Massage vibration type belt
By designing a lightweight two-layer soft shell structure and staggered functional components, the problem of large size and heavy weight of existing massage belts has been solved, realizing a lightweight and miniaturized massage belt suitable for daily wear, simplifying production and ensuring functional stability and portability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- BEIJING ZHONGPUJISHI TRADITIONAL CHINESE MEDICINE TECH DEV CO LTD
- Filing Date
- 2024-10-29
- Publication Date
- 2026-05-01
AI Technical Summary
Existing massage vibration waist belt designs often neglect the user's wearing experience, are bulky, heavy, and complex in structure, making them difficult to integrate into daily life. Furthermore, their multiple functions lead to high costs and high failure rates, limiting the development of lightweight and miniaturized products.
A massage vibration belt was designed, which adopts a two-layer soft shell structure. Vibration units and auxiliary components are embedded between the inner and outer belt surfaces and stitched together to form a whole, simplifying the production process and ensuring lightness and stability. The functional components are arranged in an alternating manner to provide uniform massage. Flexible connecting lines and fixing films are used to fix the device, and the belt has a stylish and portable appearance.
It provides a massage function during daily wear, simplifies the production process, reduces processing difficulty, ensures structural stability and lightweight, is suitable for long-term wear, functions normally, and does not affect the user's activities.
Smart Images

Figure CN121942999A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of belt technology, and more particularly to a massage vibration belt. Background Technology
[0002] In work environments where people sit for long periods of time, the lower back becomes one of the areas most prone to accumulating fatigue and stress. To alleviate this problem, various types of massage products have emerged on the market, among which massage vibration belts have received widespread attention due to their portability and targeted nature.
[0003] Traditional massage belts are mostly used in professional physiotherapy or home healthcare settings. Their main function is to promote blood circulation and relieve muscle tension and pain through vibrations at specific frequencies. However, the design of these products often focuses on the massage effect while neglecting the user's actual wearing experience. For example, they are usually bulky, heavy, and lack a stylish appearance, making them difficult to integrate into daily life, especially unsuitable as everyday waist belts. Furthermore, existing massage belts often integrate multiple functions, such as heat therapy and electrical stimulation, to achieve a more comprehensive massage effect. While these functions enhance the massage effect, they also increase the complexity of the product structure, raising manufacturing costs, increasing the product's failure rate, and limiting the development of lightweight and miniaturized products. Summary of the Invention
[0004] To address the aforementioned technical problems, the present invention provides a massage vibration belt. To provide a basic understanding of some aspects of the disclosed embodiments, a brief summary is given below. This summary is not intended as a general description, nor is it intended to identify key / important components or describe the scope of protection of these embodiments. Its sole purpose is to present some concepts in a simple form as a prelude to the detailed description that follows.
[0005] The present invention adopts the following technical solution: A massage vibration belt is provided, comprising: a belt body and a buckle, wherein the belt body includes: an outer belt surface, an inner belt surface, and a massager disposed between the outer belt surface and the inner belt surface; The massager includes two soft shells and two sets of functional components disposed on the two soft shells. The functional components include an on / off controller, a vibration unit, and auxiliary components. The vibration unit and the auxiliary components are arranged alternately and are both connected to the on / off controller. An elongated hole is formed on the soft shell that is in contact with the inner side of the belt at the position corresponding to the vibration unit. A fixing film is disposed at the opening of the elongated hole and covers the outside of the vibration unit. A through hole is formed on the soft shell that is in contact with the inner side of the belt at the position corresponding to the auxiliary component, and the auxiliary component extends out of the through hole.
[0006] Furthermore, the vibration unit includes: a vibration motor and a wire harness pressing plate; there are two wire harness pressing plates, which are located on both sides of the vibration motor and disposed between the two layers of soft shell sheets; wire grooves are formed on the wire harness pressing plate; the vibration motor is located in the elongated hole and is covered by the fixing film.
[0007] Furthermore, the auxiliary element includes: a hemispherical protrusion, a circular base plate, and a heating element; the hemispherical protrusion is disposed on the circular base plate and surrounds the circular base plate to form a cavity, the heating element is disposed in the cavity and fits against the inner top wall of the hemispherical protrusion; the edge of the circular base plate is disposed between the two layers of the soft shell.
[0008] Furthermore, the auxiliary element also includes: an electrode; a mounting groove is formed on the top of the hemispherical protrusion, and the electrode is disposed in the mounting groove.
[0009] Furthermore, the opening and closing controller includes: a housing, a button, a charging connector, and a power supply; mounting pieces are provided around the housing, the mounting pieces are disposed between the two layers of the soft shell, the charging connector is disposed on the housing, and the button and the power supply are disposed inside the housing; a square hole is formed on the soft shell that is in contact with the outer surface of the housing at the position corresponding to the opening and closing controller, and the opening and closing controller extends out from the square hole.
[0010] Furthermore, the inner side surface has a circular through groove at the position corresponding to the auxiliary element, and the hemispherical protrusion extends out of the circular through groove after passing through the through hole; the outer side surface has a square hollow groove at the position corresponding to the opening and closing controller, and the housing extends out of the square hollow groove after passing through the square hole.
[0011] Furthermore, a plurality of embedding grooves are formed on the soft shell sheet that is in contact with the inner side surface, and the embedding grooves are arranged around the functional component. A locking protrusion is provided on the soft shell sheet that is in contact with the outer side surface at the position corresponding to the embedding groove, and the locking protrusion is adapted to the embedding groove.
[0012] Furthermore, a wire harness guide groove is formed on the soft shell sheet that is in contact with the outer side surface. The connecting wire led out from the opening and closing controller is laid in the wire harness guide groove and connected to the vibration motor, the heating element and the electrode.
[0013] Furthermore, a stitching groove is formed on the soft shell sheet.
[0014] Furthermore, the inner side of the belt has ventilation holes arranged in a matrix.
[0015] The beneficial effects of this invention are as follows: 1. Users can use the massager to massage while wearing the belt daily, helping to promote blood circulation and relieve muscle tension and pain, without the need for extra time or equipment; 2. The structural design of the massager allows for pre-assembly, followed by sewing the assembled massager between the belt surfaces, which simplifies the production process, reduces processing difficulty, and improves processing efficiency. 3. The structural design places greater emphasis on the compactness and lightness of the belt, so that it will not burden the user and is suitable for long-term wear. While ensuring a small size, it also ensures the stability of the belt structure, so that it can maintain normal function even during activities. Due to its lightweight and stable characteristics, this application is very suitable as a belt for daily wear. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the external structure of a massage vibration belt according to the present invention; Figure 2 This is a schematic diagram of the arrangement of the massager of the present invention; Figure 3 This is a schematic diagram of the inner soft shell sheet of the present invention; Figure 4 This is a schematic diagram of the outer soft shell sheet of the present invention; Figure 5 This is a schematic diagram of the electrical connection between the two sets of functional components of the present invention; Figure 6 This is a schematic diagram of the opening and closing controller of the present invention; Figure 7 This is a schematic diagram of the structure of the auxiliary element of the present invention; Figure 8 This is a schematic diagram of the structure of the vibration unit of the present invention. Detailed Implementation
[0018] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings. It should be understood that the described embodiments are merely some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0019] like Figure 1-8As shown, in some illustrative embodiments, a massage vibration belt is provided, including: a belt body 1 and a buckle 2.
[0020] The belt body 1 is fixed around the user's waist, with a width of approximately 3-5 cm and a length ranging from 100-150 cm. The buckle 2 is located at one end of the belt body 1, and the other end of the belt body 1 is the belt tail. The buckle 2 is made of stainless steel or aluminum alloy and is designed as a buckle structure, that is, a loop 201 is set on the inside of the buckle 2, and the belt tail passes through the loop 201. It is worn by engaging the locking protrusion 202 on the buckle 2 with the adjustment hole 101 opened on the belt body 1.
[0021] The belt body 1 includes: an outer belt surface 102, an inner belt surface 103, and a massager, which is a functional structure embedded in the belt body 1 for providing vibration massage.
[0022] The outer strap surface 102 and the inner strap surface 103 can be made of high-strength nylon, carbon fiber composite material, leather or other materials. The two are sewn together to form a sturdy and durable strap body structure. Multiple adjustment holes 101 are evenly punched through the strap body 1, with a spacing of 1-2 cm, so that users can adjust the strap length according to their waist circumference. At the same time, the adjustment holes 101 are reinforced, such as by using metal rings or reinforced stitching, to prevent the edges of the holes from tearing.
[0023] The inner surface 103 has a matrix of ventilation holes. This matrix arrangement helps to maximize the ventilation area, thereby improving the overall breathability. The presence of ventilation holes allows air to circulate, reducing friction and heat buildup between the inner surface 103 and the skin, increasing comfort when wearing it. In addition, the ventilation holes also allow the massager to connect with the external environment, preventing moisture buildup inside the massager body 1 during operation.
[0024] The massager is positioned between the outer surface 102 and the inner surface 103, and specifically includes two soft shells and two sets of functional components disposed on the two soft shells. The two sets of functional components are independent of each other and each controls to achieve the massage purpose. Of the two soft shells, one is attached to the outer surface 102 and the other is attached to the inner surface 103. In this paper, the soft shell attached to the outer surface 102 is referred to as the outer soft shell 3, and the soft shell attached to the inner surface 103 is referred to as the inner soft shell 4.
[0025] The functional components include: opening and closing controller 5, vibration unit 6, and auxiliary components 7.
[0026] The on / off controller 5 controls the opening and closing of the vibration unit 6 and auxiliary element 7, as well as adjusts the vibration mode of the vibration unit 6. The vibration unit 6 and auxiliary element 7 are staggered between two layers of soft shell, with 2-4 units in total, ensuring the massage effect is evenly distributed throughout the entire waist area. The connecting cable 8 connects the vibration unit 6 and auxiliary element 7 to the on / off controller 5, transmitting power and control signals. It uses flexible conductive wire to ensure it will not break during bending and stretching, while also possessing good insulation properties. Of the two sets of functional components, one is closer to the buckle 2, and the other is closer to the belt tail. Users can independently control both sets of functional components using the on / off controllers located near the buckle 2 and the belt tail, respectively.
[0027] The vibration unit 6 includes a vibration motor 601 and a wire harness pressure plate 602.
[0028] The vibration motor 601 can be a miniature vibration motor, which provides a massage effect through vibration, thereby relieving muscle tension and pain. The wire harness clamping plate 602 is used to fix the connecting wire harness of the vibration motor 601, ensuring the safety of the vibration unit 6, that is, ensuring that the connecting wire 8 will not wear or break due to vibration. There are two wire harness clamping plates 602, located on both sides of the vibration motor 601 and positioned between two layers of soft shells. After the functional components are assembled, a portion of the wire harness clamping plate 602 is pressed between the outer soft shell 3 and the inner soft shell 4, thereby fixing the vibration unit 6, ensuring that it will not shift during vibration, and guaranteeing safety.
[0029] On the inner soft shell 4, corresponding to the position of each vibration unit 6, an elongated hole 401 is formed. The size of the elongated hole 401 is designed to accommodate the vibration motor 601, allowing it to be located inside the hole. One of the vibration units 6 in the two sets of functional components is arranged side by side in the same elongated hole 401. The wire harness clamping plate 602 is pressed at the edge of the elongated hole 401, that is, a part of the wire harness clamping plate 602 is pressed between the outer soft shell 3 and the inner soft shell 4, and the other part extends into the elongated hole 401. A wire groove 6021 is formed on the wire harness clamping plate 602. The wire groove 6021 is used to carry the connecting wire 8. As a wiring component of the vibration unit 6, the wire harness clamping plate 602's fixing function ensures that the wiring remains stable during the operation of the vibration motor 601, preventing the wiring from loosening or breaking due to vibration.
[0030] A fixing membrane 402 is provided at the opening of the oblong hole 401, so that the fixing membrane 402 and the outer soft shell 3 together form a sealed space. The fixing membrane 402 covers the outside of the vibration unit 6, that is, the protruding parts of the vibration motor 601 and the wire harness pressure plate 602 are fixed together in this sealed space. The fixing membrane 402 is made of an elastic material, such as silicone or TPU. It covers the motor 601, and its elasticity provides sufficient vibration space and also has a fixing function, which restricts the movement of the vibration motor 601 to a certain extent, so as not to affect the vibration effect due to excessive constraint, and at the same time, it can also reduce the overall noise.
[0031] The auxiliary element 7 includes: a hemispherical protrusion 701, a circular base plate 702, a heating element 703, and an electrode 704.
[0032] The hemispherical protrusion 701 is made of metal, such as copper or stainless steel, which has good thermal conductivity and durability. The hemispherical protrusion 701 is set on the circular base plate 702, which is made of a soft yet strong material, such as flexible plastic or rubber. A wire hole is provided on the hemispherical protrusion 701 to allow the connecting wire 8 to pass through, ensuring the connection between the heating element 703, the electrode 704 and the on / off controller 5.
[0033] A cavity 705 is formed by the hemispherical protrusion 701 and the circular base plate 702. A heating element 703 is disposed within the cavity 705 and adheres to the inner top wall of the hemispherical protrusion 701. The heating element 703 can be a resistance wire, which generates heat when energized and transfers it to the hemispherical protrusion 701 to provide a hot compress and a warm massage effect, helping to relax muscles and promote blood circulation. The hemispherical protrusion 701 is designed to be higher than the vibration motor 601. In this embodiment, because the vibration unit 6 and auxiliary elements 7 are staggered, and the height of the hemispherical protrusion 701 is greater than that of the vibration motor 601, the vibration of the vibration motor 601 also causes the hemispherical protrusion 701 to vibrate to a certain extent simultaneously, thereby further enhancing the massage effect and achieving a warm massage effect.
[0034] A mounting groove is formed on the top of the hemispherical protrusion 701, and the electrode 704 is disposed within the mounting groove. The electrode 704 is a tiny electrical stimulation electrode, and the current generated is generally not uncomfortable, but sufficient to stimulate muscles and nerves to achieve a massage effect. By mounting the electrode 704 on the top of the hemispherical protrusion 701, electrical stimulation can be provided simultaneously with vibration massage, thereby enhancing the massage effect.
[0035] The edge of the circular base plate 702 is positioned between two soft shell plates. After the functional components are assembled, the outer edge of the circular base plate 702 is pressed between the outer soft shell plate 3 and the inner soft shell plate 4, thereby fixing the auxiliary element 7. A through hole 403 is formed on the inner soft shell plate 4 at the position corresponding to the auxiliary element 7. The outer edge of the circular base plate 702 is pressed against the edge of the through hole 403 to ensure its stable position. A hemispherical protrusion 701 extends from the through hole 403.
[0036] The start / stop controller 5 includes: a housing 501, a button 502, a charging connector 503, a power supply 504, and electronic components. The electronic components include flexible circuit boards, microcontrollers, etc. The button 502, electronic components, and power supply 504 are all housed within the housing 501. The charging connector 503 is located on one side of the housing 501 and uses a Type-C interface. The power supply 504 can be charged via the charging connector 503. The power supply 504 is typically a rechargeable battery, such as a lithium battery, which provides the necessary power for the entire massager, such as the vibration of the vibration unit 6, the heating and electrical stimulation of the auxiliary elements 7, and the operating voltage of the electronic components.
[0037] Button 502 is connected to the signal input port of the microcontroller, and the signal output port of the microcontroller is connected to the vibration motor 601, heating element 703, and electrode 704 via a driver board. The microcontroller receives the input signal from button 502 and identifies long press and short press operations. The driver board amplifies the output signal of the microcontroller to control the start / stop of the vibration motor 601, heating element 703, and electrode 704. For example, when a long press operation is detected on button 502, the vibration motor 601, heating element 703, and electrode 704 are started; when a short press operation is detected on button 502, the vibration mode of the vibration motor 601 is switched; and when a long press operation is detected on button 502 again, the vibration motor 601, heating element 703, and electrode 704 are turned off.
[0038] Mounting pieces 505 are provided around the perimeter of the housing 501, forming an extension of the housing 501. These mounting pieces 505 are positioned between two soft shell layers; that is, after the functional components are assembled, the mounting pieces 505 are pressed between the outer soft shell layer 3 and the inner soft shell layer 4, thereby securing the opening / closing controller 5. A square hole 301 is formed on the outer soft shell layer 3 at the position corresponding to the opening / closing controller 5, through which the opening / closing controller 5 protrudes. The opening / closing controller 5 has a compact design, facilitating installation at one end of the belt without affecting the user's wearing and movement.
[0039] The inner flexible shell 4 has several mounting slots 404 arranged around the functional components to ensure that each component has a corresponding fixing point. The outer flexible shell 3 has a locking protrusion 302 at the position corresponding to the mounting slot 404. The locking protrusion 302 is adapted to the mounting slot 404. The adaptation means that the locking protrusion 302 can be inserted into the mounting slot 404, thereby fixing the two flexible shells.
[0040] During assembly, the start / stop controller 5, vibration unit 6, and auxiliary components 7 are placed at preset positions between the two soft shells. Then, the locking protrusions 302 are pressed into the mounting grooves 404 one by one, thereby achieving the initial assembly of the functional components and ensuring their correct and stable position in the belt. A stitching groove 34 is provided on the soft shell. After the functional components are initially assembled and fixed, the two soft shells are stitched to the other parts of the belt (outer belt surface 102 and inner belt surface 103) through the stitching groove 34 to form a whole.
[0041] A wire harness guide groove 303 is provided on the outer soft shell 3. Its position and shape are designed according to the direction and length of the connecting wire 8 to facilitate the smooth laying of the connecting wire 8 inside the belt. The connecting wire 8, which is led out from the start / stop controller 5, is laid in the wire harness guide groove 303 and connected to the vibration motor 601, the heating element 703, and the electrode 704. This provides a clear path for the wires inside the belt, avoiding crossing and tangling between the wires. Moreover, the wires will not be damaged by friction or pulling during user activities, thereby extending the product's service life.
[0042] The inner surface 103 has a circular through groove 1031 at the position corresponding to the auxiliary element 7, and the hemispherical protrusion 701 extends out of the circular through groove 1031 after passing through the through hole 403. The outer surface 102 has a square hollow groove 1021 at the position corresponding to the opening and closing controller 5, and the housing 501 extends out of the square hollow groove 1021 after passing through the square hole 301.
[0043] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A massage vibration belt, comprising: The belt body and buckle are characterized in that the belt body includes: an outer belt surface, an inner belt surface, and a massager disposed between the outer belt surface and the inner belt surface; The massager includes two soft shells and two sets of functional components disposed on the two soft shells. The functional components include an on / off controller, a vibration unit, and auxiliary components. The vibration unit and the auxiliary components are arranged alternately and are both connected to the on / off controller. An elongated hole is formed on the soft shell that is in contact with the inner side of the belt at the position corresponding to the vibration unit. A fixing film is disposed at the opening of the elongated hole and covers the outside of the vibration unit. A through hole is formed on the soft shell that is in contact with the inner side of the belt at the position corresponding to the auxiliary component, and the auxiliary component extends out of the through hole.
2. The massage vibration belt according to claim 1, characterized in that, The vibration unit includes: a vibration motor and a wire harness pressing plate; there are two wire harness pressing plates, which are located on both sides of the vibration motor and disposed between the two layers of soft shell; wire grooves are formed on the wire harness pressing plate; the vibration motor is located in the elongated hole and is covered by the fixing film.
3. A massage vibration belt according to claim 2, characterized in that, The auxiliary components include: a hemispherical protrusion, a circular base plate, and a heating element; the hemispherical protrusion is disposed on the circular base plate and surrounds the circular base plate to form a cavity, the heating element is disposed in the cavity and fits against the inner top wall of the hemispherical protrusion; the edge of the circular base plate is disposed between the two layers of the soft shell.
4. A massage vibration belt according to claim 3, characterized in that, The auxiliary component further includes: an electrode; a mounting groove is formed on the top of the hemispherical protrusion, and the electrode is disposed in the mounting groove.
5. A massage vibration belt according to claim 4, characterized in that, The opening and closing controller includes: a housing, a button, a charging connector, and a power supply; mounting plates are provided around the housing, the mounting plates are disposed between two layers of the soft shell, the charging connector is disposed on the housing, and the button and the power supply are disposed inside the housing; a square hole is formed on the soft shell that is in contact with the outer surface of the housing at the position corresponding to the opening and closing controller, and the opening and closing controller extends out from the square hole.
6. A massage vibration belt according to claim 5, characterized in that, The inner side surface has a circular through groove at the position corresponding to the auxiliary element, and the hemispherical protrusion extends out of the circular through groove after passing through the through hole; the outer side surface has a square hollow groove at the position corresponding to the opening and closing controller, and the housing extends out of the square hollow groove after passing through the square hole.
7. A massage vibration belt according to claim 6, characterized in that, The soft shell sheet that is in contact with the inner side surface has several insertion slots arranged around the functional component. The soft shell sheet that is in contact with the outer side surface has a locking protrusion at the position corresponding to the insertion slot, and the locking protrusion is adapted to the insertion slot.
8. A massage vibration belt according to claim 7, characterized in that, A wire harness guide groove is formed on the soft shell sheet that is in contact with the outer side. A connecting wire led out from the opening and closing controller is laid in the wire harness guide groove and connected to the vibration motor, the heating element and the electrode.
9. A massage vibration belt according to claim 8, characterized in that, The soft shell sheet has a stitching groove.
10. A massage vibration belt according to claim 9, characterized in that, The inner side of the belt has ventilation holes arranged in a matrix.