Physiotherapy instrument with combined bellyband

By designing a detachable combined abdominal belt structure, the problem of the indiscretion of the existing body weight loss instruments and physiotherapy instruments is solved, achieving multi-functional and portable physiotherapy effects, reducing maintenance and transportation costs.

CN223054923UActive Publication Date: 2025-07-04木兰锦医疗器械(广州)有限公司
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Patent Information

Application Number
CN202421448228.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-07-04
Estimated Expiration
2034-06-24

AI Technical Summary

Technical Problem

The abdominal belt structure of the existing body weight loss instruments and physiotherapy instruments cannot be separated, resulting in high maintenance costs, inconvenient portability, easy to damage, and single function.

Method used

A removable combined abdominal belt structure is designed, including A belt and B belt, A belt and B belt are independently connected by power cord, LED light beads are provided on the B belt, A belt and B belt are connected by raised points and grooves, and the main unit is removably connected to the column and the pedal to achieve a multi-functional physiotherapy effect.

Benefits of technology

The removable connection of the abdominal strap is realized, reducing maintenance and transportation costs, providing a variety of physiotherapy functions, and enhancing the portability and flexibility of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223054923U_ABST
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Abstract

The utility model relates to a physiotherapy instrument equipped with a combined bellyband, which comprises a host, an upright post and a foot board, the host is detachably connected with an inclined slot at the top of the upright post, and the lower part of the upright post is detachably connected with the foot board; the combined bellyband comprises a band A and a band B which are detachably connected, the band A and the band B are both of a layered structure, the band A is provided with a first power line, the band B is provided with a second power line, and the host is provided with two power interfaces corresponding to the first power line and the second power line respectively; a plurality of protruding points are arranged on the front face of the belt B, and point grooves corresponding to the protruding points respectively are formed in the back face of the belt A; the edge of the belt B is narrower than the edge of the belt A by several millimeters, and the belt A is provided with a butt joint groove for the belt B to be embedded in. The combined bellyband provided by the utility model is formed by combining a band A and a band B which are detachably connected. The band A and the band B can be used in a combined mode and can also independently provide respective physical therapy functions, so that different use requirements of the band A and the band B are met.
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Description

Technical Field

[0001] The utility model relates to the field of beauty medical equipment, and more specifically, to a physiotherapy apparatus equipped with a combined abdominal belt. Background Art

[0002] The abdominal belts of physiotherapy devices such as body shaping and slimming devices and physiotherapy apparatuses currently on the market are often a whole piece with an inseparable structure and single function. In addition to not meeting multiple functions, once a part of the structure is damaged, the entire abdominal belt needs to be replaced, greatly increasing the later transportation, maintenance and other costs of the manufacturer, and also increasing the expenses of consumers.

[0003] Therefore, there is still a technical gap in the market for a combined abdominal belt with a simple structure and a detachable overall structure, and each sub-belt structure can provide different physiotherapy functions, so that the functions can be superimposed and combined for use as a whole, and can also be disassembled and used separately.

[0004] In addition, most of the body shaping and slimming devices and physiotherapy apparatuses currently on the market are of a single structure, and often have the disadvantages of being bulky and inconvenient to carry. The console, base, and column are all fixedly connected, which results in these functional components being of an integral structure. The column structure basically adopts a double-column structure, which leads to a large number of structural components and is not convenient for maintenance; in the actual use process, once the double columns are not properly installed and the small components such as screws used for collaborative installation are not proper, there may be a situation of imbalance between the two columns. Over time, it is also easy to cause uneven stress on some component structures, which is more likely to lead to product damage or inconvenient installation.

[0005] Therefore, there is an urgent need in the market for a physiotherapy device with a simpler overall structure, convenient to carry, move, transport, and maintain after-sales, and having a combined abdominal belt structure. Summary of the Utility Model

[0006] In view of the above technical problems in the related art, the present utility model provides a physiotherapy apparatus equipped with a combined abdominal belt, which can overcome the above-mentioned deficiencies of the prior art.

[0007] To achieve the above technical purpose, the technical solution of the present utility model is realized as follows:

[0008] The physiotherapy apparatus equipped with a combined abdominal belt of the present utility model includes a main body, a column, and a footrest. The main body is detachably connected to the inclined slot at the top of the column, and the lower part of the column is detachably connected to the footrest;

[0009] It also includes a combined abdominal belt, which includes Belt A and Belt B. The back of Belt A is detachably connected to the front of Belt B. Both Belt A and Belt B are of a layered structure. Belt A is provided with a first power cord, and Belt B is provided with a second power cord. The first power cord and the second power cord are independent of each other. The front of Belt B is provided with a number of raised points, and the back of Belt A is provided with corresponding point grooves respectively. And the edge of Belt B is narrower than the edge of Belt A. Along its edge, the back of Belt A is provided with a docking groove for Belt B to be embedded.

[0010] Preferably, the layered structure of Belt A specifically includes a front cover of Belt A, a circuit heating layer, and a back cover of Belt A. The circuit heating layer is located between the front cover of Belt A and the back cover of Belt A.

[0011] Preferably, a silica gel layer of Belt A is provided on the front side of the front cover of Belt A.

[0012] Preferably, the front cover of Belt A and the silica gel layer of Belt A are integrally stamped or detachably connected together.

[0013] Preferably, Belt A or Belt B is further provided with a fixing belt for fixing it to a human body part.

[0014] Preferably, the raised points are circular protrusions, and the point grooves are corresponding circular grooves.

[0015] Preferably, Belt A and Belt B are further provided with magnetic buttons for strengthening fixation correspondingly.

[0016] Preferably, the height of the raised points is 2 mm, and the edge of Belt B is 2 mm narrower than the edge of Belt A.

[0017] Preferably, the layered structure of Belt B specifically includes a front cover of Belt B, a flexible circuit board, and a back cover of Belt B. The flexible circuit board is located between the front cover of Belt B and the back cover of Belt B.

[0018] Preferably, Belt B is provided with a number of LED lamp beads. The LED lamp beads are connected to the flexible circuit board, and the flexible circuit board is connected to the second power cord. Belt B provides LED light therapy with a physiotherapy effect through the LED lamp beads.

[0019] Preferably, the front cover of Belt B includes a silica gel layer, an LED flexible lamp board layer, and a PC support layer that are arranged in the front-back order and connected. The LED flexible lamp board layer is located between the silica gel layer and the PC support layer.

[0020] Preferably, the flexible circuit board is an FPC flexible circuit board.

[0021] Preferably, there are a total of 113 LED lamp beads, and there are 9 raised points in total. Each raised point is provided with 5 LED lamp beads.

[0022] Preferably, the remaining LED lamp beads are evenly distributed in a matrix to form an LED matrix.

[0023] Preferably, the B band is provided with an independent control system one and a control system two. The control system one controls the LED lamp beads located at the convex points to light up alone, while the control system two controls all the LED lamp beads to light up.

[0024] Preferably, the LED lamp beads output red light with a wavelength of 625nm ± 10nm, or output blue light with a wavelength of 465nm ± 10nm.

[0025] Preferably, the upper part of the column is provided with a column top inclined slot, and the rear side of the main body is provided with an external insertion part corresponding to the column top inclined slot. The external insertion part is fitted into the column top inclined slot.

[0026] Preferably, the bottom of the column top inclined slot is provided with a column top hole, and the bottom of the external insertion part is fitted into the column top hole; several first threaded holes are arranged around the column top hole, and second threaded holes corresponding to the first threaded holes are arranged on the outer edge of the external insertion part. The corresponding first threaded hole and second threaded hole are simultaneously threadedly connected with a corresponding screw or bolt.

[0027] Preferably, the front side of the main body is provided with a liquid crystal display screen. A protective shell is arranged around the edge of the liquid crystal display screen. A wiring board is arranged on the upper part of the protective shell. The top end of the wiring board is lower than the top end of the protective shell. The wiring board is electrically connected to the liquid crystal display screen, and several wiring holes are arranged on the wiring board.

[0028] Preferably, a handle board is arranged on the rear side of the wiring board of the protective shell. A notch for easy carrying is arranged on the handle board. The top end of the wiring board is also lower than the top end of the handle board; the handle board and the protective shell jointly enclose the wiring board between the two, thus forming a groove that protects the wiring board.

[0029] Preferably, the column includes a single support column extending longitudinally. The top of the support column is connected to the column top inclined slot. Side shells are symmetrically arranged on the left and right sides of the support column. The column middle hole is located between the two side shells. The lower end of the support column is detachably connected to the footrest.

[0030] Preferably, the footrest includes a lower footboard and an upper footboard. The upper footboard is in a "concave" shape. The upper footboard is located above the lower footboard and the two are detachably connected. Two foot pads are arranged at the left and right ends of the upper footboard.

[0031] Preferably, the lower footboard is provided with a footrest slot, and the lower end of the support column is embedded in the footrest slot.

[0032] Preferably, several column bottom threaded holes are arranged on the edge of the lower end of the support column. The footrest slot is provided with footrest threaded holes corresponding to each column bottom threaded hole. The corresponding column bottom threaded hole and footrest threaded hole are simultaneously threadedly connected with a corresponding screw or bolt.

[0033] Preferably, a column bottom middle block is arranged at the middle position of the bottom of the support column. The footrest slot is provided with a footrest middle hole corresponding to the column bottom middle block. The column bottom middle block is embedded in the footrest middle hole.

[0034] Beneficial effects achieved by this design: The combined abdominal belt provided by this product is composed of an A belt and a B belt that are detachably connected. The A belt and the B belt can be used in combination or separately provide their respective physiotherapy functions. Since the power cord 1 of the A belt and the power cord 2 of the B belt are independent of each other and are respectively connected to different interfaces on the wiring board of the physiotherapy instrument host, they can be used in combination or separately after being disassembled to meet their respective different usage requirements. The main function of the A strap can be set to output low-frequency current and temperature to provide a variety of physiotherapy effects; the main function of the B strap can be set to provide physiotherapy effects through LED light therapy. The A belt and the B belt have a triple connection and fixation mechanism, namely corresponding convex points and dot grooves, the A belt is provided with a docking groove for the B belt to be embedded, and magnetic connections are respectively provided by corresponding magnetic buttons between the A belt and the B belt. Through the triple connection and fixation mechanism, the firmness of the connection between the A belt and the B belt is ensured. The A belt and the B belt can be fixed on multiple body parts such as the abdomen, waist, hips, back, and shoulders through fixed straps, providing a wide range of applications.

[0035] The dot protrusions on the front of the B belt are inserted into the dot grooves on the back of the A belt. In addition to further enhancing the fixing effect, the light of the LED beads in the convex points can be realized to penetrate through a unique design. The B belt uses an FPC flexible circuit board to connect the LED beads, thereby ensuring the softness and durability of the circuit, improving the service life of the product and the user experience.

[0036] The layered structure of the A belt specifically includes a silicone layer, a circuit heating layer, and a rear cover. The A belt can be fixed on multiple body parts such as the abdomen, waist, hips, back, and shoulders through fixed straps, providing a wide range of applications. The intensity of the low-frequency current and temperature can be adjusted according to the different tolerances of the human body to ensure the comfort and safety of use. Users can select to use the low-frequency current or temperature alone for the A belt according to their personal actual needs to provide a personalized physiotherapy plan.

[0037] The B strap can be set to output red light with a wavelength of 625nm and blue light with a wavelength of 465nm suitable for the human body. The B strap includes a silica gel layer, an LED flexible light board layer, a PC support layer, and a rear cover, ensuring the softness, stability, and durability of the device. There can be 9 circular raised points on the B strap, and each raised point can contain 5 LEDs, for a total of 45 LEDs. Except for the circular points, the LEDs in other areas of the B strap can be evenly distributed in a matrix. The B strap can be provided with independent control systems one and two. Control system one independently controls the LED beads located in the raised points, and control system two controls all the LED beads to light up, thus realizing dual control of the LED beads and providing two different light therapy effects. Control system one can independently control the 45 LED beads at 9 circular points, and the other 68 LEDs are extinguished. Control system two can light up 113 LED beads simultaneously, thus expanding the LED illumination area and providing a larger area of light therapy effect.

[0038] For example, when the A and B straps are used in combination, the 45 LED beads at 9 circular points on the B strap can be independently activated, and the other 68 LEDs are extinguished to meet different physiotherapy needs; when the B strap is used alone, all 113 LED beads can be lit up to expand the LED illumination area and enhance the light therapy effect.

[0039] Compared with the existing technical solutions, the structure of this product is more convenient, with a split assembly, making it easier to transport and being maintained and used by technicians, thus reducing costs such as after-sales, cost, and logistics. Through the detachable split structure, the product simplifies the structure of individual components, and the overall injection-molded material makes it lighter in weight. The detachable main unit, foot pedal, column, and combined abdominal belt can all be carried and transported separately, and are lighter in weight compared to the existing technologies with an overall structure.

[0040] The combined abdominal belt of this product can be used in combination or disassembled; the main unit, column, and foot platform of this product constitute the main structure, which can all be implemented either by the preferred solution of this application or by the existing technologies, and can perfectly match other existing technologies or the technical solutions of this application, thus further reducing the costs of improvement, transportation, and maintenance, and enhancing the structural scalability and adaptability of this product. Description of the Drawings

[0041] The following further details the present utility model with reference to the drawings.

[0042] Figure 1 is the overall structural schematic diagram of the physiotherapy instrument equipped with a combined abdominal belt described in the embodiment of the present utility model Figure 1 (The dotted line is the omitted part of the wire).

[0043] Figure 2Schematic diagram of the overall structure of the physiotherapy device equipped with a combined abdominal belt according to an embodiment of the present utility model Figure 2 (The dotted lines are partial wires omitted).

[0044] Figure 3 Schematic diagram of the connection between the combined abdominal belt and the main unit when used separately according to an embodiment of the present utility model (The dotted lines are partial wires omitted).

[0045] Figure 4 Schematic perspective view of the combined abdominal belt from a partial side view according to an embodiment of the present utility model

[0046] Figure 5 Front view of the combined abdominal belt according to an embodiment of the present utility model

[0047] Figure 6 Rear view of the combined abdominal belt according to an embodiment of the present utility model

[0048] Figure 7 Front view of the A belt according to an embodiment of the present utility model

[0049] Figure 8 Rear view of the A belt according to an embodiment of the present utility model

[0050] Figure 9 Exploded view of the A belt in layers according to an embodiment of the present utility model

[0051] Figure 10 Front cover 404 of the A belt according to an embodiment of the present utility model

[0052] Figure 11 Schematic diagram of the silicone layer 4041 of the A belt according to an embodiment of the present utility model

[0053] Figure 12 Front view of the B belt according to an embodiment of the present utility model

[0054] Figure 13 Rear view of the B belt according to an embodiment of the present utility model

[0055] Figure 14 Exploded view of the B belt in layers according to an embodiment of the present utility model

[0056] Figure 15 Schematic diagram of the structure of the main unit according to an embodiment of the present utility model

[0057] Figure 16 Schematic diagram of the connection between the main unit and the combined abdominal belt according to an embodiment of the present utility model

[0058] Figure 17 Single independent solid of the column according to an embodiment of the present utility modelFigure 1 .

[0059] Figure 18 is the single three-dimensional view of the column described in the embodiment of the present utility model Figure 2 .

[0060] Figure 19 is the three-dimensional view of the tread platform described in the embodiment of the present utility model Figure 1 .

[0061] Figure 20 is the three-dimensional view of the tread platform described in the embodiment of the present utility model Figure 2 .

[0062] Figure 21 is the disassembled view of the tread platform described in the embodiment of the present utility model.

[0063] In the figure: 1, main machine; 101, liquid crystal display screen; 102, protective shell; 103, wiring board; 104, handle; 105, external insertion part; 2, column; 201, column top inclined slot; 202, column top hole; 203, side shell; 204, column middle hole; 205, support column; 206, column bottom threaded hole; 207, column bottom middle block; 3, tread platform; 301, lower pedal; 302, foot pad; 303, upper pedal; 304, tread platform slot; 305, tread platform threaded hole; 306, tread platform middle hole; 4, A belt; 401, power cord one; 402, dot groove; 403, docking groove; 404, A belt front cover; 405, circuit heating layer; 406, A belt rear cover; 5, B belt; 501, power cord two; 502, convex point; 503, LED lamp bead; 504, B belt front cover; 505, flexible circuit board; 506, B belt rear cover; 6, magnetic buckle. Specific embodiments

[0064] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Any modification, equivalent replacement, improvement, etc. made by those of ordinary skill in the art within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model and all belong to the protection scope of the present utility model.

[0065] As Figure 1-21 shown, for the convenience of understanding the above technical solutions of the present utility model, the above technical solutions of the present utility model will be described in detail below through specific usage methods.

[0066] When in specific use, the physiotherapy instrument equipped with a combined abdominal belt described in the present utility model includes a main machine 1, a column 2 and a tread platform 3. The main machine 1 is detachably connected to the column top inclined slot, and the lower part of the column 2 is detachably connected to the tread platform 3;

[0067] It further includes a combined abdominal belt, which includes Belt A 4 and Belt B 5. The back of Belt A 4 is detachably connected to the front of Belt B 5. Both Belt A 4 and Belt B 5 are of a layered structure. Belt A 4 is provided with a first power cord 401, and Belt B 5 is provided with a second power cord 501. The first power cord 401 and the second power cord 501 are independent of each other; the front of Belt B 5 is provided with a number of raised points 502, and the back of Belt A 4 is provided with corresponding point grooves 402 respectively corresponding to the raised points 502; and the edge of Belt B 5 is narrower than the edge of Belt A 4. Along its edge, the back of Belt A 4 is provided with a docking groove 403 for Belt B 5 to be inserted into. The main body 1, the column 2 and the pedal 3 can all be realized by the prior art, or can be realized by the preferred technical solution disclosed in this application.

[0068] In a specific embodiment, the layered structure of Belt A 4 specifically includes a front cover 404 of Belt A, a circuit heating layer 405 and a back cover 406 of Belt A. The circuit heating layer 405 is located between the front cover 404 of Belt A and the back cover 406 of Belt A.

[0069] In a specific embodiment, the front side of the front cover 404 of Belt A is provided with a silica gel layer 4041 of Belt A.

[0070] In a specific embodiment, the front cover 404 of Belt A and the silica gel layer 4041 of Belt A are integrally stamped or detachably connected together.

[0071] In a specific embodiment, Belt A or Belt B is further provided with a fixing belt for fixing it to a human body part.

[0072] In a specific embodiment, the raised points 502 are circular protrusions, and the point grooves 402 are corresponding circular grooves.

[0073] In a specific embodiment, Belt A 4 and Belt B 5 are further provided with magnetic buttons 6 for strengthening fixation correspondingly.

[0074] In a specific embodiment, the height of the raised points 502 is 2 mm, and the edge of Belt B 5 is 2 mm narrower than the edge of Belt A 4.

[0075] In a specific embodiment, the layered structure of Belt B 5 specifically includes a front cover 504 of Belt B, a flexible circuit board 505 and a back cover 506 of Belt B. The flexible circuit board 505 is located between the front cover 504 of Belt B and the back cover 506 of Belt B.

[0076] In a specific embodiment, Belt B 5 is provided with a number of LED lamp beads 503. The LED lamp beads 503 are connected to the flexible circuit board 505, and the flexible circuit board 505 is connected to the second power cord 501. Belt B 5 provides LED light therapy with a physiotherapy effect through the LED lamp beads 503.

[0077] In a specific embodiment, the B-tape front cover 504 includes a silicone layer, an LED flexible light board layer, and a PC support layer that are arranged front and back and connected to each other. The LED flexible light board layer is located between the silicone layer and the PC support layer.

[0078] In a specific embodiment, the flexible circuit board 505 is an FPC flexible circuit board.

[0079] In a specific embodiment, there are a total of 113 LED beads 503, and there are 9 convex points 502 in total. Each convex point 502 is provided with 5 LED beads 503.

[0080] In a specific embodiment, except for the LED beads 503 arranged in the convex points 502, the remaining LED beads are evenly distributed in a matrix to form an LED matrix.

[0081] In a specific embodiment, the B-tape 5 is provided with independent control systems one and two. The control system one separately controls the lighting of the LED beads 503 located in the convex points 502, and the control system two controls the lighting of all the LED beads 503.

[0082] In a specific embodiment, the LED beads 503 emit red light with a wavelength of 625nm ± 10nm, or emit blue light with a wavelength of 465nm ± 10nm.

[0083] In a specific embodiment, the upper part of the column 2 is provided with a column top inclined slot 201, and the rear side of the main unit 1 is provided with an external insertion part 105 corresponding to the column top inclined slot 201. The external insertion part 105 is fitted into the column top inclined slot 201.

[0084] In a specific embodiment, the bottom of the column top inclined slot 201 is provided with a column top hole 202, and the bottom of the external insertion part 105 is fitted into the column top hole 202; several first threaded holes are provided around the column top hole 202, and the outer edge of the external insertion part 105 is provided with second threaded holes corresponding to the first threaded holes respectively. The corresponding first threaded holes and second threaded holes are simultaneously threadedly connected with a corresponding screw or bolt.

[0085] In a specific embodiment, the front side of the main unit 1 is provided with a liquid crystal display screen 101, a protective case 102 is provided around the edge of the liquid crystal display screen 101, a wiring board 103 is provided on the upper part of the protective case 102, the top end of the wiring board 103 is lower than the top end of the protective case 102, the wiring board 103 is electrically connected to the liquid crystal display screen 101, and several wiring holes are provided on the wiring board 103.

[0086] In a specific embodiment, the protective shell 102 is provided with a handle plate 104 at the rear side of the wiring board 103. The handle plate 104 is provided with a notch for easy carrying. The top end of the wiring board 103 is also lower than the top end of the handle plate 104. The handle plate 104 and the protective shell 102 jointly enclose the wiring board 103 therebetween, thus forming a groove that protects the wiring board 103.

[0087] In a specific embodiment, the column 2 includes a single support column 205 extending longitudinally. The top of the support column 205 is connected to the column top inclined slot 201. Symmetrically arranged side shells 203 are provided on the left and right sides of the support column 205. The column middle hole 204 is located between the two side shells 203. The lower end of the support column 205 is detachably connected to the tread platform 3.

[0088] In a specific embodiment, the tread platform includes a lower tread plate 301 and an upper tread plate 303. The upper tread plate 303 is in a "concave" shape. The upper tread plate 303 is located above the lower tread plate 301 and the two are detachably connected. Two foot pads 302 are provided at the left and right ends of the upper tread plate 303.

[0089] In a specific embodiment, the lower tread plate 301 is provided with a tread platform slot 304, and the lower end of the support column 205 is embedded in the tread platform slot 304.

[0090] In a specific embodiment, a plurality of column bottom threaded holes 206 are provided at the edge of the lower end of the support column 205. The tread platform slot 304 is provided with tread platform threaded holes 305 corresponding to each column bottom threaded hole 206. The corresponding column bottom threaded holes 206 and tread platform threaded holes 305 are simultaneously threadedly connected with a corresponding screw or bolt.

[0091] In a specific embodiment, a column bottom middle block 207 is provided at the middle position of the bottom of the support column 205. The tread platform slot 304 is provided with a tread platform middle hole 306 corresponding to the column bottom middle block 207. The column bottom middle block 207 is embedded in the tread platform middle hole 306.

[0092] In summary, the present product adopts the above unique design. The combined abdominal belt provided by the present product is composed of an A belt and a B belt that are detachably connected. The A belt and the B belt can be used in combination or can separately provide their respective physiotherapy functions. Since the power cord one of the A belt and the power cord two of the B belt are independent of each other, the two can be used independently, thus meeting their respective different usage requirements. The main function of the A strap can be set to output low-frequency current and temperature to provide various physiotherapy effects; the main function of the B strap can be set to provide physiotherapy effects through LED light therapy. The A belt and the B belt have a triple connection and fixation mechanism, which are respectively corresponding convex points and point grooves, the A belt is provided with a docking groove for the B belt to be embedded, and magnetic connections are respectively provided by corresponding magnetic buttons between the A belt and the B belt. Through the triple connection and fixation mechanism, the firmness of the connection between the A belt and the B belt is ensured.

[0093] In the description of the present utility model, it should be understood that the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.

Claims

1. A physiotherapy apparatus equipped with a combined abdominal belt, comprising a main unit (1), a column (2) and a footrest (3), wherein the main unit (1) is detachably connected to the inclined slot (201) at the top of the column, and the lower part of the column (2) is detachably connected to the footrest (3), characterized in that, it further comprises a combined abdominal belt, the combined abdominal belt comprising a strap A (4) and a strap B (5), the back surface of the strap A (4) being detachably connected to the front surface of the strap B (5), both the strap A (4) and the strap B (5) being of a layered structure, the strap A (4) being provided with a first power cord (401), the strap B (5) being provided with a second power cord (501), the first power cord (401) and the second power cord (501) being independent of each other; the front surface of the strap B (5) being provided with a number of raised points (502), the back surface of the strap A (4) being provided with corresponding point grooves (402) respectively corresponding to the raised points (502); and the edge of the strap B (5) being narrower than the edge of the strap A (4), and the back surface of the strap A (4) being provided with a docking groove (403) along its edge for the strap B (5) to be inserted into.

2. The physiotherapy apparatus according to claim 1, characterized in that, The layered structure of the strap A (4) specifically comprises a front cover of strap A (404), a circuit heating layer (405) and a back cover of strap A (406), and the circuit heating layer (405) is located between the front cover of strap A (404) and the back cover of strap A (406).

3. The physiotherapy apparatus according to claim 2, characterized in that, The front side of the front cover of strap A (404) is provided with a silica gel layer of strap A (4041).

4. The physiotherapy apparatus according to claim 1, wherein The raised points (502) are circular protrusions, and the point grooves (402) are corresponding circular grooves; the height of the raised points (502) is 2 mm, and the edge of the strap B (5) is 2 mm narrower than the edge of the strap A (4).

5. The physiotherapy apparatus according to claim 1, characterized in that, The layered structure of the strap B (5) specifically comprises a front cover of strap B (504), a flexible circuit board (505) and a back cover of strap B (506), and the flexible circuit board (505) is located between the front cover of strap B (504) and the back cover of strap B (506).

6. The physiotherapy apparatus according to claim 5, characterized in that, The strap B (5) is provided with a number of LED lamp beads (503), the LED lamp beads (503) being connected to the flexible circuit board (505), the flexible circuit board (505) being connected to the second power cord (501), and the strap B (5) providing LED light therapy with a physiotherapy effect through the LED lamp beads (503).

7. The physiotherapy apparatus according to claim 6, characterized in that, The front cover of strap B (504) comprises a silica gel layer, an LED flexible lamp board layer and a PC support layer which are arranged in the front-back direction and connected, and the LED flexible lamp board layer is located between the silica gel layer and the PC support layer; the flexible circuit board (505) is an FPC flexible circuit board.

8. The physiotherapy apparatus according to claim 6, characterized in that, The strap B (5) is provided with an independent control system one and a control system two, the control system one separately controlling the LED lamp beads (503) located in the raised points (502) to light up, and the control system two controlling all the LED lamp beads (503) to light up.

9. The physiotherapy apparatus according to claim 1, wherein, The rear side of the main unit (1) is provided with an external insertion part (105) corresponding to the inclined slot (201) at the top of the column, and the external insertion part (105) is fitted into the inclined slot (201) at the top of the column; The bottom of the column top inclined slot (201) is provided with a column top hole (202), and the bottom of the outer insertion part (105) is fitted into the column top hole (202); several first threaded holes are provided around the column top hole (202), and second threaded holes corresponding to the first threaded holes are provided on the outer edge of the outer insertion part (105), and the corresponding first threaded hole and the second threaded hole are simultaneously threadedly connected with a corresponding screw or bolt. The front side of the main unit (1) is provided with a liquid crystal display screen (101), a protective shell (102) is provided around the edge of the liquid crystal display screen (101), a wiring board (103) is provided on the upper part of the protective shell (102), the top end of the wiring board (103) is lower than the top end of the protective shell (102), the wiring board (103) is electrically connected with the liquid crystal display screen (101), and several wiring holes are provided on the wiring board (103). The protective shell (102) is provided with a handle plate (104) at the rear side of the wiring board (103), the handle plate (104) is provided with a notch for easy handling, and the top end of the wiring board (103) is also lower than the top end of the handle plate (104); the handle plate (104) and the protective shell (102) jointly enclose the wiring board (103) therebetween, thus forming a groove for protecting the wiring board (103).

10. The physiotherapy apparatus according to claim 9, wherein, The upright column (2) includes a single support column (205) extending longitudinally, the top of the support column (205) is connected with the column top inclined slot (201), side shells (203) are symmetrically provided on the left and right sides of the support column (205), a column middle hole (204) is located between the two side shells (203), and the lower end of the support column (205) is detachably connected with the tread plate (3). The tread plate includes a lower tread plate (301) and an upper tread plate (303), the upper tread plate (303) is in a "concave" shape, the upper tread plate (303) is located above the lower tread plate (301) and the two are detachably connected, and two foot pads (302) are arranged at the left and right ends of the upper tread plate (303). The lower tread plate (301) is provided with a tread plate slot (304), and the lower end of the support column (205) is embedded in the tread plate slot (304). Several column bottom threaded holes (206) are provided at the edge of the lower end of the support column (205), the tread plate slot (304) is provided with tread plate threaded holes (305) corresponding to each of the column bottom threaded holes (206), and the corresponding column bottom threaded hole (206) and the tread plate threaded hole (305) are simultaneously threadedly connected with a corresponding screw or bolt. A column bottom middle block (207) is provided at the middle position of the bottom of the support column (205), the tread plate slot (304) is provided with a tread plate middle hole (306) corresponding to the column bottom middle block (207), and the column bottom middle block (207) is embedded in the tread plate middle hole (306).