Pyretic moxibustion binding belt and pyretic moxibustion waistband

By designing a removable main control thermal moxibustion box and double-sided adhesive patch, the problem of single and insufficient flexibility of the existing thermal moxibustion belt is solved, and the flexible use of the thermal moxibustion device on the waist and other parts is realized, and the massage function is provided.

CN223068803UActive Publication Date: 2025-07-08FOSHAN SHUIBAODUN TECH CO LTD
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Patent Information

Application Number
CN202421617406.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-07-08
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

The existing massage belt with thermal moxibustion box has a single use posture, making it difficult to flexibly adjust the position and angle of the thermal moxibustion box, and cannot meet the needs of different users for different acupoints.

Method used

A thermal moxibustion belt and thermal moxibustion belt are designed. The main control thermal moxibustion box can be detached. It can be installed on the binding belt body to form the first working mode, and can also be individually pasted at any position on the body to form the second working mode. Combined with a detachable double-sided adhesive paste, it can be flexible to use.

Benefits of technology

The flexibility and applicability of the thermal moxibustion device are realized, and the thermal moxibustion can be performed on the waist and other body parts to meet the needs of different users and provide muscle massage effects through the massage device.

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Abstract

The thermal moxibustion binding belt comprises a belt main body, a main control thermal moxibustion box and a thermal moxibustion patch, the main control thermal moxibustion box is provided with a thermal moxibustion surface, the belt main body is provided with a mounting seat, the middle part of the mounting seat is provided with a through mounting cavity, the main control thermal moxibustion box is detachably mounted on the mounting seat, and the main control thermal moxibustion box is detachably mounted on the mounting seat. The main control pyretic moxibustion box is mounted on the waistband main body to form a first working mode, the pyretic moxibustion surface exceeds or is at least flush with the bottom surface of the mounting seat, and under the first working mode, the pyretic moxibustion surface is worn on the waist along with the waistband main body to perform pyretic moxibustion on the waist; the main control pyretic moxibustion box is detached from the waistband body to be independently used to form a second working mode, the double faces of the pyretic moxibustion patch are both sticky, and in the second working mode, one side of the pyretic moxibustion patch is pasted on the pyretic moxibustion face, and the other side of the pyretic moxibustion patch is pasted on the skin for pyretic moxibustion. The pyretic moxibustion device can be detached from the pyretic moxibustion waistband and can perform pyretic moxibustion on any position of the body.
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Description

Technical Field

[0001] The utility model relates to the field of massage belts, in particular to a heat moxibustion binding belt and a heat moxibustion belt. Background Art

[0002] In the current market, in order to meet the needs of consumers, heat moxibustion products integrating modern technology have emerged, such as massage belts with heat moxibustion boxes. Such products usually design adjustable belts, and users can fix the heat moxibustion boxes on the belts and perform heat moxibustion treatment on the waist by wearing the belts, realizing the convenience and daily use of heat moxibustion. However, although this design improves the convenience of heat moxibustion to a certain extent, there are still many limitations and deficiencies:

[0003] 1. Single use posture: The existing massage belts with heat moxibustion boxes are mainly designed around the waist. When using, users mostly need to maintain a sitting or standing posture, and the waist is the only or main heat moxibustion part, which limits the application range of heat moxibustion therapy. For users who hope to perform heat moxibustion on other body parts such as the back, shoulders, legs, etc., the practicality of such products is greatly reduced.

[0004] 2. Lack of flexibility: The effectiveness of heat moxibustion therapy often depends on whether it can accurately act on the target acupoints. However, the existing heat moxibustion systems of massage belts often lack sufficient flexibility to adjust the position and angle of the heat moxibustion boxes, making it difficult to meet the needs of different users for different acupoints.

[0005] Therefore, it is necessary to develop a more flexible and easy-to-use heat moxibustion device. Summary of the Utility Model

[0006] The purpose of the utility model is to solve the above technical problems and provide a heat moxibustion binding belt and a heat moxibustion belt. The heat moxibustion device of the present application can be detached from the heat moxibustion belt and perform heat moxibustion on any position of the body.

[0007] A heat moxibustion binding belt includes a binding belt body and a main control heat moxibustion box. A heat moxibustion surface is provided on the main control heat moxibustion box. The heat moxibustion binding belt has a first working mode and a second working mode. In the first working mode, the heat moxibustion box is detachably installed on the binding belt body, and the heat moxibustion surface performs heat moxibustion as the binding belt body binds and adheres to the acting surface. In the second working mode, the heat moxibustion box is detached from the binding belt body, and a double-sided adhesive body is pasted on the heat moxibustion surface and used by adhesion through the adhesive body.

[0008] According to the heat moxibustion binding band of the present application, the main control heat moxibustion box is set to be detachable, so that the main control heat moxibustion box can be installed on the binding band body and used in cooperation with the binding band body to form a first working mode. After the main control heat moxibustion box is disassembled, a sticker with double-sided adhesiveness is pasted on the heat moxibustion surface, and then the main control heat moxibustion box can be separately pasted on the part of the body where the binding band body is not convenient to be bound for heat moxibustion, forming a second working mode, making the use of the heat moxibustion binding band more flexible.

[0009] A heat moxibustion belt includes a belt main body, a main control heat moxibustion box and a heat moxibustion sticker. The main control heat moxibustion box is provided with a heat moxibustion surface. The belt main body is provided with a mounting seat. The middle part of the mounting seat is provided with a through mounting cavity. The main control heat moxibustion box is detachably installed on the mounting seat. When the main control heat moxibustion box is installed on the belt main body, it forms a first working mode. The heat moxibustion surface extends beyond or is at least flush with the bottom surface of the mounting seat. In the first working mode, the heat moxibustion surface performs heat moxibustion on the waist as the belt main body is worn on the waist. When the main control heat moxibustion box is disassembled from the belt main body and used alone, it forms a second working mode. Both sides of the heat moxibustion sticker have adhesiveness. In the second working mode, one side of the heat moxibustion sticker is pasted on the heat moxibustion surface, and the other side is pasted on the skin for heat moxibustion.

[0010] According to the heat moxibustion belt of the present application, the main control heat moxibustion box is set to be detachable, so that the main control heat moxibustion box can be installed on the belt main body of the heat moxibustion belt and used in cooperation with the belt main body to form a first working mode. After the main control heat moxibustion box is disassembled, a sticker with double-sided adhesiveness is pasted on the heat moxibustion surface, and then the main control heat moxibustion box can be separately pasted on any part of the body for heat moxibustion, forming a second working mode, making the use of the heat moxibustion belt more flexible.

[0011] Further, a massage device is also provided on the belt main body, and the main control heat moxibustion box supplies power to the massage device. In the first working mode, heat moxibustion and massage can be carried out simultaneously.

[0012] Still further, the main control heat moxibustion box includes a power source and electrode needles. The mounting seat is provided with electrode contacts, and the electrode contacts are in contact with the electrode needles. The power source is electrically connected to the massage device through the electrode needles and the electrode contacts. By supplying power to the massage device on the belt main body through the main control heat moxibustion box, the belt main body of the heat moxibustion belt does not need to be provided with an additional power source, making the circuit structure of the heat moxibustion belt simpler.

[0013] Furthermore, the main control moxibustion box includes a housing, a heating base, and a heating device. One side of the heating base is connected to the housing to form a first installation cavity. The moxibustion surface is a rear cover, and the moxibustion surface is connected to the other side of the heating base to form a second installation cavity. The heating device is fixed in the second installation cavity. The heating base heats the moxibustion surface, thereby achieving the effect of moxibustion. The heating base separates the heating device from the first installation cavity, avoiding the heat of the heating device from affecting the parts in the first installation cavity.

[0014] Furthermore, the main control moxibustion box further includes a battery and a main control circuit board. The battery and the main control circuit board are fixed in the first installation cavity and are electrically connected to the heating device through the heating base. The main control circuit board is used to control the operation of the main control moxibustion box, and the battery supplies power to the heating device.

[0015] Furthermore, a rotation limiting groove is provided on the inner side wall of the mounting seat, and a limiting slider is provided on the outer side wall of the main control moxibustion box. Rotating the main control moxibustion box makes the limiting slider slide into the rotation limiting groove to lock the main control moxibustion box, and rotating in the reverse direction makes the limiting slider slide out of the rotation limiting groove to unlock the main control moxibustion box.

[0016] Furthermore, the size of the rotation limiting groove gradually decreases from the entrance to the depth. The limiting slider is arranged in accordance with the shape of the rotation limiting groove. A positioning notch is provided on one side of the entrance of the rotation limiting groove, and a positioning block is provided on the limiting slider to cooperate with the positioning notch for positioning. The large size of the entrance of the rotation limiting groove facilitates the sliding of the limiting slider into the rotation limiting groove and also facilitates the sliding of the positioning block into the positioning notch.

[0017] Furthermore, the massage device is an electrode sheet. A microcurrent can be output through the electrode sheet, and the muscles of the waist are slightly stimulated by the microcurrent to achieve the effect of muscle massage.

[0018] Furthermore, a plurality of convex points are provided on the moxibustion surface, and there are gaps between adjacent convex points; the size of the convex points on the periphery of the moxibustion surface is larger than the size of the convex points inside the moxibustion surface. The setting of the convex points can reduce the contact area with the skin when the position of the main control moxibustion box slides, thereby reducing the probability of user injury. The convex points can also increase the heat exchange area, thereby increasing the heat exchange efficiency. The gaps can increase the ventilation performance, and the arrangement of the convex points can distribute the heating heat more evenly, avoiding the problem of local overheating. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is an exploded view of the moxibustion belt of the present utility model in the first working mode.

[0020] Figure 2 is an exploded view of the moxibustion belt of the present utility model in the second working mode.

[0021] Figure 3 This is an exploded view of the disassembly structure of the main control heat moxibustion box of the present utility model.

[0022] Figure 4 This is a three-dimensional view of the heat moxibustion belt of the present utility model.

[0023] Figure 5 This is an exploded view of the main control heat moxibustion box of the present utility model. Detailed implementation manners

[0024] A heat moxibustion binding belt and a heat moxibustion belt of the present utility model are described in conjunction with the accompanying drawings.

[0025] As Figures 1 to 5 shown, in this embodiment, the heat moxibustion binding belt is a heat moxibustion belt. The binding belt body is the belt main body 1. The heat moxibustion belt further includes a main control heat moxibustion box 2 and a heat moxibustion patch 3. A heat moxibustion surface 21 is provided on the main control heat moxibustion box 2. An installation seat 11 and a massage device 12 are provided on the belt main body 1. The middle part of the installation seat 11 is provided with a through installation cavity. The main control heat moxibustion box 2 is detachably installed on the installation seat 11. When the main control heat moxibustion box 2 is installed on the belt main body 1, a first working mode is formed. The heat moxibustion surface 21 extends beyond or is at least flush with the bottom surface of the installation seat 11, so as to ensure that when the heat moxibustion belt is bound to the waist, the heat moxibustion surface 21 can act on the skin of the waist. In the first working mode, the heat moxibustion belt is bound to the user's waist, so that the main control heat moxibustion box 2 can be attached to the skin of the waist, and the massage device 12 can also be opposite to the muscle position of the waist. The main control heat moxibustion box 2 powers the massage device 12, so that the massage device 12 can massage the muscles. Therefore, in the first working mode, the user's waist can be massaged and heat moxibusted simultaneously. When the main control heat moxibustion box 2 is detached from the belt main body 1 and used alone, a second working mode is formed. Both sides of the heat moxibustion patch 3 have adhesiveness. In the second working mode, one side of the heat moxibustion patch 3 is pasted on the heat moxibustion surface 21, and the other side is pasted on the skin for heat moxibustion. In the second working mode, the heat moxibustion patch 3 with double-sided sticker property is utilized, so that the main control heat moxibustion box 2 can be attached to any position of the body, and thus the main control heat moxibustion box 2 can perform heat moxibustion on any position of the body. The two different working modes can make the use of the heat moxibustion belt more flexible.

[0026] As Figures 1 to 5As shown, the main control heat moxibustion box 2 includes a power source and electrode needles 22. The power source can be a battery 23 provided inside the main control heat moxibustion box 2 or a power source externally connected through a power cord. An electrode contact 111 is provided on the mounting base 11. After the main control heat moxibustion box 2 is installed on the mounting base 11, the electrode contact 111 can abut against the electrode needles 22. The power source is electrically connected to the massage device 12 on the belt main body 1 through the electrode needles 22 and the electrode contacts 111, thereby achieving the effect of powering the massage device 12 on the belt main body 1 through the main control heat moxibustion box 2. The massage device 12 of the belt main body 1 does not need to be separately connected to a power source, making the structure of the belt main body 1 simpler.

[0027] As Figure 3 shown, a rotation limiting groove 112 is provided on the inner side wall of the mounting base 11. There are four rotation limiting grooves 112, which are arranged at intervals. A limiting slider 251 is provided on the outer side wall of the main control heat moxibustion box 2. There are also four limiting sliders 251, which are arranged at intervals. When the rotation limiting groove 112 and the limiting slider 251 are misaligned with each other, the main control heat moxibustion box 2 can be installed into the mounting base 11. Then, by rotating the main control heat moxibustion box 2, the limiting slider 251 slides into the rotation limiting groove 112 to lock the main control heat moxibustion box 2, and reverse rotation causes the limiting slider 251 to slide out of the rotation limiting groove 112 to unlock the main control heat moxibustion box 2.

[0028] As Figure 3 shown, the structure of some of the rotation limiting grooves 112 and the limiting sliders 251 is improved, and a positioning structure is added to prevent the limiting slider 251 from disengaging from the rotation limiting groove 112. The size of the rotation limiting groove 112 gradually decreases from the entrance to the depth. The limiting slider 251 is arranged to match the shape of the rotation limiting groove 112. A positioning notch 113 is provided on one side of the entrance of the rotation limiting groove 112. A positioning block 252 is provided on the limiting slider 251 to cooperate with the positioning notch 113 for positioning. The shape of the rotation limiting groove 112 is arranged so that the positioning block 252 can smoothly slide into the positioning notch 113 of the rotation limiting groove 112 without being blocked by the outer wall of the rotation limiting groove 112.

[0029] To facilitate the installation and alignment of the electrode needles 22 and the electrode contacts 111, it is preferred to arrange the electrode needles 22 and the electrode contacts 111 on the rotation installation structure of the mounting base 11 and the main control heat moxibustion box 2, as Figure 3 and Figure 5As shown in the figure, a limiting post 253 is provided on one side of the limiting slider 251. The limiting post 253 is engaged with the rotation limiting groove 112 for limiting. When the positioning block 252 slides into the positioning notch 113, the limiting post 253 can abut against the outer wall on one side of the rotation limiting groove 112 for limiting. The limiting post 253 is also the mounting post of the electrode needle 22. The limiting post 253 can be used for limiting and can also mount the electrode needle 22, so that after the main control heat moxibustion box 2 is installed in place on the mounting seat 11, the electrode needle 22 and the electrode contact 111 can be accurately aligned, thus maintaining the electrical connection structure.

[0030] As Figure 3 shown in the figure, an electrode groove 114 for installing the electrode contact 111 is provided on the mounting seat 11. The electrode contact 111 is fixed in the electrode groove 114 by fixing means such as screws. One side of the electrode contact 111 is connected to the electrode needle 22, and the other side of the electrode contact 111 is connected to the massage device 12, so as to stably supply power to the massage device 12. As Figure 4 shown in the figure, the massage device 12 of the present application is an electrode sheet, and a microcurrent is output through the electrode sheet, so as to achieve a slight stimulation effect on the lumbar muscle group and achieve the effect of soothing and massaging the muscles.

[0031] As Figure 5 shown in the figure of the specific structure of the main control heat moxibustion box 2, the main control heat moxibustion box 2 includes a housing 24, a heating seat 25 and a heating device 26. One side of the heating seat 25 is connected to the housing 24 to form a first installation cavity. The heat moxibustion surface 21 is the rear cover, and the heat moxibustion surface 21 is connected to the other side of the heating seat 25 to form a second installation cavity. The heating device 26 is fixed in the second installation cavity. The main control heat moxibustion box 2 also includes a battery 23 and a main control circuit board 27. The battery 23 and the main control circuit board 27 are fixed in the first installation cavity and are electrically connected to the heating device 26 through the heating seat 25; the heat moxibustion surface 21 is heated through the heating seat 25, so as to achieve the effect of heat moxibustion. The heating device 26 and the first installation cavity are separated by the heating seat 25 to prevent the heat of the heating device 26 from affecting the parts in the first installation cavity. As Figure 5 shown in the figure, the battery 23 and the main control circuit board 27 are installed in the first installation cavity. Through the blockage of the heating seat 25, excessive heat can be prevented from being transferred from the second installation cavity to the first installation cavity, so that the battery 23 and the main control circuit board 27 can maintain a normal working state and extend their service life.

[0032] As Figure 5 shown in the figure, both the limiting slider 251 and the limiting post 253 are provided on the side surface of the heating seat 25.

[0033] The hot moxibustion surface 21 is provided with a plurality of bumps 211, and there are gaps between adjacent bumps 211; the size of the bumps 211 on the periphery of the hot moxibustion surface 21 is larger than that of the bumps 211 inside the hot moxibustion surface 21. The arrangement of the bumps 211 can reduce the contact area with the skin when the main control hot moxibustion box 2 slides, thereby reducing the probability of user injury. The bumps 211 can also increase the heat exchange area, thereby increasing the heat exchange efficiency. The gaps can increase the ventilation performance, and the arrangement of the bumps 211 can distribute the heating heat more evenly, avoiding the problem of local overheating.

[0034] Based on the disclosure and teachings of the above specification, those skilled in the art to which the present invention pertains can also make changes and modifications to the above embodiments. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should also fall within the protection scope of the claims of the present invention. In addition, although some specific terms are used in this specification, these terms are only for convenience of description and do not constitute any limitation to the present invention.

Claims

1. A heat moxibustion binding band, characterized in that, It includes a binding strap body and a main control moxibustion box. The main control moxibustion box is provided with a moxibustion surface. The moxibustion binding strap has a first working mode and a second working mode. In the first working mode, the moxibustion box is detachably installed on the binding strap body, and the moxibustion surface performs moxibustion as the binding strap body is bound and pressed against the acting surface. In the second working mode, the moxibustion box is detached from the binding strap body, and a double-sided adhesive body is pasted on the moxibustion surface and used by adhesion through the adhesive body.

2. A heat moxibustion belt, characterized in that, It includes a waistband main body, a main control moxibustion box and a moxibustion patch. The main control moxibustion box is provided with a moxibustion surface. The waistband main body is provided with a mounting seat. The middle part of the mounting seat is a through-mounted cavity. The main control moxibustion box is detachably installed on the mounting seat. When the main control moxibustion box is installed on the waistband main body, it forms a first working mode. The moxibustion surface extends beyond or is at least flush with the bottom surface of the mounting seat. In the first working mode, the moxibustion surface performs moxibustion on the waist when the waistband main body is worn around the waist; when the main control moxibustion box is detached from the waistband main body and used alone, it forms a second working mode. Both sides of the moxibustion patch are adhesive. In the second working mode, one side of the moxibustion patch is pasted on the moxibustion surface, and the other side is pasted on the skin for moxibustion.

3. The heat moxibustion belt according to claim 2, wherein, The waistband main body is also provided with a massage device, and the main control moxibustion box powers the massage device.

4. The heat moxibustion belt according to claim 3, characterized in that, The main control moxibustion box includes a power source and electrode needles. The mounting seat is provided with electrode contacts, and the electrode contacts are in contact with the electrode needles. The power source is electrically connected to the massage device through the electrode needles and the electrode contacts.

5. The heat moxibustion belt according to claim 2, wherein The main control moxibustion box includes a housing, a heating base and a heating device. One side of the heating base is connected to the housing to form a first installation cavity. The moxibustion surface is a rear cover, and the moxibustion surface is connected to the other side of the heating base to form a second installation cavity. The heating device is fixed in the second installation cavity.

6. The heat moxibustion belt according to claim 5, wherein, The main control moxibustion box also includes a battery and a main control circuit board. The battery and the main control circuit board are fixed in the first installation cavity and are electrically connected to the heating device through the heating base.

7. The heat moxibustion belt according to claim 2, wherein The inner side wall of the mounting seat is provided with a rotation limit groove, and the outer side wall of the main control moxibustion box is provided with a limit slider. Rotating the main control moxibustion box makes the limit slider slide into the rotation limit groove to lock the main control moxibustion box, and rotating in the reverse direction makes the limit slider slide out of the rotation limit groove to unlock the main control moxibustion box.

8. The heat moxibustion belt according to claim 7, wherein, The dimension of the rotation limit groove gradually becomes smaller from the entrance to the deep part. The limit slider is arranged to match the shape of the rotation limit groove. A positioning notch is provided on one side of the entrance of the rotation limit groove, and a positioning block is provided on the limit slider to cooperate with the positioning notch for positioning.

9. The heat moxibustion belt according to claim 3, wherein, The massage device is an electrode patch.

10. The heat moxibustion belt according to claim 2, characterized in that, The moxibustion surface is provided with a plurality of convex points, and there are gaps between adjacent convex points; the size of the convex points on the periphery of the moxibustion surface is larger than the size of the convex points inside the moxibustion surface.