A swelling pain relieving and analgesic patch

By using a modularly designed breathable dressing and an inflatable ring-shaped airbag, the problems of cumbersome replacement and loose adhesion of traditional pain relief patches are solved, enabling rapid replacement and reuse of the pain relief patches, improving the penetration efficiency of the plaster and patient comfort.

CN224573000UActive Publication Date: 2026-07-31孔令杰
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
孔令杰
Filing Date
2025-08-19
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Traditional pain relief patches have a simple structure, which means they need to be replaced after the medicated plaster is absorbed, affecting patient comfort and efficiency. They are also prone to loosening from the skin, have limited function, and are difficult to reuse.

Method used

The modular design of the breathable dressing and the inflatable ring-shaped airbag, combined with the zipper-type switch cloth, allows for quick replacement and pressurization of the main body of the plaster. It is fixed with Velcro to form a reusable dressing structure.

Benefits of technology

It enables quick replacement and reuse of pain relief patches, improves the penetration efficiency of the plaster, reduces damage to the skin, and enhances the convenience and effectiveness of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of pain relief patches, and more particularly to a pain relief patch for reducing swelling and pain. The technical solution is as follows: A pain relief patch for reducing swelling and pain includes a first breathable patch, an outer connecting cloth, a second breathable patch, an inner connecting cloth, a support patch, a switch cloth, a ring-shaped air bladder, and a zipper pull. The first and second breathable patches are connected by the outer and inner connecting cloths. This utility model, through the zipper-type switch cloth combined with the modularly designed plaster body, first and second breathable patches, allows for quick replacement of the plaster body while the patient is wearing the pain relief patch, making the patch reusable. The inflatable ring-shaped air bladder can apply pressure to the plaster body at the affected area as needed by the patient, thereby improving the penetration effect and efficiency of the plaster body into the affected area. This solves the problems of existing pain relief patches being difficult to reuse, having a cumbersome replacement process, and limited functionality.
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Description

Technical Field

[0001] This utility model belongs to the field of pain relief patches, specifically relating to a pain relief patch for reducing swelling and relieving pain. Background Technology

[0002] Swelling-reducing and pain-relieving patches are a type of external medicine used to relieve swelling and pain. They are typically used to relieve pain and pain caused by local muscle injuries, such as muscle strains, joint swelling, soft tissue injuries, and muscle pain.

[0003] In existing technologies, most pain-relieving patches are one-piece structures with a wide range of applications, commonly used on the legs or arms. However, due to their integrated structure, traditional pain-relieving patches often require replacement along with the patch after the medicated plaster is fully absorbed by the affected area, making them disposable products. Furthermore, the traditional plaster adheres to the patient's skin via an adhesive, often causing pain and affecting the efficiency of replacement. The simple structure of traditional pain-relieving patches also results in poor adhesion, easily loosening after sweating, leading to inadequate absorption and treatment. Therefore, we propose a swelling-reducing and pain-relieving patch. Consequently, this utility model proposes an edible mushroom cultivation rack to solve the problems existing in the prior art. Utility Model Content

[0004] To overcome the problems of existing pain relief patches being difficult to reuse, having a cumbersome replacement process, and limited functionality.

[0005] The technical solution of this utility model is as follows: a swelling-reducing and pain-relieving patch, comprising a first breathable patch, an outer connecting fabric, a second breathable patch, and an inner connecting fabric, and further comprising a support patch, a switch fabric, a ring-shaped airbag, and a zipper pull. The outer connecting fabric and the inner connecting fabric connect the first and second breathable patches. The ring-shaped airbag is disposed between the outer and inner connecting fabrics, and an air inlet valve is installed at the lower edge of the ring-shaped airbag. Fasteners are fixed to the four corner edges of the front end of the second breathable patch. The support patch is disposed within the inner connecting fabric. The inner wall of the connecting fabric has a second through hole at the four corners of the front and rear ends of the support patch. The main body of the plaster is installed at the center of the rear end of the support patch. The front and rear ends of the second breathable patch and the first breathable patch have a second groove and a first groove, respectively. A switch fabric is installed in the first groove. The left end of the switch fabric is sewn to the left edge of the first groove. The upper and lower ends of the switch fabric are equipped with a second zipper. The inner walls of the upper and lower ends of the first groove are equipped with a first zipper. Zipper heads are provided on the first and second zippers.

[0006] Preferably, the second breathable dressing has a first through hole at each of the four corners at both ends, and a limiting groove is provided at each of the four corners of the inner wall of the annular airbag. The two ends of the two sets of elastic ropes pass through the first through hole and the limiting groove and are installed at the rear edge of the first breathable dressing.

[0007] Preferably, the two sets of elastic cords are symmetrically distributed from left to right, and the outer walls of the two sets of elastic cords are fixed with two sets of Velcro that are symmetrically distributed from top to bottom, and the two sets of Velcro are compatible.

[0008] Preferably, the four corners of the back end of the switch cloth are fitted with buckle grooves, the buckle pins pass through the second through hole and fit into the buckle grooves, and the main body of the plaster passes through the second groove to contact the patient's skin.

[0009] Preferably, the outer wall of the switch cloth is attached to the inner wall of the first groove, and the rear end of the switch cloth is attached to the front end of the carrier patch.

[0010] Preferably, the first zipper and the second zipper engage with each other, and the zipper head is adapted to the first zipper and the second zipper.

[0011] Preferably, the inner connecting fabric and the outer connecting fabric are distributed inside and outside with gaps between them, the fasteners are located at the four corner edges of the second groove, and the air inlet valve penetrates the lower outer wall of the outer connecting fabric.

[0012] The beneficial effects of this utility model are:

[0013] 1. The zipper-style switch cloth, combined with the modular design of the plaster body, the first breathable dressing, and the second breathable dressing, allows for quick replacement of the plaster body while the patient is wearing the pain relief patch. The dressing body, consisting of the first breathable dressing, the second breathable dressing, the inner connecting cloth, and the outer connecting cloth, is reusable.

[0014] 2. The inflatable ring-shaped airbag can apply pressure to the main body of the plaster on the affected area according to the patient's needs when wearing it, so as to help improve the effect and efficiency of the plaster's penetration into the patient's affected area. Attached Figure Description

[0015] Figure 1 The diagram shown is a three-dimensional structural schematic of the swelling-reducing, pain-relieving patch of this utility model.

[0016] Figure 2 The diagram shown is a three-dimensional disassembled view of the swelling-reducing and pain-relieving patch of this utility model.

[0017] Figure 3 The diagram shown is a three-dimensional structural breakdown of the first breathable patch, the second breathable patch, the elastic cord, and the Velcro of the present invention for reducing swelling and relieving pain.

[0018] Figure 4The diagram shown is a three-dimensional structural disassembly of the switch cloth and zipper pull of the swelling-reducing and pain-relieving patch of this utility model.

[0019] Figure 5 The diagram shows a three-dimensional structural schematic of the switch cloth and the fastening groove of the swelling-reducing and pain-relieving patch of this utility model.

[0020] Figure 6 The diagram shown is a three-dimensional disassembled view of the outer connecting cloth, inner connecting cloth, and ring-shaped airbag of the present invention for reducing swelling and relieving pain.

[0021] Figure 7 The diagram shown is a three-dimensional disassembled schematic of the carrier patch and the main body of the plaster for reducing swelling and relieving pain according to this utility model.

[0022] Explanation of reference numerals in the attached drawings: 1-First breathable dressing, 2-Outer connecting fabric, 3-Second breathable dressing, 4-Switch fabric, 5-Bearing patch, 6-First zipper, 7-First groove, 8-Elastic cord, 9-Hook and loop fastener, 10-First through hole, 11-Second groove, 12-Snap fastener, 13-Second zipper, 14-Zipper head, 15-Snap groove, 16-Inner connecting fabric, 17-Air inlet valve, 18-Ring-shaped airbag, 19-Limiting groove, 20-Second through hole, 21-Plaster body. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] Please see Figures 1-7 This utility model provides an embodiment of an anti-swelling and analgesic patch, comprising a first breathable patch 1, an outer connecting fabric 2, a second breathable patch 3, and an inner connecting fabric 16, and further comprising a support patch 5, a switch fabric 4, a ring-shaped airbag 18, and a zipper pull 14. The outer connecting fabric 2 and the inner connecting fabric 16 connect the first breathable patch 1 and the second breathable patch 3. The ring-shaped airbag 18 is disposed between the outer connecting fabric 2 and the inner connecting fabric 16, and an air inlet valve 17 is installed at the lower edge of the ring-shaped airbag 18. Fasteners 12 are fixed to the four corner edges of the front end of the second breathable patch 3. The support patch 5 is provided with... A second through hole 20 is provided through the inner wall of the inner connecting fabric 16 and the four corner edges of the front and rear ends of the support patch 5. The plaster body 21 is installed at the center of the rear end of the support patch 5. The front and rear ends of the second breathable patch 3 and the first breathable patch 1 are respectively provided with a second groove 11 and a first groove 7. A switch fabric 4 is provided in the first groove 7. The left end of the switch fabric 4 is sewn to the left edge of the first groove 7. A second zipper 13 is installed at the upper and lower ends of the switch fabric 4. A first zipper 6 is installed on the inner wall of the upper and lower ends of the first groove 7. Zipper heads 14 are provided on the first zipper 6 and the second zipper 13.

[0025] The switch cloth 4 with a zipper-type switch, together with the modularly designed plaster body 21, first breathable dressing 1 and second breathable dressing 3, allows for quick replacement of the plaster body 21 while the patient is wearing the pain relief patch. The dressing body, composed of the first breathable dressing 1, second breathable dressing 3, inner connecting cloth 16 and outer connecting cloth 2, is reusable. The inflatable ring-shaped air bladder 18 can apply pressure to the plaster body 21 at the affected area as needed by the patient, thereby helping to improve the effectiveness and efficiency of the plaster body 21 in penetrating the patient's affected area.

[0026] Please see Figures 3-6 In this embodiment, a first through hole 10 is provided at the four corner edges of the front and rear ends of the second breathable patch 3. A limiting groove 19 is provided at the four corner edges of the inner wall of the annular airbag 18. The two ends of the two sets of elastic ropes 8 pass through the first through hole 10 and the limiting groove 19 and are installed at the rear end edge of the first breathable patch 1. The two sets of elastic ropes 8 can help to increase the range of extension of the two sets of hook and loop fasteners 9 to meet the needs of people with thicker legs or arms to wear the device. The two sets of elastic ropes 8 are symmetrically distributed from left to right. Two sets of hook and loop fasteners 9 are fixed to the outer wall of the two sets of elastic ropes 8. The two sets of hook and loop fasteners 9 are compatible and can be wrapped around the user's legs or arms in a cross manner and fixed by the mutual adhesion of the rough and barbed sides of the hook and loop fasteners 9.

[0027] Please see Figures 3-4 In this embodiment, the four corner edges of the rear end of the switch cloth 4 are fitted with fastening grooves 15. Fastening pins 12 pass through the second through hole 20 and are adapted to the fastening grooves 15. The plaster body 21 passes through the second groove 11 and contacts the patient's skin. The plaster body 21, passing through the second groove 11 and contacting the patient's skin, allows the analgesic ingredients to penetrate better into the affected area, avoiding waste of the effective analgesic and anti-swelling ingredients. The outer wall of the switch cloth 4 is fitted to the inner wall of the first groove 7, and the rear end of the switch cloth 4 is fitted to the front end of the supporting patch 5. The switch cloth 4 can... The first groove 7 is closed to prevent the carrier patch 5 and the plaster body 21 from falling out of the inner connecting cloth 16. The first zipper 6 and the second zipper 13 are engaged with each other. The zipper head 14 is adapted to the first zipper 6 and the second zipper 13. The mutually adapted and engaged zipper head 14 and the first zipper 6 and the second zipper 13 can fix or undo the switch cloth 4 in the first groove 7 according to the user's needs, so as to facilitate the user to replace the carrier patch 5 and the plaster body 21 in the inner connecting cloth 16.

[0028] Please see Figures 3-5In this embodiment, the inner connecting fabric 16 and the outer connecting fabric 2 are distributed inside and outside with gaps between them. The fasteners 12 are located at the four corner edges of the second groove 11. The air inlet valve 17 penetrates the lower outer wall of the outer connecting fabric 2. The air inlet valve 17 can be used with an air pump or other inflation tools to introduce outside air into the ring-shaped air bag 18, so that the ring-shaped air bag 18 expands, thereby making the first breathable patch 1, the second breathable patch 3 and the plaster body 21 fit the patient's skin better. At the same time, the tightness of wearing the device can be further adjusted according to the patient's needs.

[0029] When in use, first pull the two sets of zipper heads 14 to untie the switch cloth 4 from the first groove 7. Then, manually push the switch cloth 4 to the left and place the carrier patch 5 with the plaster body 21 installed at the rear end into the inner wall of the inner connecting cloth 16. Make the second through hole 20 on the carrier patch 5 pass through the buckle 12 for initial limiting and fixing. Then, reset the switch cloth 4 and install the buckle groove 15 on the switch cloth 4 onto the buckle 12 to fix the carrier patch 5 for a second time. Finally, reset the zipper head 14 so that the first zipper 6 and the second zipper 13 can be engaged and closed. When it is necessary to replace the plaster body 21, the operation is also as described above.

[0030] After installing the plaster body 21, apply the plaster surface to the affected area on the patient's leg or arm, and pull the two sets of elastic ropes 8 and Velcro 9 to cross and wrap them around the affected area. At the same time, stick the two sets of Velcro 9 together to fix them. Then, according to the user's needs, connect the air inlet valve 17 through an air pump or other inflation tool and inflate it to make the ring-shaped air bag 18 expand, so that the plaster body 21 can better fit the patient's affected area. At the same time, the first breathable dressing 1 and the second breathable dressing 3 can apply pressure to wrap the patient's affected area to improve the efficiency of the recovery.

[0031] Through the above steps, the zipper-type switch cloth 4, in conjunction with the modularly designed plaster body 21, the first breathable dressing 1, and the second breathable dressing 3, allows for quick replacement of the plaster body 21 while the patient is wearing the pain relief patch. This also makes the dressing body, composed of the first breathable dressing 1, the second breathable dressing 3, the inner connecting cloth 16, and the outer connecting cloth 2, reusable. The inflatable ring-shaped airbag 18 can apply pressure to the plaster body 21 at the affected area as needed by the patient, thereby enhancing the penetration effect and efficiency of the plaster body 21 into the patient's affected area. This solves the problems of existing pain relief patches being difficult to reuse, having a cumbersome replacement process, and limited functionality.

[0032] The embodiments of the present invention have been described in detail above with reference to the accompanying 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 be made without departing from the spirit of the present invention.

Claims

1. A kind of swelling analgesic analgesic patch, including first breathable dressing (1), outer layer connecting cloth (2), second breathable dressing (3) and inner layer connecting cloth (16), it is characterized by: It also includes a support patch (5), a switch cloth (4), a ring-shaped airbag (18), and a zipper pull (14). The first breathable patch (1) and the second breathable patch (3) are connected by an outer connecting cloth (2) and an inner connecting cloth (16). The ring-shaped airbag (18) is located between the outer connecting cloth (2) and the inner connecting cloth (16). An air inlet valve (17) is installed at the lower edge of the ring-shaped airbag (18). Fasteners (12) are fixed at the four corners of the front end of the second breathable patch (3). The support patch (5) is located on the inner wall of the inner connecting cloth (16). The four corners of the front and rear ends of the support patch (5) are penetrated. A second through hole (20) is provided. A plaster body (21) is installed at the center of the rear end of the support patch (5). The front and rear ends of the second breathable patch (3) and the first breathable patch (1) are respectively provided with a second groove (11) and a first groove (7). A switch cloth (4) is provided in the first groove (7). The left end of the switch cloth (4) is sewn to the left edge of the first groove (7). A second zipper (13) is installed at the upper and lower ends of the switch cloth (4). A first zipper (6) is installed on the inner wall of the upper and lower ends of the first groove (7). Zipper heads (14) are provided on the first zipper (6) and the second zipper (13).

2. The swelling and pain relieving and analgesic patch according to claim 1, characterized in that: The second breathable dressing (3) has a first through hole (10) at the four corner edges of the front and rear ends. The inner wall of the ring-shaped airbag (18) is provided with a limiting groove (19) at the four corner edges. The two ends of the two sets of elastic ropes (8) pass through the first through hole (10) and the limiting groove (19) and are installed at the rear edge of the first breathable dressing (1).

3. The swelling and pain relieving and analgesic patch according to claim 2, characterized in that: Two sets of elastic cords (8) are symmetrically distributed on the left and right. Two sets of Velcro (9) are fixed to the outer walls of the two sets of elastic cords (8) and are symmetrically distributed on the top and bottom. The two sets of Velcro (9) are compatible.

4. The swelling and pain relieving and analgesic patch according to claim 1, characterized in that: The four corner edges of the back end of the switch cloth (4) are fitted with buckle grooves (15), and the buckle pins (12) pass through the second through hole (20) and are matched with the buckle grooves (15). The main body of the plaster (21) passes through the second groove (11) and comes into contact with the patient's skin.

5. The swelling and pain relieving and analgesic patch according to claim 1, characterized in that: The outer wall of the switch cloth (4) is attached to the inner wall of the first groove (7), and the rear end of the switch cloth (4) is attached to the front end of the carrier patch (5).

6. The swelling and pain relieving and analgesic patch according to claim 1, characterized in that: The first zipper (6) and the second zipper (13) engage with each other, and the zipper head (14) is adapted to the first zipper (6) and the second zipper (13).

7. The swelling and pain relieving and alleviating patch according to claim 1, characterized in that: The inner connecting cloth (16) and the outer connecting cloth (2) are distributed inside and outside with gaps between them. The fasteners (12) are located at the four corner edges of the second groove (11). The air inlet valve (17) penetrates the lower outer wall of the outer connecting cloth (2).