Patch structure for muscle stimulator

By introducing contact conductive components, alignment components and quick disassembly components into the patch structure of muscle stimulators, rapid disassembly and assembly is achieved, and the problem of flexibility and low efficiency of muscle stimulators is solved, and the convenience of operation is improved.

CN222969046UActive Publication Date: 2025-06-13SHENZHEN YUANJING TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421226858.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-30
Publication Date
2025-06-13
Estimated Expiration
2034-05-30

AI Technical Summary

Technical Problem

Common patch structures for muscle stimulators lack quick disassembly structures, resulting in problems that need to be improved in use flexibility and efficiency.

Method used

A patch structure for muscle stimulators was designed, and the contact conductive components, alignment components and quick disassembly components were set to achieve rapid disassembly and assembly, improving the flexibility and efficiency of use.

Benefits of technology

Through the quick disassembly and assembly function, the flexibility and efficiency of the muscle stimulator are improved, the problem of cumbersome operation is solved, and the convenience of the use scenario is enhanced.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222969046U_ABST
    Figure CN222969046U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of electrical stimulation massage, in particular to a patch structure for a muscle stimulator. The bottom of the medical gauze is connected with an insulating layer; the bottom of the insulating layer is provided with a conductive adhesive layer; an electrode plate is embedded in the middle of the conductive adhesive layer; the top of the electrode plate is connected with a contact conductive assembly; the front and rear sides in the mounting frame and the front and rear ends of the stimulator host are limited through alignment assemblies, and the top of the stimulator host is provided with a control panel. By arranging the uniform smearing assembly, glue smeared on shoes by the gluing assembly can be uniformly smeared, so that the problems that a common patch structure for the muscle stimulator only comprises the gluing assembly and can be used for gluing the shoes, but the uniform smearing assembly is lacked, the uniformity of the glue is not guaranteed, and excessive glue or too little glue is likely to occur in part of places; and the subsequent adhesion firmness is influenced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of electro - stimulation massage, in particular to a patch structure for a muscle stimulator. Background Art

[0002] A muscle stimulator is a device that uses electric current to stimulate muscle tissue to achieve exercise, rehabilitation or pain relief. It usually consists of components such as a main unit, electrode patches and wires. This kind of stimulation can promote muscle contraction, enhance muscle strength, improve blood circulation, relieve muscle fatigue and pain, etc.

[0003] For the common patch structure of muscle stimulators, it is usually docked through various cable plugs, lacking a quick - release structure, and the operation is rather cumbersome, resulting in problems that the flexibility and efficiency of use need to be improved.

[0004] Therefore, aiming at the problem that the patch structure of the above - mentioned muscle stimulator lacks a quick - release structure, resulting in the need to improve the flexibility and efficiency of use, it is urgently needed to be solved to improve the usage scenario. Summary of the Utility Model

[0005] In order to overcome the problem that the common patch structure of muscle stimulators lacks a quick - release structure, resulting in the need to improve the flexibility and efficiency of use.

[0006] The technical solution of the utility model is: a patch structure for a muscle stimulator, including a medical gauze, an insulating layer is connected to the bottom of the medical gauze, a conductive adhesive layer is installed at the bottom of the insulating layer, an electrode sheet is embedded in the middle of the conductive adhesive layer, a contact conductive component is connected to the top of the electrode sheet, a protective film is arranged at the bottom of the conductive adhesive layer, an installation frame is installed on the top of the medical gauze, a stimulator main unit is connected inside the installation frame, the front and back sides inside the installation frame and the front and back ends of the stimulator main unit are limited by an alignment component, a control panel is installed on the top of the stimulator main unit, a first fixing ring is installed on the right side of the front end of the installation frame, a second fixing ring is arranged on the right side of the rear end of the installation frame, a quick - release component is connected to the right end of the stimulator main unit, a connection groove is horizontally opened in the left - half part of the bottom of the stimulator main unit, and a conductive plate is installed at the right end inside the connection groove.

[0007] Preferably, through the arranged contact conductive component, alignment component and quick - release component, quick disassembly and assembly can be realized, improving the flexibility and efficiency of use, so as to solve the problem that the common patch structure of muscle stimulators is usually docked through various cable plugs, lacking a quick - release structure, with rather cumbersome operation, resulting in the need to improve the flexibility and efficiency of use.

[0008] Preferably, the contact conductive component includes a conductive rod, a movable head, and a first spring; a conductive rod is connected to the top of the electrode sheet, the conductive rod passes through the insulating layer, the medical gauze, and the lower end of the mounting frame, the movable head is movably connected inside the upper end of the conductive rod, the first spring is installed at the bottom of the movable head, and the top end of the movable head contacts the conductive plate, facilitating the realization of the electrical connection of the circuit.

[0009] Preferably, the alignment component includes an alignment groove and a rib; alignment grooves are formed on the front and back sides inside the alignment component, ribs are provided at the front and back ends of the stimulator host, and the ribs are slidably connected to the alignment grooves, playing a role of guiding and limiting, and facilitating installation and disassembly.

[0010] Preferably, the quick-release component includes a fixed frame and a first locking tongue; the fixed frame is connected to the right end of the stimulator host, the first locking tongue is movably connected to the front end inside the fixed frame, and the front end of the first locking tongue is connected to the inner side of the first fixing ring to achieve locking.

[0011] Preferably, the quick-release component includes a second locking tongue; the second locking tongue is movably connected to the rear end inside the fixed frame, and the rear end of the second locking tongue is connected to the inner side of the second fixing ring to achieve a locking effect.

[0012] Preferably, the quick-release component includes a first dial plate, a second dial plate, and a second spring; the first dial plate is installed at the right end of the first locking tongue, the second dial plate is connected to the right end of the second locking tongue, and the second spring is installed between the first locking tongue and the second locking tongue. By moving the first dial plate and the second dial plate towards each other, the second spring is compressed until the first locking tongue disengages from the first fixing ring and the second locking tongue disengages from the second fixing ring, at which point unlocking is achieved. Reversing the above steps can perform assembly, realizing the function of quick disassembly and assembly, facilitating separate replacement after disassembly, and improving the flexibility and economy of use.

[0013] The beneficial effects of the present utility model are as follows:

[0014] 1. By providing the contact conductive component, the alignment component, and the quick-release component, quick disassembly and assembly can be realized, improving the flexibility and efficiency of use, so as to solve the problem that the patch structure of the common muscle stimulator is usually docked through various cable plugs, lacking a quick-release structure, with cumbersome operation, resulting in the flexibility and efficiency of use remaining to be improved.

[0015] 2. The movable head is movably connected inside the upper end of the conductive rod, the first spring is installed at the bottom of the movable head, and the top end of the movable head contacts the conductive plate, facilitating the realization of the electrical connection of the circuit. The rib is slidably connected to the alignment groove, playing a role of guiding and limiting, and facilitating installation and disassembly. The second spring is installed between the first locking tongue and the second locking tongue. By moving the first dial plate and the second dial plate towards each other, the second spring is compressed until the first locking tongue disengages from the first fixing ring and the second locking tongue disengages from the second fixing ring, at which point unlocking is achieved. Reversing the above steps can perform assembly, realizing the function of quick disassembly and assembly, facilitating separate replacement after disassembly, and improving the flexibility and economy of use. Description of the Drawings

[0016] Figure 1 The figure shows a three-dimensional schematic diagram of a patch structure for a muscle stimulator of the present utility model;

[0017] Figure 2 The figure shows a sectional schematic diagram of a patch structure for a muscle stimulator of the present utility model;

[0018] Figure 3 The figure shows a schematic diagram of the installation structure of the contact conductive component of a patch structure for a muscle stimulator of the present utility model;

[0019] Figure 4 The figure shows a patch structure for a muscle stimulator of the present utility model Figure 3 An enlarged view at position A;

[0020] Figure 5 The figure shows a schematic diagram of the installation structure of the quick-release component of a patch structure for a muscle stimulator of the present utility model.

[0021] In the figure: 1, medical gauze; 2, insulating layer; 3, conductive adhesive layer; 4, electrode patch; 5, contact conductive component; 6, protective film; 7, mounting frame; 8, stimulator main body; 9, alignment component; 10, control panel; 11, first fixing ring; 12, second fixing ring; 13, quick-release component; 14, connecting groove; 15, conductive plate; 501, conductive rod; 502, movable head; 503, first spring; 901, alignment groove; 902, convex strip; 1301, fixing frame; 1302, first locking tongue; 1303, second locking tongue; 1304, first dialing plate; 1305, second dialing plate; 1306, second spring. Detailed Embodiment

[0022] The present utility model will be further described below with reference to the drawings and embodiments.

[0023] Please refer to Figures 1-5, this utility model provides an embodiment: a patch structure for a muscle stimulator, which includes a medical gauze 1. The bottom of the medical gauze 1 is connected with an insulating layer 2. The bottom of the insulating layer 2 is provided with a conductive adhesive layer 3. An electrode sheet 4 is embedded in the middle of the conductive adhesive layer 3. The top of the electrode sheet 4 is connected with a contact conductive component 5. A protective film 6 is arranged at the bottom of the conductive adhesive layer 3. The top of the medical gauze 1 is provided with a mounting frame 7. The inside of the mounting frame 7 is connected with a stimulator main unit 8. The front and rear sides inside the mounting frame 7 and the front and rear ends of the stimulator main unit 8 are limited by an alignment component 9. The top of the stimulator main unit 8 is provided with a control panel 10. The right side of the front end of the mounting frame 7 is provided with a first fixing ring 11. The right side of the rear end of the mounting frame 7 is provided with a second fixing ring 12. The right end of the stimulator main unit 8 is connected with a quick-release component 13. A connection groove 14 is horizontally opened in the left half of the bottom of the stimulator main unit 8. A conductive plate 15 is installed at the right end inside the connection groove 14. The contact conductive component 5 includes a conductive rod 501, a movable head 502, and a first spring 503. The top of the electrode sheet 4 is connected with a conductive rod 501. The conductive rod 501 passes through the insulating layer 2, the medical gauze 1, and the lower end of the mounting frame 7. The inside of the upper end of the conductive rod 501 is movably connected with a movable head 502. A first spring 503 is installed at the bottom of the movable head 502. The top end of the movable head 502 is in contact with the conductive plate 15, which is convenient for realizing the connection of the circuit. The alignment component 9 includes an alignment groove 901 and a convex strip 902. Alignment grooves 901 are opened on the front and rear sides inside the alignment component 9. Convex strips 902 are arranged at the front and rear ends of the stimulator main unit 8. The convex strips 902 are slidably connected with the alignment grooves 901, which plays a guiding and limiting effect and is convenient for installation and disassembly.

[0024] Please refer to Figure 5 , in this embodiment, the quick-release component 13 includes a fixing frame 1301 and a first locking tongue 1302. The right end of the stimulator main unit 8 is connected with a fixing frame 1301. The front end inside the fixing frame 1301 is movably connected with a first locking tongue 1302. The front end of the first locking tongue 1302 is connected with the inner side of the first fixing ring 11 to achieve locking. The quick-release component 13 includes a second locking tongue 1303. The rear end inside the fixing frame 1301 is movably connected with a second locking tongue 1303. The rear end of the second locking tongue 1303 is connected with the inner side of the second fixing ring 12 to achieve a locking effect. The quick-release component 13 includes a first dial plate 1304, a second dial plate 1305, and a second spring 1306. The right end of the first locking tongue 1302 is installed with a first dial plate 1304. The right end of the second locking tongue 1303 is connected with a second dial plate 1305. A second spring 1306 is installed between the first locking tongue 1302 and the second locking tongue 1303. By moving the first dial plate 1304 and the second dial plate 1305 towards each other, the second spring 1306 is compressed until the first locking tongue 1302 disengages from the first fixing ring 11 and the second locking tongue 1303 disengages from the second fixing ring 12. At this time, unlocking is achieved. Reversing the above steps can perform assembly, realizing the function of quick disassembly and assembly, and improving the use flexibility and efficiency.

[0025] When working, tear off the protective film 6, attach the conductive adhesive layer 3 to the body, and then stimulate the body through the electrode piece 4. Inside the upper end of the conductive rod 501, there is a movable head 502 movably connected. At the bottom of the movable head 502, there is a first spring 503. The top of the movable head 502 is in contact with the conductive plate 15, which is convenient for realizing the connection of the circuit. On the front and rear ends of the stimulator host 8, there are convex strips 902. The convex strips 902 are slidably connected with the alignment grooves 901, which play a guiding and limiting effect and are convenient for installation and disassembly. Move the first dial plate 1304 and the second dial plate 1305 towards each other to compress the second spring 1306 until the first locking tongue 1302 disengages from the first fixing ring 11 and the second locking tongue 1303 disengages from the second fixing ring 12. At this time, unlocking is achieved. Reversing the above steps can perform assembly, realizing the function of quick disassembly and assembly, and improving the flexibility and efficiency of use.

[0026] Through the above steps, by setting the contact conductive component 5, the alignment component 9, and the quick disassembly component 13, quick disassembly and assembly can be realized, improving the flexibility and efficiency of use, so as to solve the problem that the patch structure of the common muscle stimulator is usually docked through various cable plugs, lacking a quick disassembly structure, and the operation is relatively cumbersome, resulting in the flexibility and efficiency of use remaining to be improved.

[0027] The above has described the embodiments of the present invention in detail with reference to the drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can also be made without departing from the purpose of the present invention.

Claims

1. A patch structure for a muscle stimulator, comprising a medical gauze (1), characterized in that: The bottom of the medical gauze (1) is connected to an insulating layer (2), a conductive adhesive layer (3) is installed at the bottom of the insulating layer (2), an electrode sheet (4) is embedded in the middle of the conductive adhesive layer (3), a contact conductive component (5) is connected to the top of the electrode sheet (4), a protective film (6) is arranged at the bottom of the conductive adhesive layer (3), a mounting frame (7) is installed at the top of the medical gauze (1), a stimulator main unit (8) is connected inside the mounting frame (7), the front and rear sides inside the mounting frame (7) and the front and rear ends of the stimulator main unit (8) are limited by a positioning component (9), a control panel (10) is installed at the top of the stimulator main unit (8), a first fixing ring (11) is installed at the right side of the front end of the mounting frame (7), a second fixing ring (12) is arranged at the right side of the rear end of the mounting frame (7), a quick release component (13) is connected to the right end of the stimulator main unit (8), a connecting groove (14) is horizontally opened at the left half of the bottom of the stimulator main unit (8), and a conductive plate (15) is installed at the right end of the connecting groove (14).

2. A patch structure for a muscle stimulator according to claim 1, characterized in that: The contact conductive component (5) comprises a conductive rod (501), a movable head (502), and a first spring (503); the top of the electrode sheet (4) is connected to the conductive rod (501), the conductive rod (501) passes through the insulating layer (2), the medical gauze (1) and the lower end of the mounting frame (7), the upper end of the conductive rod (501) is movably connected to the movable head (502), the bottom of the movable head (502) is installed with the first spring (503), and the top of the movable head (502) is in contact with the conductive plate (15).

3. A patch structure for a muscle stimulator according to claim 1, characterized in that: The alignment component (9) comprises an alignment groove (901) and a convex strip (902); the alignment groove (901) is provided on the front and rear sides of the alignment component (9), and the stimulator main unit (8) is provided with a convex strip (902) on the front and rear ends, and the convex strip (902) is slidably connected to the alignment groove (901).

4. A patch structure for a muscle stimulator according to claim 1, characterized in that: The quick-release assembly (13) comprises a fixing frame (1301) and a first locking tongue (1302); the right end of the stimulator main unit (8) is connected to the fixing frame (1301), the front end of the fixing frame (1301) is movably connected to the first locking tongue (1302), and the front end of the first locking tongue (1302) is connected to the inner side of the first fixing ring (11).

5. A patch structure for a muscle stimulator according to claim 4, characterized in that: The quick-release assembly (13) comprises a second locking tongue (1303); the second locking tongue (1303) is movably connected to the rear end of the interior of the fixing frame (1301), and the rear end of the second locking tongue (1303) is connected to the inner side of the second fixing ring (12).

6. A patch structure for a muscle stimulator according to claim 1, characterized in that: The quick-release assembly (13) comprises a first shift plate (1304), a second shift plate (1305), and a second spring (1306); the first shift plate (1304) is installed at the right end of the first locking tongue (1302), the second shift plate (1305) is connected to the right end of the second locking tongue (1303), and the second spring (1306) is installed between the first locking tongue (1302) and the second locking tongue (1303).