Annular EMS back cushion
By designing a ring EMS cushion, combined with a C-shaped bracket and soft support, the waist can be shaken left and right on the massager and stimulated by EMS conductive sheets, solving the problem that the existing waist massager cannot assist in exercise and achieving a better massage effect.
Patent Information
- Application Number
- CN202422082675.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-08-27
AI Technical Summary
The existing waist massagers cannot assist in exercise through the waist massagers, resulting in the inability to effectively relieve muscle tension and spasms.
A ring-shaped EMS cushion is designed, including a C-shaped bracket and a soft support. The bracket and the soft support are combined to form a C-shaped massager body. An EMS conductive sheet is provided on the C-shaped concave side of the massager body. The waist of the human body can be shaken left and right on the massager. The EMS conductive sheet discharges and stimulates the waist.
It is achieved EMS stimulation while shaking left and right when leaning against the waist, achieving better massage effect and alleviating tension and spasm of the waist muscles.
Smart Images

Figure CN223208824U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of massagers, in particular to an annular EMS cushion. Background Art
[0002] For the elderly and office workers who sit for long periods of time, the waist is prone to muscle tension and muscle spasms. Existing waist massagers are fixed in shape, and generally the waist is kept in a certain posture and does not move. The waist massager is used to knead the waist to achieve a massage effect, but it cannot be used for auxiliary exercise.
[0003] EMS (Electrical Muscle Stimulation), commonly known as low-frequency massage, is a recently emerging massage technique that uses microcurrents to stimulate muscles. It primarily uses weak currents to stimulate muscles and lymphatics, contracting muscles and achieving a massage effect. Using EMS in a waist massager can enhance the stimulation of the waist, thereby improving the massage effect.
[0004] The utility model adheres to many years of industry design experience and improves the existing waist massager in order to achieve a more practical effect. Utility Model Content
[0005] The purpose of the utility model is to provide an annular EMS cushion, which solves the technical problem of being able to rock left and right when the waist leans on the massage body, and at the same time discharge the waist through the EMS conductive sheet to achieve a massage effect.
[0006] To achieve the above-mentioned purpose, the solution of the present invention is: an annular EMS cushion, including a bracket and a soft support member, the bracket is C-shaped, the soft support member is arranged outside the bracket, covering at least one side of the C-shaped concave surface of the bracket, so as to form a C-shaped massager body together with the bracket. The C-shape of the massager body is consistent with the C-shape of the bracket. The C-shaped concave side of the massager body is used to fit the human waist. An EMS conductive sheet is provided on the concave side of the massager body, and the EMS conductive sheet is used to discharge toward the human body.
[0007] Furthermore, the soft support member completely covers the outer periphery of the bracket.
[0008] Furthermore, the soft support member includes an upper support member and an upper reinforcement member, which are arranged in sequence on the C-shaped concave surface of the bracket. One side of the upper support member is attached to the C-shaped concave surface of the bracket, and the other side is attached to the upper reinforcement member. The hardness of the upper reinforcement member is greater than that of the upper support member.
[0009] Furthermore, the soft support member also includes a lower support member and a lower reinforcement member, which are arranged in sequence on the C-shaped convex surface of the bracket. One side of the lower support member is attached to the C-shaped convex surface of the bracket, and the other side is attached to the lower reinforcement member. The hardness of the lower reinforcement member is greater than that of the lower support member.
[0010] Furthermore, the soft support member also includes a shell, which is sleeved on the outer periphery of the upper support member, the upper reinforcement member, the lower support member and the lower reinforcement member, so that the soft support member and the bracket are combined to form the massager body.
[0011] Furthermore, the upper reinforcement is made of recycled sponge material, the shell is made of molded cotton material, and the upper support and lower support are both made of pearl cotton material.
[0012] Furthermore, the upper support member, the upper reinforcement member, the lower support member, the lower reinforcement member and the shell are all made of foam material, the shell hardness is 55D-60D, the upper reinforcement member hardness is 70D-80D, the upper support member hardness is 10-20D, the lower support member hardness is 10-20D, and the lower reinforcement member hardness is 25-35D;
[0013] Wherein, D represents the hardness unit of the foam material, and 1D represents 1 kilogram per cubic meter of foam material.
[0014] Furthermore, the soft support member also includes a cloth cover, which is put on the outside of the massager body, and the EMS conductive sheet is arranged on the cloth cover, and the cloth cover is made of wipeable leather material.
[0015] Furthermore, there are multiple EMS conductive sheets, and the multiple EMS conductive sheets are arranged at intervals along the extension direction of the C-shaped concave surface of the massager body.
[0016] Furthermore, it also includes PCB board, battery and hand controller;
[0017] The PCB board and the battery are arranged in the massager body, the PCB board is electrically connected to the EMS conductive sheet, the battery is used to store electrical energy, and the battery is connected to the PCB board to supply power to the PCB board;
[0018] The hand controller is connected to the PCB board through wires, and pressing the hand controller sends a communication signal to the PCB board.
[0019] After adopting the above scheme, the beneficial effect of the present invention is that: by setting the bracket into a C shape, the soft support member is arranged outside the bracket and covers at least one side of the C-shaped concave surface of the bracket, the bracket and the soft support member form a C-shaped massager body that combines soft and hard. When the human waist rests on the massager body, it contacts the soft support member, which is comfortable. When the convex surface of the C-shaped massager body contacts the support, it can be shaken left and right with the contact point as the fulcrum, so that the waist can also be shaken left and right accordingly. In addition, an EMS conductive sheet is provided on one side of the C-shaped concave surface of the massager body. When the waist leans on the massager body, the EMS conductive sheet contacts the human waist and discharges the waist to stimulate the waist, relax the waist, and achieve a massage effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a three-dimensional structural diagram of the annular EMS cushion of the present invention.
[0021] Figure 2 This is a schematic diagram of the vertical structure of the ring-shaped EMS cushion of the utility model.
[0022] Figure 3 It is a schematic diagram of the exploded structure of the annular EMS cushion of the present invention.
[0023] Figure 4 It is a schematic diagram of the exploded structure of the soft support member of the utility model.
[0024] Figure 5 This is a schematic diagram of the cross-sectional structure of the massager body of the utility model.
[0025] Figure 6 It is a three-dimensional structural diagram of the bracket of the present utility model.
[0026] Figure 7 It is a structural schematic diagram of the installation position of the EMS conductive sheet in the cloth cover of the utility model.
[0027] Figure 8 It is a structural schematic diagram of the shell of the utility model.
[0028] Description of labels:
[0029] 1- bracket, 2- soft support, 3- massager body, 4- EMS conductive sheet, 5- upper support, 6- upper reinforcement, 7- lower support, 8- lower reinforcement, 9- shell, 10- cloth cover, 11- PCB board, 12- battery, 13- hand controller, 14- box body, 15- mounting slot, 16- USB interface, 91- wire slot, 92- through hole. DETAILED DESCRIPTION
[0030] The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0031] In the claims, specification and the above-mentioned drawings of the present invention, unless otherwise expressly defined, directional words, such as the use of terms such as "center", "transverse", "longitudinal", "horizontal", "vertical", "top", "bottom", "inside", "outside", "up", "down", "front", "back", "left", "right", "clockwise", "counterclockwise" and the like to indicate directions or positional relationships are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction or be constructed and operated in a specific direction, so they cannot be understood as limiting the specific scope of protection of the present invention.
[0032] like Figures 1 to 8 As shown, the utility model provides an annular EMS cushion 100, comprising a bracket 1 and a soft support member 2, wherein the bracket 1 is C-shaped, and the soft support member 2 is arranged outside the bracket 1, covering at least one side of the C-shaped concave surface of the bracket 1, so as to form a C-shaped massager body 3 (such as Figure 2 As shown), the soft support member 2 can be made of any existing soft material suitable for contact with the human body, such as sponge material, or rubber material with a certain elasticity, or other soft materials, but not limited thereto. The bracket 1 shapes the soft support member 2 into a C-shaped structure, so that the massager body 3 formed by the bracket 1 and the soft support member 2 forms a C-shaped structure consistent with the bracket 1. One side of the C-shaped concave surface of the massager body 3 is used to fit the human waist. In this article, the C-shape is tilted at both ends, and the curvature of the C-shape is roughly consistent with the curvature of the waist. When the waist is loose, the massager body 3 is loose. The massager is placed in the C-shaped concave surface, which can embrace the waist. When the convex surface of the C-shape contacts the support, it can be shaken left and right with the contact point as the fulcrum. An EMS conductive sheet 4 is provided on one side of the concave surface of the massager body 3. The EMS conductive sheet 4 is used to discharge toward the human body. When in use, the human waist rests on the C-shaped concave surface of the massager body 3. The human body can be shaken left and right in a sitting position or a lying position. At the same time, the waist is discharged through the EMS conductive sheet 4, which stimulates the waist and relaxes the waist to achieve a massage effect.
[0033] In this specific embodiment, the bracket 1 is an arc-shaped iron plate with an integrally molded structure. In order to prevent the iron plate from being exposed and coming into contact with the human body, or from coming into direct contact with the support object (not shown in the figure) on which the EMS cushion 100 leans, which may cause wear to the support object due to long-term use, the soft support member 2 is completely covered around the outer periphery of the bracket 1. The support object can be a seat back, a bed, or any other support object for placing the EMS cushion 100.
[0034] Focus on combination Figure 2-4As shown, the soft support member 2 includes an upper support member 5 and an upper reinforcement member 6, which are sequentially arranged on the C-shaped concave surface of the bracket 1. One side of the upper support member 5 is fitted on the C-shaped concave surface of the bracket 1, and the other side is fitted with the upper reinforcement member 6. The upper reinforcement member 6 is harder than the upper support member 5. The upper reinforcement member 6 is harder and more suitable for fitting around the waist. The upper support member 5 is softer and can play a buffering role. The combination of soft and hard makes the human waist more comfortable when it rests against the soft support member 2.
[0035] Focus on combination Figure 3 and Figure 4 As shown, the soft support member 2 also includes a lower support member 7 and a lower reinforcement member 8, which are sequentially arranged on the C-shaped convex surface of the bracket 1. One side of the lower support member 7 is in contact with the C-shaped convex surface of the bracket 1, and the other side is in contact with the lower reinforcement member 8. The hardness of the lower reinforcement member 8 is greater than that of the lower support member 7. When the EMS cushion 100 leans on the support, the lower reinforcement member 8 contacts the support to prevent the support from directly contacting the bracket 1. At the same time, the lower support member 7 is relatively soft and has a buffering effect to further protect the support. In this specific embodiment, the focus is on combining Figure 6 As shown, the bracket 1 includes a bracket body 101 and support legs 102. The bracket body 101 is a sheet-like C-shaped structure. There are two support legs 102. The two support legs 102 are respectively formed on the convex surface of the bracket body 101, which can support the bracket body 101, improve the strength of the bracket 1, and maintain the shape of the bracket 1. A slot 71 for inserting the support legs 102 is formed on the lower support member 7, so that when the two support legs 102 are respectively inserted into the corresponding slots 71, the bracket 1 is connected to the lower support member 7 to avoid direct contact between the support legs 102 and the support object, thereby damaging the support object.
[0036] Focus on combination Figure 3 As shown, the soft support member 2 also includes a shell 9, which is sleeved on the outer periphery of the upper support member 5, the upper reinforcement member 6, the lower support member 7 and the lower reinforcement member 8, so that the soft support member 2 and the bracket 1 are combined to form the massager body 3; in this specific embodiment, the shell 9 includes a shell body 17 and a bottom plate 18, and a mounting port 171 is formed on the concave side of the shell body 17. The upper support member 5, the upper reinforcement member 6, the lower support member 7, the lower reinforcement member 8 and the bracket 1 are placed in the shell body 17 through the mounting port 171, and the bottom plate 18 is used to block the mounting port 171. Of course, the mounting port 171 can also be directly blocked by the lower reinforcement member 8. The present invention is not limited to this, and those skilled in the art can design it according to the specific situation.
[0037] In this specific embodiment, the upper reinforcement 6 has the highest hardness, followed by the shell 9, and the upper support 5 and lower support 7 have the lowest hardness. The soft support 2, through a layered structure of varying hardness, ensures the comfort of human contact with it. It has both moderate contact hardness and conforms to ergonomics, while also providing a cushioning effect, improving human comfort when rocking left and right. Preferably, the upper support 5, upper reinforcement 6, lower support 7, lower reinforcement 8, and shell 9 are all made of foam material, with the shell 9 having a hardness of 55D-60D, the upper reinforcement 6 having a hardness of 70D-80D, the upper support 5 having a hardness of 10-20D, the lower support 7 having a hardness of 10-20D, and the lower reinforcement 8 having a hardness of 25-35D.
[0038] Wherein, D represents the hardness unit of the foam material, and 1D represents 1 kilogram per cubic meter of foam material.
[0039] In this specific embodiment, the upper reinforcement member 6 is made of recycled cotton material, the shell 9 is made of molded sponge material, the upper support member 5 is made of pearl cotton material, and the lower support member 7 is made of pearl cotton material.
[0040] Due to the differences in human bodies, waist sizes are different. In order to be suitable for use by a variety of people, there are multiple EMS conductive sheets 4, and multiple EMS conductive sheets 4 are arranged at intervals along the extension direction of the C-shaped concave surface of the massager body 3 to ensure that EMS conductive sheets 4 are provided at different positions of the C-shaped concave surface of the massager body 3. In addition, when the waist rests on the EMS cushion 100, when the waist is wider, it may not always maintain contact with the middle of the C-shaped concave surface of the massager body 3. When the waist is narrower, it may not always maintain contact with both sides of the massager body 3. In order to ensure that waists of different sizes can contact with the EMS conductive sheets 4, the EMS conductive sheets 4 are set to different shapes and sizes. The EMS conductive sheet 4 located in the middle of the C-shaped concave surface is smaller, and the EMS conductive sheets 4 located on both sides of the C-shaped concave surface are larger, so as to ensure that waists of different sizes can contact with the EMS conductive sheets 4.
[0041] Focus on combination Figures 1 to 3As shown, it also includes a PCB board 11, a battery 12 and a hand controller 13; the PCB board 11 and the battery 12 are arranged in the massager body 3, the PCB board 11 is electrically connected to the EMS conductive sheet 4, the battery 12 is used to store electrical energy, and the battery 12 is connected to the PCB board 11 for powering the PCB board 11; specifically, the battery 12 is a lithium battery, which is connected to a USB interface 16. The USB interface 16 extends out of the massager body 3 and can be connected to an external power source to charge the battery 12 through the USB interface 16; the hand controller 13 is connected to the PCB board 11 through a wire, and pressing the hand controller 13 sends a communication signal to the PCB board 11. Specifically, it also includes a box body 14, the PCB board 11 and the battery 12 are installed in the box body 14, and an installation groove 15 is formed on the upper support member 5 and the upper reinforcement member 6. The box body 14 is placed in the installation groove 15, one side of the box body 14 abuts on the bracket 1, and the other side abuts on the shell 9, so that the box body 14 is limited in the massager body 3. In addition, combined with Figure 8 As shown, a through hole 92 is formed on the side wall of the housing 9 for the USB interface 16 and the wires on the hand controller 13 to pass through.
[0042] In this specific embodiment, the soft support member 2 further includes a cloth cover 10, which is sleeved on the massager body 3. Figure 7 As shown, the EMS conductive sheet 4 is arranged on the cloth cover 10, which has a better contact effect with the human waist. The EMS conductive sheet 4 is specifically arranged on the inner side of the cloth cover 10, and contacts the human waist through the cloth cover 10, and then focuses on Figure 8 As shown, a wire groove 91 is formed on the surface of the shell 9 facing the cloth cover 10. When the cloth cover 10 is put on the shell 9, one end of the wire (not shown in the figure) on the wire groove 91 is electrically contacted with the EMS conductive sheet 4, and the other end of the wire is connected to the PCB board 11, so that the PCB board 11 and the EMS conductive sheet 4 are electrically connected.
[0043] The above description is only a preferred embodiment of the present invention and is not intended to limit the design of this case. Any equivalent changes made based on the key design of this case shall fall within the scope of protection of this case.
Claims
1. A ring-shaped EMS cushion, characterized by: The massager comprises a bracket (1) and a soft support member (2), wherein the bracket (1) is C-shaped, and the soft support member (2) is arranged outside the bracket (1) and covers at least one side of the C-shaped concave surface of the bracket (1), so as to form a C-shaped massager body (3) together with the bracket (1), wherein the C-shaped concave surface of the massager body (3) is used to fit the waist of a human body, and an EMS conductive sheet (4) is provided on the concave surface of the massager body (3), and the EMS conductive sheet (4) is used to discharge toward the human body.
2. The annular EMS cushion according to claim 1, characterized in that: The soft support member (2) completely covers the outer periphery of the bracket (1).
3. The annular EMS cushion according to claim 1, characterized in that: The soft support member (2) comprises an upper support member (5) and an upper reinforcement member (6), the upper support member (5) and the upper reinforcement member (6) being arranged in sequence on the C-shaped concave surface of the bracket (1), one side of the upper support member (5) being in contact with the C-shaped concave surface of the bracket (1), and the other side being in contact with the upper reinforcement member (6), and the upper reinforcement member (6) having a harder hardness than the upper support member (5).
4. The annular EMS cushion according to claim 3, characterized in that: The soft support member (2) further comprises a lower support member (7) and a lower reinforcement member (8), the lower support member (7) and the lower reinforcement member (8) being arranged in sequence on the C-shaped convex surface of the bracket (1), one side of the lower support member (7) being in contact with the C-shaped convex surface of the bracket (1), and the other side being in contact with the lower reinforcement member (8), and the lower reinforcement member (8) having a harder hardness than the lower support member (7).
5. The annular EMS cushion according to claim 4, characterized in that: The soft support member (2) further comprises a shell (9), which is sleeved on the outer periphery of the upper support member (5), the upper reinforcement member (6), the lower support member (7) and the lower reinforcement member (8), so that the soft support member (2) and the bracket (1) are combined to form a massager body (3).
6. The annular EMS cushion according to claim 5, characterized in that: The upper reinforcement member (6) is made of recycled cotton material, the shell (9) is made of molded sponge material, and the upper support member (5) and the lower support member (7) are both made of pearl cotton material.
7. The annular EMS cushion according to claim 5, characterized in that: The upper support member (5), the upper reinforcement member (6), the lower support member (7), the lower reinforcement member (8) and the shell (9) are all made of foam materials. The hardness of the shell (9) is 55D-60D, the hardness of the upper reinforcement member (6) is 70D-80D, the hardness of the upper support member (5) is 10-20D, the hardness of the lower support member (7) is 10-20D, and the hardness of the lower reinforcement member (8) is 25-35D. Wherein, D represents the hardness unit of the foam material, and 1D represents that the weight of the foam material per cubic meter is 1 kilogram.
8. The annular EMS cushion according to claim 1, characterized in that: The soft support member (2) further comprises a cloth cover (10), which is sleeved on the outside of the massager body (3), and the EMS conductive sheet (4) is arranged on the cloth cover (10), and the cloth cover is made of a wipeable leather material.
9. The annular EMS cushion according to claim 1, characterized in that: There are multiple EMS conductive sheets (4), and the multiple EMS conductive sheets (4) are arranged at intervals along the extension direction of the C-shaped concave surface of the massager body (3).
10. The annular EMS cushion according to claim 1, characterized in that: It also includes a PCB board (11), a battery (12) and a hand controller (13); The PCB board (11) and the battery (12) are arranged in the massager body (3); the PCB board (11) is electrically connected to the EMS conductive sheet (4); the battery (12) is used to store electrical energy; and the battery (12) is connected to the PCB board (11) to supply power to the PCB board (11); The hand controller (13) is connected to the PCB board (11) via an electric wire, and pressing the hand controller (13) sends a communication signal to the PCB board (11).