base for supporting the second massage member. The second sliding mechanism includes a second hinge block hinged to the second connecting column, a fourth connecting column located on the second massage member and connected to the second hinge block, a second sliding column located on the second massage member, and a second sliding groove located on the second supporting base and slidably connected to the fourth connecting column and the second sliding column respectively.

[0013] Further, the first massage assembly includes a plurality of first massage heads located on the rotating disc and spaced along the circumferential direction of the rotating disc. The first massage member includes a first mounting seat, and the second massage member includes a second mounting seat. A plurality of massage wheels are provided on both the first mounting seat and the second mounting seat and are spaced apart. The plurality of massage wheels are respectively hinged to the first mounting seat and the second mounting seat.

[0014] Further, the massage assembly includes a third massage assembly located on one side of the first massage assembly and symmetrically arranged with the first massage assembly, and a fourth massage assembly located on one side of the second massage assembly and symmetrically arranged with the second massage assembly.

[0015] Further, the driving component includes a driving shaft located at the output end, and the transmission component includes a rotating chassis connected to the driving shaft and a transmission shaft located on the rotating chassis and connected to the second transmission disc.

[0016] The beneficial effects of the present utility model are as follows:

[0017] 1. By providing the first massage component for massaging the sole of the foot and the second massage component for massaging the bottom of the foot, the present utility model realizes comprehensive massage of multiple areas of the foot. The cooperation of the first massage component and the second massage component is conducive to increasing the massage area of the device body. Secondly, the second massage component can be arranged to be closer to or farther from the first massage component, further increasing the massage area of the device body, effectively solving the problem that when the existing leg massager provides the sole massage function, the general massage area is relatively narrow, often only focusing on the sole area and ignoring the synchronous massage needs of other key parts of the foot, resulting in an incomplete massage effect and affecting the overall experience and satisfaction of users.

[0018] 2. The second massage component can be arranged to be closer to or farther from the first massage component, which is conducive to providing more diverse massage techniques, making the massage effect of the device body on the user's foot more diverse and comprehensive, and thus more effectively relieving the fatigue of the user's foot.

[0019] The following will further illustrate the present utility model in conjunction with the drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a schematic structural diagram of the device body of the present utility model;

[0021] Figure 2 is an exploded view of the device body of the present utility model;

[0022] Figure 3 is one of the exploded views of the first massage component and the second massage component of the present utility model;

[0023] Figure 4 is the second exploded view of the first massage component and the second massage component of the present utility model;

[0024] Figure 5 is a moving schematic diagram of the first massage component and the second massage component of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0025] The following will describe the embodiments of the present utility model in detail in conjunction with the drawings.

[0026] As Figures 1 to 5The shown leg massager includes a device body 1, and the device body 1 includes a driving component 2, a transmission component 3 connected to the driving component 2, and a massage component 4 connected to the transmission component 3. The massage component 4 includes a first massage component 41 for massaging the sole of the foot and a second massage component 42 for massaging the bottom of the foot. The driving component 2 drives the transmission component 3 to drive the second massage component 42 to approach or move away from the first massage component 41;

[0027] By setting a first massage component for massaging the sole of the foot and a second massage component for massaging the bottom of the foot, the present utility model realizes comprehensive massage of multiple areas of the foot. The cooperation between the first massage component and the second massage component is beneficial to increasing the massage area of the device body. Secondly, the second massage component can be arranged to approach or move away from the first massage component, further increasing the massage area of the device body, effectively solving the problem that when the existing leg massager provides the function of massaging the sole of the foot, the general massage area is relatively narrow, often only concentrated on the sole area of the foot, while ignoring the synchronous massage needs of other key parts of the foot, so that the massage effect is not comprehensive enough, thus affecting the overall experience and satisfaction of users.

[0028] Furthermore, the arrangement that the second massage component 42 can approach or move away from the first massage component 41 is beneficial to providing more diverse massage techniques, so that the massage effect of the device body 1 on the user's foot is more diverse and comprehensive, thereby more effectively relieving the fatigue of the user's foot.

[0029] Furthermore, the device body 1 is of a symmetrical structure. One side of the device body 1 is the first massage component 41 and the second massage component 42, and the first massage component 41 and the second massage component 42 jointly act to massage the sole of the user's left foot. On the other side of the device body 1, there is a third massage component 43 symmetrically arranged with the first massage component 41 and a fourth massage component 44 symmetrically arranged with the second massage component 42. The third massage component 43 and the fourth massage component 44 jointly act to massage the sole of the user's right foot.

[0030] Furthermore, the driving component 2 is a dual-axis motor. Driving shafts 21 are provided on both the left and right sides of the dual-axis motor. The driving shafts 21 on both sides can respectively control the transmission components 3 on both sides, so as to simultaneously control the massage components on both sides and realize simultaneous massage of both feet.

[0031] Furthermore, a sliding mechanism is provided between the second massage component 42 and the transmission component 3, so that the second massage component 42 can approach or move away from the first massage component 41 under the action of the transmission component 3.

[0032] Optionally, in some embodiments, the sliding mechanism includes a hinge member hinged to the transmission assembly 3, a sliding groove located on the device body 1, and a sliding rail provided on the second massage assembly 42. The other end of the hinge member is connected to the second massage assembly 42. When the hinge member rotates following the transmission assembly 3, the other end of the hinge member undergoes a relative displacement, thereby driving the second massage assembly 42 to move relatively. The sliding groove and the sliding rail are slidably connected so that the second massage assembly 42 can slide along the direction of the sliding groove.

[0033] Optionally, in some embodiments, the sliding mechanism includes a hinge member hinged to the transmission assembly 3, a sliding groove located on the device body 1, and a ball provided on the second massage assembly 42. The other end of the hinge member is connected to the second massage assembly 42. When the hinge member rotates following the transmission assembly 3, the other end of the hinge member undergoes a relative displacement, thereby driving the second massage assembly 42 to move relatively. The sliding groove and the ball are slidably connected so that the second massage assembly 42 can slide along the direction of the sliding groove.

[0034] Optionally, in some embodiments, the sliding mechanism includes a hinge member hinged to the transmission assembly 3, a sliding groove located on the device body 1, and a sliding cylinder provided on the second massage assembly 42. The other end of the hinge member is connected to the second massage assembly 42. When the hinge member rotates following the transmission assembly 3, the other end of the hinge member undergoes a relative displacement, thereby driving the second massage assembly 42 to move relatively. The sliding groove and the sliding cylinder are slidably connected so that the second massage assembly 42 can slide along the direction of the sliding groove.

[0035] As Figures 1 to 5 shown, the first massage assembly 41 includes a rotating disc 411. The transmission assembly 3 includes a first transmission disc 31 located below the rotating disc 411 and a second transmission disc 32 located below the first transmission disc 31 and connected to the drive assembly 2. A first connecting column 51 is provided between the rotating disc 411 and the first transmission disc 31, and a second connecting column 52 is provided between the first transmission disc 31 and the second transmission disc 32, so that the rotating disc 411, the first transmission disc 31, and the second transmission disc 32 can rotate synchronously;

[0036] Furthermore, the rotating disc 411, the first connecting column 51, the first transmission disc 31, the second connecting column 52, and the second transmission disc 32 are connected in sequence, which helps to ensure that the rotating disc 411, the first transmission disc 31, and the second transmission disc 32 can rotate synchronously, effectively avoiding the occurrence of energy loss and mechanical wear caused by inconsistent rotation speeds.

[0037] Furthermore, the setting of synchronous rotation helps to maintain the balance of the entire transmission assembly 3, which is beneficial to reducing the shaking or noise generated due to uneven rotation speed.

[0038] Optionally, in some embodiments, one end of the first connecting column 51 is threadedly connected to the rotating disc 411, and the other end of the first connecting column 51 is threadedly connected to the first transmission disc 31. Similarly, one end of the second connecting column 52 is threadedly connected to the first transmission disc 31, and the other end of the second connecting column 52 is threadedly connected to the second transmission disc 32.

[0039] Optionally, in some embodiments, one end of the first connecting column 51 is snap-connected to the rotating disc 411, and the other end of the first connecting column 51 is snap-connected to the first transmission disc 31. Similarly, one end of the second connecting column 52 is snap-connected to the first transmission disc 31, and the other end of the second connecting column 52 is snap-connected to the second transmission disc 32.

[0040] Optionally, in some embodiments, one end of the first connecting column 51 is connected to the rotating disc 411 by a slot, and the other end of the first connecting column 51 is connected to the first transmission disc 31 by a slot. Similarly, one end of the second connecting column 52 is connected to the first transmission disc 31 by a slot, and the other end of the second connecting column 52 is connected to the second transmission disc 32 by a slot.

[0041] Optionally, in some embodiments, the rotating disc 411, the first connecting column 51, the first transmission disc 31, the second connecting column 52, and the second transmission disc 32 are integrally formed.

[0042] As Figures 1 to 5 shown, the second massage assembly 42 includes a first massage member 421 located on one side of the rotating disc 411 and used for massaging the heel, and a second massage member 422 located on the other side of the rotating disc 411 and used for massaging the sole. One of the first connecting column 51 and the second connecting column 52 is located on the side close to the first massage member 421, and the other of the first connecting column 51 and the second connecting column 52 is located on the side close to the second massage member 422;

[0043] Furthermore, by providing the first massage member 421, the user can massage the heel area through the first massage member 421. With the arrangement of the first sliding mechanism 6, the first massage member 421 can undergo relative displacement. Under the action of the first sliding mechanism 6, the first massage member 421 can cover and massage a larger heel area, enabling the user to enjoy a more comprehensive foot massage and effectively improving the overall massage effect.

[0044] Furthermore, by providing the second massage member 422, the user can massage the sole area through the second massage member 422. With the arrangement of the second sliding mechanism 7, the second massage member 422 can undergo relative displacement. Under the action of the second sliding mechanism 7, the second massage member 422 can cover and massage a larger sole area, enabling the user to enjoy a more comprehensive foot massage and effectively improving the overall massage effect.

[0045] Optionally, in some embodiments, both the first connecting post 51 and the second connecting post 52 are located on the side close to the first massage member 421, or both the first connecting post 51 and the second connecting post 52 are located on the side close to the second massage member 422.

[0046] Further, as a preferred mode rather than a limitation of the present invention, one of the first connecting post 51 and the second connecting post 52 is located on the side close to the first massage member 421, and the other of the first connecting post 51 and the second connecting post 52 is located on the side close to the second massage member 422.

[0047] As Figures 1 to 5 shown, a first sliding mechanism 6 is provided between the first massage member 421 and the first transmission disc 31, so that the first massage member 421 can move relatively closer to or away from the first massage assembly 41;

[0048] Further, during the relative displacement of the first massage member 421, different types of massage techniques can be achieved, such as pushing, kneading, pressing, etc., which can more effectively relax muscles, relieve fatigue, and is beneficial to improving the comfort of the user.

[0049] As Figures 1 to 5 shown, the device body 1 includes a first supporting base 11 for supporting the first massage member 421. The first sliding mechanism 6 includes a first hinge block 61 hinged to the first connecting post 51, a third connecting post 63 located on the first massage member 421 and connected to the first hinge block 61, a first sliding post 62 located on the first massage member 421, and a first sliding groove 64 located on the first supporting base 11 and slidably connected to the third connecting post 63 and the first sliding post 62 respectively;

[0050] Specifically, one end of the first hinge block 61 is hinged to the first connecting post 51, and the other end of the first hinge block 61 is inserted and connected to the third connecting post 63, thereby connecting the first hinge block 61 and the first massage member 421. The first sliding post 62 on the first massage member 421 is slidably connected to the first sliding groove 64. When the first connecting post 51 is located on the side away from the first supporting base 11, at this time, the first massage member 421 is located on the side close to the first massage assembly 41. When the first connecting post 51 makes a circular motion and gradually approaches the first supporting base 11, the first hinge block 61 pushes the first massage member 421 to gradually move away from the first massage assembly 41 along the direction of the first sliding groove 64. When the first connecting post 51 makes a circular motion and gradually moves away from the first supporting base 11, the first hinge block 61 pulls the first massage member 421 to gradually approach the first massage assembly 41 along the direction of the first sliding groove 64.

[0051] Optionally, in some embodiments, the first sliding mechanism 6 includes a first hinge block 61 hinged to the first connecting column 51, a third connecting column located on the first massage member 421 and connected to the first hinge block 61, a slide rail located on the first massage member 421, and a first sliding groove 64 located on the first supporting base 11 and slidably connected to the third connecting column 63 and the slide rail respectively.

[0052] Optionally, in some embodiments, the first sliding mechanism 6 includes a first hinge block 61 hinged to the first connecting column 51, a third connecting column located on the first massage member 421 and connected to the first hinge block 61, balls located on the first massage member 421, and a first sliding groove 64 located on the first supporting base 11 and slidably connected to the third connecting column 63 and the balls respectively.

[0053] As Figures 1 to 5 shown, a second sliding mechanism 7 is provided between the second massage member 422 and the second transmission disc 32 so that the second massage member 422 can move relatively closer to or farther away from the first massage assembly 41;

[0054] Furthermore, during the relative displacement process of the second massage member 422, different types of massage techniques can be achieved, such as pushing, kneading, pressing, etc., which can more effectively relax muscles, relieve fatigue, and is beneficial to improving the comfort of the user.

[0055] As Figures 1 to 5 shown, the device body 1 includes a second supporting base 12 for supporting the second massage member 422. The second sliding mechanism 7 includes a second hinge block 71 hinged to the second connecting column 52, a fourth connecting column 73 located on the second massage member 422 and connected to the second hinge block 71, a second sliding column 72 located on the second massage member 422, and a second sliding groove 74 located on the second supporting base 12 and slidably connected to the fourth connecting column 73 and the second sliding column 72 respectively;

[0056] Specifically, one end of the second hinge block 71 is hinged to the second connecting column 52, and the other end of the second hinge block 71 is inserted and connected to the fourth connecting column 73, thereby connecting the second hinge block 71 and the second massage member 422. The second sliding column 72 on the second massage member 422 is slidably connected to the second sliding groove 74. When the second connecting column 52 is located on the side away from the second supporting base 12, at this time, the second massage member 422 is located on the side close to the first massage assembly 41. When the second connecting column 52 makes a circular motion and gradually approaches the second supporting base 12, the second hinge block 71 pushes the second massage member 422 to gradually move away from the first massage assembly 41 along the direction of the second sliding groove 74. When the second connecting column 52 makes a circular motion and gradually moves away from the second supporting base 12, the second hinge block 71 pulls the second massage member 422 to gradually approach the first massage assembly 41 along the direction of the second sliding groove 74.

[0057] Optionally, in some embodiments, the second sliding mechanism 7 includes a second hinge block 71 hinged to the second connecting column 52, a fourth connecting column 73 located on the second massage member 422 and connected to the second hinge block 71, a slide rail located on the second massage member 422, and a second sliding groove 74 located on the second supporting base 12 and slidably connected to the fourth connecting column 73 and the slide rail respectively.

[0058] Optionally, in some embodiments, the second sliding mechanism 7 includes a second hinge block 71 hinged to the second connecting column 52, a fourth connecting column 73 located on the second massage member 422 and connected to the second hinge block 71, a ball located on the second massage member 422, and a second sliding groove 74 located on the second supporting base 12 and slidably connected to the fourth connecting column 73 and the ball respectively.

[0059] As Figures 1 to 5 shown, the first massage assembly 41 includes several first massage heads 412 located on the rotating disc 411 and spaced along the circumferential direction of the rotating disc 411. The first massage member 421 includes a first mounting base 4211, and the second massage member 422 includes a second mounting base 4221. Several massage wheels 40 are provided on both the first mounting base 4211 and the second mounting base 4221 at intervals. The several massage wheels 40 are respectively hinged to the first mounting base 4211 and the second mounting base 4221;

[0060] Furthermore, the first massage assembly 41 includes several first massage heads 412 located on the rotating disc 411 and spaced along its circumferential direction, so that the first massage assembly 41 can cover a wider area of the sole of the foot to achieve multi-point simultaneous massage. At the same time, the rotating disc 411 can rotate along the circumferential direction, thereby providing a rotational massage effect and effectively enhancing the overall massage effect.

[0061] Furthermore, by arranging a plurality of massage wheels 40 to be hinged to the first mounting seat 4211 and the second mounting seat 4221 respectively, various massage techniques can be simulated, such as kneading, rolling, etc. The diversified massage methods can better imitate the techniques of professional masseurs, which is beneficial to improving the massage effect.

[0062] Furthermore, several first massage heads 412 are hemispherical with different sizes. The hemispherical first massage heads 412 with different sizes can provide massage effects with different intensities and depths. The larger first massage heads 412 can bring deeper massage, while the smaller first massage heads 412 are suitable for more delicate massage, which helps to simulate different massage techniques and is beneficial to providing a diversified experience. Secondly, the hemispherical setting can better fit the curve and shape of the sole of the foot, thereby improving the fitting degree and comfort of the massage.

[0063] Furthermore, as a preferred embodiment rather than a limitation of the present utility model, the number of massage wheels 40 on the first mounting seat 4211 is 3, and the number of massage wheels 40 on the second mounting seat 4221 is 5.

[0064] Optionally, in some embodiments, the first massage heads 412 are fixedly connected to the rotating disc 411 and rotate to massage the soles of the user's feet following the rotating disc 411.

[0065] Optionally, in some other embodiments, the rotating disc 411 is provided with hinge shafts hinged to the first massage heads 412. The first massage heads 412 are hinged to the rotating disc 411. In addition to the rotation of the rotating disc 411, the first massage heads 412 can also rotate relatively through the hinge action, realizing a more comprehensive rotational massage.

[0066] As Figures 1 to 5 shown, the massage assembly 4 includes a third massage assembly 43 located on one side of the first massage assembly 41 and symmetrically arranged with the first massage assembly 41, and a fourth massage assembly 44 located on one side of the second massage assembly 42 and symmetrically arranged with the second massage assembly 42.

[0067] Furthermore, the first massage assembly 41 and the second massage assembly 42 are located on the same side and are used to massage the sole of the user's left foot, and the third massage assembly 43 and the fourth massage assembly 44 are located on the other side and are used to massage the sole of the user's right foot, effectively ensuring that both the left and right feet can receive balanced massage, which is beneficial to avoiding uneven massage effects.

[0068] Furthermore, by symmetrically arranging the massage assembly 4 on the left and right sides of the device body 1, the left and right feet of the user can be massaged simultaneously, which is beneficial to improving the use efficiency of the device body 1, saving the user's time, and enabling both feet to enjoy a comprehensive massage effect at the same time.

[0069] As Figures 1 to 5 shown, the drive assembly 2 includes a drive shaft 21 at the output end, and the transmission assembly 3 includes a rotating chassis 33 connected to the drive shaft 21 and a transmission shaft 34 located on the rotating chassis 33 and connected to the second transmission disc 32;

[0070] Further, the drive assembly 2 is a dual-axis motor.

[0071] Optionally, in some embodiments, the rotation directions of the output ends on both sides of the dual-axis motor are the same.

[0072] Optionally, in some embodiments, the rotation directions of the output ends on both sides of the dual-axis motor are opposite.

[0073] Specifically, when the drive assembly 2 operates normally, the drive shaft 21 rotates. The drive shaft 21 is connected to the rotating chassis 33 to drive the rotating chassis 33 to rotate. The transmission shaft 34 on the rotating chassis 33 rotates with the rotating chassis 33. The transmission shaft 34 is connected to the second transmission disc 32 so that the second transmission disc 32 rotates synchronously with the rotating chassis 33.

[0074] Further, a first tooth pattern (not shown in the figure) is provided on the drive shaft 21, and a second tooth pattern (not shown in the figure) meshing with the first tooth pattern is provided on the outer wall of the rotating chassis 33 so that the rotating chassis 33 can rotate with the drive shaft 21.

[0075] The implementation manner of Embodiment 1 is as follows:

[0076] When the driving assembly 2 operates normally, the driving shaft 21 drives the rotating chassis 33 to rotate. The rotating chassis 33 is connected to the second transmission disc 32 through the transmission shaft 34 so that the second transmission disc 32 can rotate synchronously with the rotating chassis 33. The second transmission disc 32, the second connecting column 52, the first transmission disc 31, the first connecting column 51 and the rotating disc 411 are connected in sequence. The second transmission disc 32, the first transmission disc 31 and the rotating disc 411 rotate synchronously. One of the first connecting column 51 and the second connecting column 52 is located on the side close to the first massage member 421, and the other of the first connecting column 51 and the second connecting column 52 is located on the side close to the second massage member 422. When the first connecting column 51 is located on the side close to the second massage member 422, the first massage member 421 approaches the first massage assembly 41. At this time, the second connecting column 52 is located on the side close to the first massage member 421, and the second massage member 422 approaches the first massage assembly 41. When the second transmission disc 32 rotates, the second connecting column 52 moves in a circular motion following the second transmission disc 32. The second connecting column 52 rotates and moves towards the side close to the second supporting base 12. The second hinge block 71 is hinged to the second connecting column 52, and the second hinge block 71 pushes the second massage member 422 to move away from the first massage assembly 41 along the direction of the second sliding groove 74. At this time, the first transmission disc 31 and the second transmission disc 32 rotate synchronously. The first connecting column 51 moves in a circular motion following the first transmission disc 31. The first connecting column 51 rotates and moves towards the side close to the first supporting base 11. The first hinge block 61 is hinged to the first connecting column 51, and the first hinge block 61 pushes the first massage member 421 to move away from the first massage assembly 41 along the direction of the first sliding groove 64. On the contrary, when the second transmission disc 32 continues to rotate, the second connecting column 52 moves in a circular motion following the second transmission disc 32. The second connecting column 52 rotates and moves from the side close to the second supporting base 12 towards the side close to the first supporting base 11. The second hinge block 71 is hinged to the second connecting column 52, and the second hinge block 71 pulls the second massage member 422 to move close to the first massage assembly 41 along the direction of the second sliding groove 74. At this time, when the first transmission disc 31 continues to rotate, the first connecting column 51 moves in a circular motion following the first transmission disc 31. The first connecting column 51 rotates and moves from the side close to the first supporting base 11 towards the side close to the second supporting base 12. The first hinge block 61 is hinged to the first connecting column 51, and the first hinge block 61 pulls the first massage member 421 to move close to the first massage assembly 41 along the direction of the first sliding groove 64.

[0077] The implementation manner of Embodiment 2 is as follows:

[0078] The difference between Embodiment 2 and Embodiment 1 lies in that: both the first connecting column 51 and the second connecting column 52 are located on the side close to the first massage member 421, or both the first connecting column 51 and the second connecting column 52 are located on the side close to the second massage member 422. When the first connecting column 51 is close to the second supporting base 12, the second connecting column 52 is also close to the second supporting base 12. At this time, the first massage member 421 is located close to the first massage assembly 41, and the second massage member 422 is located away from the first massage assembly 41. When the second transmission disc 32 makes a circular motion, the second connecting column 52 rotates and moves from the side close to the second supporting base 12 to the side close to the first supporting base 11, and the second hinge block 71 pulls the second massage member 422 to approach the first massage assembly 41 along the direction of the second sliding groove 74. At this time, the first transmission disc 31 and the second transmission disc 32 rotate synchronously, and the first connecting column 51 rotates and moves from the side close to the second supporting base 12 to the side close to the first supporting base 11, and the first hinge block 61 pushes the first massage member 421 to move away from the first massage assembly 41 along the direction of the first sliding groove 64; on the contrary, when the second transmission disc 32 continues to rotate, the second connecting column 52 rotates and moves from the side close to the first supporting base 11 to the side close to the second supporting base 12, and the second hinge block 71 pushes the second massage member 422 to move away from the first massage assembly 41 along the direction of the second sliding groove 74, while the first connecting column 51 rotates and moves from the side close to the first supporting base 11 to the side close to the second supporting base 12, and the first hinge block 61 pulls the first massage member 421 to approach the first massage assembly 41 along the direction of the first sliding groove 64.

[0079] The above only uses embodiments to further illustrate the technical content of the present invention to make it easier for readers to understand, but it does not mean that the implementation manners of the present invention are limited to this. Any technical extension or re-creation based on the present invention is protected by the present invention. The protection scope of the present invention is subject to the claims.

Claims

1. Leg massager, comprising a device body (1), characterized in that: The device body (1) includes a driving component (2), a transmission component (3) connected to the driving component (2), and a massage component (4) connected to the transmission component (3). The massage component (4) includes a first massage component (41) for massaging the sole of the foot and a second massage component (42) for massaging the bottom of the foot. The driving component (2) drives the transmission component (3) to drive the second massage component (42) to approach or move away from the first massage component (41).

2. The leg massager according to claim 1, wherein: The first massage component (41) includes a rotating disc (411). The transmission component (3) includes a first transmission disc (31) located below the rotating disc (411) and a second transmission disc (32) located below the first transmission disc (31) and connected to the driving component (2). A first connecting column (51) is provided between the rotating disc (411) and the first transmission disc (31), and a second connecting column (52) is provided between the first transmission disc (31) and the second transmission disc (32), so that the rotating disc (411), the first transmission disc (31), and the second transmission disc (32) can rotate synchronously.

3. The leg massager according to claim 2, wherein: The second massage component (42) includes a first massage member (421) located on one side of the rotating disc (411) for massaging the heel and a second massage member (422) located on the other side of the rotating disc (411) for massaging the sole of the foot. One of the first connecting column (51) and the second connecting column (52) is located on the side close to the first massage member (421), and the other of the first connecting column (51) and the second connecting column (52) is located on the side close to the second massage member (422).

4. The leg massager according to claim 3, characterized in that: A first sliding mechanism (6) is provided between the first massage member (421) and the first transmission disc (31), so that the first massage member (421) can approach or move away from the first massage component (41) relatively.

5. The leg massager according to claim 4, characterized in that: The device body (1) includes a first supporting base (11) for supporting the first massage member (421). The first sliding mechanism (6) includes a first hinge block (61) hinged to the first connecting column (51), a third connecting column (63) located on the first massage member (421) and connected to the first hinge block (61), a first sliding column (62) located on the first massage member (421), and a first sliding groove (64) located on the first supporting base (11) and slidably connected to the third connecting column (63) and the first sliding column (62) respectively.

6. The leg massager according to claim 4, wherein: A second sliding mechanism (7) is provided between the second massage member (422) and the second transmission disc (32), so that the second massage member (422) can approach or move away from the first massage component (41) relatively.

7. The leg massager according to claim 6, wherein: The device body (1) includes a second supporting base (12) for supporting the second massage member (422). The second sliding mechanism (7) includes a second hinge block (71) hinged to the second connecting column (52), a fourth connecting column (73) located on the second massage member (422) and connected to the second hinge block (71), a second sliding column (72) located on the second massage member (422), and a second sliding groove (74) that is slidably connected to the fourth connecting column (73) and the second sliding column (72) respectively and is located on the second supporting base (12).

8. The leg massager according to claim 6, characterized in that: The first massage assembly (41) includes several first massage heads (412) located on the rotating disc (411) and spaced apart in the circumferential direction of the rotating disc (411). The first massage member (421) includes a first mounting base (4211), and the second massage member (422) includes a second mounting base (4221). Several massage wheels (40) are provided on both the first mounting base (4211) and the second mounting base (4221) at intervals. The several massage wheels (40) are respectively hinged to the first mounting base (4211) and the second mounting base (4221).

9. The leg massager according to claim 1, wherein: The massage assembly (4) includes a third massage assembly (43) located on one side of the first massage assembly (41) and symmetrically arranged with the first massage assembly (41), and a fourth massage assembly (44) located on one side of the second massage assembly (42) and symmetrically arranged with the second massage assembly (42).

10. The leg massager according to claim 2, wherein: The drive assembly (2) includes a drive shaft (21) at the output end. The transmission assembly (3) includes a rotating chassis (33) connected to the drive shaft (21), and a transmission shaft (34) located on the rotating chassis (33) and connected to the second transmission disc (32).