Health-care patch for dredging collaterals and activating meridians
By designing connecting grooves, breathable grooves, and a ring-shaped bonding structure in the meridian-clearing plaster, the problems of breathability and bonding stability are solved, achieving close contact between the drug layer and the skin, breathability and sweating, and bonding stability, making it suitable for sensitive skin or long-term use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI DONGLIDA HEALTH RES INST CO LTD
- Filing Date
- 2025-05-27
- Publication Date
- 2026-07-31
AI Technical Summary
Existing medicated plasters for promoting blood circulation and relieving muscle tension lack breathable structures, making it difficult for heat and sweat on the skin surface to be released quickly. Prolonged use can easily lead to stuffiness and sweating. In addition, the lack of multiple fitting structures makes it easy for the corners to peel up and for the plaster to fall off.
The base layer is designed with connecting grooves and ventilation grooves. The ventilation grooves are funnel-shaped and combined with the ventilation layer to form a staggered ventilation net. The base layer and the adhesive ring form a ring-shaped bonding structure. The medicinal layer formula includes ingredients such as Cyperus rotundus, Angelica pubescens, and Panax notoginseng. The four corners of the base layer are designed with rounded corners.
It achieves close contact between the drug layer and the skin, enhances the stability of the patch, prevents it from falling off, and the breathable grooves quickly expel heat and sweat, keeping the application environment clean and comfortable, making it suitable for sensitive skin or long-term use.
Smart Images

Figure CN224572999U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of health care patch technology, specifically a health care patch for promoting blood circulation and relieving muscle tension. Background Technology
[0002] Modern people often sit at their desks for long periods and look down at their phones, which can easily lead to stiff neck and shoulders, lumbar strain, cervical spondylosis, and lumbar muscle strain. Habits such as living in air-conditioned environments, consuming cold drinks, and wearing thin clothing can also allow cold and dampness to invade the body, causing joint pain, muscle stiffness, and numbness in the limbs. As the public's health awareness increases, the demand for preventive health care products is rising, and health care patches are often used in conjunction with these products.
[0003] Health patches can relieve muscle fatigue and soreness by stimulating acupoints and promoting local blood circulation. Compared with oral medications, health patches are a type of external physical therapy with fewer side effects, making them suitable for long-term conditioning. They are especially beneficial for the elderly, those with weak gastrointestinal function, or those concerned about the burden of medication on the liver and kidneys. Muscle and Bone Meridian Unblocking Patches are one such type, a product of combining modern lifestyles with traditional Chinese medicine theory. Their core value lies in improving meridian blockages and promoting blood circulation through physical stimulation and drug penetration, safely and conveniently relieving pain and fatigue, and meeting the health needs of different groups.
[0004] Chinese Utility Model Patent Publication No. CN202920662U discloses a medicated plaster for promoting blood circulation and relieving muscle tension. This plaster is ready to use after peeling off the protective layer. Once the active ingredients have fully penetrated the body, the plaster is removed, the backing layer is turned over to reveal the used side of the plaster, and the unused side is applied to the affected area, allowing both sides of the plaster to exert their medicinal effects. While its structure is simple, convenient to use, and provides long-lasting efficacy, avoiding drug waste, this medicated plaster lacks a breathable design. This prevents the rapid release of heat and sweat from the skin surface during application, leading to stuffiness and sweating with prolonged use, causing the plaster to detach. Furthermore, the lack of multiple adhesion mechanisms makes it prone to corner peeling and detachment, resulting in poor practicality. Summary of the Invention
[0005] The technical problem to be solved by this utility model is to provide a health care patch for promoting blood circulation and removing blood stasis, which can effectively solve the problems in the prior art.
[0006] The technical solution adopted by this utility model is: a health care patch for promoting blood circulation and relieving muscle tension, including a base layer and a release paper covering the base layer. A connecting groove is opened on the side of the base layer near the release paper and at the outer edge of the base layer. A medicine layer is provided on the side of the base layer near the release paper. A protective layer is provided on the end of the medicine layer away from the base layer. A lug is folded and provided near the edge of the release paper. A breathable layer is fixedly installed on the side of the base layer away from the release paper. A breathable groove is opened through the end of the breathable layer near the base layer. The diameter of the breathable groove at the end near the base layer is larger than that at the end away from the base layer.
[0007] Preferably, a through groove is formed on the side of the base layer away from the release paper, and the through groove is the same size as the drug layer.
[0008] Through the above technical solution, the through-channel design can limit the position of the drug layer, which can facilitate rapid positioning during the production of the health care patch. Furthermore, the through-channel combined with the design of the breathable layer, due to the microscopic breathable grooves on its surface, makes it easy for users to distinguish the position of the drug layer, thereby making it easier to apply the entire health care patch to the affected limb and improving its practicality.
[0009] Preferably, the base layer is provided with an adhesive ring that is integral with the base layer and has the same shape as the outer edge of the base layer through the connecting groove, and the side of the base layer near the release paper is provided with an adhesive surface flush with the adhesive ring.
[0010] The above technical solution, through the design of the adhesive ring, provides edge fixing force, forming a ring-shaped adhesive structure, preventing the patch edge from rolling up due to friction during movement. At the same time, the adhesive surface expands the adhesion of the central area, allowing the drug layer to come into close contact with the skin. The two work together to achieve a dual fixing effect of edge reinforcement and central adhesion, enhancing the stability of the patch. When applied to joints or other active areas, it can prevent the patch from falling off due to limb movement.
[0011] Preferably, the side of the base layer away from the release paper has a folding groove with the same shape as the lug, and the folding groove is adapted to the lug.
[0012] Through the above technical solution, the cooperation between the folding groove and the lug can form a slot-type auxiliary peeling structure. When tearing off the release paper, the fingers can pinch the lug and apply force along the direction of the folding groove. The folding groove guides the release paper to peel off smoothly, avoiding wrinkles in the drug layer or contamination of the adhesive surface due to direct tearing, which would affect subsequent application.
[0013] Preferably, both the base layer and the protective layer are non-woven fabrics, and multiple identical air-permeable grooves are provided, with the coverage areas of the multiple air-permeable grooves being opposite to those of the drug layer and not overlapping.
[0014] Through the above technical solution, the ventilation grooves are funnel-shaped, with a larger diameter at the end closer to the base layer. Multiple ventilation grooves cover areas opposite to the drug layer and do not overlap, forming a staggered ventilation mesh. During application, heat and sweat on the skin surface can be quickly discharged through the wide end of the ventilation grooves, while the narrow end restricts the entry of external dust. This ensures the skin's respiratory function under the patch and prevents the drug layer from being contaminated by impurities, maintaining a clean and comfortable application environment.
[0015] Preferably, the medicinal layer is made from Cyperus rotundus, Angelica pubescens, Panax notoginseng, Clematis chinensis, Sargentodoxa cuneata, Achyranthes bidentata, Dipsacus asper, Corydalis yanhusuo, Angelica sinensis, Ligusticum chuanxiong, Gentiana macrophylla, and borneol.
[0016] Through the above technical solution, the drug layer uses *Zhuifengsan*, *Xiangfu*, and *Duhuo* to dispel wind and dampness, unblock meridians and relieve pain; *Sanqi*, *Weilingxian*, and *Daxueteng* to invigorate blood circulation, remove blood stasis, and unblock tendons and bones; *Niuxi* and *Xuduan* to tonify the liver and kidneys and strengthen tendons and bones; *Yanhusuo*, *Danggui*, and *Chuanxiong* to promote qi and blood circulation, disperse blood stasis and relieve pain; and *Qinjiu* to dispel wind and dampness and relieve pain. Borneol provides cooling and transdermal absorption, guiding the drug to penetrate the skin. This approach targets both the obstruction of meridians and joint pain caused by wind-cold-dampness, and also addresses the root cause of liver and kidney deficiency. At the same time, the transdermal properties of borneol enhance drug absorption, achieving multiple effects.
[0017] Preferably, the four corners of the base layer are rounded, and the four corners of the adhesive ring are the same as the four corners of the base layer.
[0018] With the above technical solution, the base layer and the four corners of the adhesive ring are designed with rounded corners to avoid the sharpness of right-angled edges. When applied, the rounded corner structure reduces skin friction and irritation, making it especially suitable for sensitive skin or long-term application scenarios. The rounded corners of the adhesive ring match the base layer, making the edge adhesive force distribution more even and avoiding adhesive failure or skin redness due to stress concentration at right angles, thus improving the safety and comfort of the patch.
[0019] Compared with the prior art, this utility model provides a health care patch for promoting blood circulation and removing blood stasis, which has the following characteristics:
[0020] Beneficial effects:
[0021] 1. This type of health care patch for promoting blood circulation and relieving muscle tension, through the design of the adhesive ring, provides edge fixing force and forms a ring-shaped adhesive structure, preventing the patch edges from curling up due to friction during movement. At the same time, the adhesive surface expands the adhesion of the central area, allowing the drug layer to come into close contact with the skin. The two work together to achieve a dual fixing effect of edge reinforcement and central adhesion, enhancing the stability of the patch. When applied to joints or other active areas, it can prevent the health care patch from falling off due to limb movement.
[0022] 2. This type of health care patch for promoting blood circulation and removing blood stasis has a funnel-shaped ventilation groove, with a larger diameter at the end closest to the base layer. Multiple ventilation grooves cover areas opposite to the drug layer and do not overlap, forming a staggered ventilation network. When applied, heat and sweat from the skin surface can be quickly discharged through the wide end of the ventilation groove, while the narrow end restricts the entry of external dust. This ensures the skin's respiratory function under the patch and prevents the drug layer from being contaminated by impurities, maintaining a clean and comfortable application environment. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 1 ;
[0024] Figure 2 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 2 ;
[0025] Figure 3 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 3 ;
[0026] Figure 4 This is a schematic diagram of the explosive structure of this utility model. Figure 1 ;
[0027] Figure 5 This is a schematic diagram of the explosive structure of this utility model. Figure 2 ;
[0028] Figure 6 This is a schematic diagram showing the disassembled structure of the base layer and the breathable layer of this utility model;
[0029] Figure 7 This is a three-dimensional structural diagram of the breathable layer and breathable groove of this utility model.
[0030] The components are: 1. base layer; 2. connecting groove; 3. adhesive ring; 4. adhesive surface; 5. through groove; 6. drug layer; 7. protective layer; 8. release paper; 9. lug; 10. folding groove; 11. breathable layer; 12. breathable groove. Detailed Implementation
[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0032] Example 1: As Figure 1-2As shown, the present invention provides a health care patch for promoting blood circulation and relieving muscle tension, including a base layer 1 and a release paper 8 covering the base layer 1. A connecting groove 2 is provided on the side of the base layer 1 near the release paper 8 and at the outer edge of the base layer 1. A medicine layer 6 is provided on the side of the base layer 1 near the release paper 8. A protective layer 7 is provided at the end of the medicine layer 6 away from the base layer 1. A lug 9 is folded and provided near the edge of the release paper 8. A breathable layer 11 is fixedly installed on the side of the base layer 1 away from the release paper 8. A breathable groove 12 is opened through the end of the breathable layer 11 near the base layer 1. The diameter of the end of the breathable groove 12 near the base layer 1 is larger than that of the end away from the base layer 1.
[0033] Specifically, a through groove 5 is provided on the side of the base layer 1 away from the release paper 8. The through groove 5 is the same size as the drug layer 6. The advantage is that the through groove 5 can limit the position of the drug layer 6, which can facilitate quick positioning during the production of the health patch. In addition, the through groove 5 is combined with the design of the breathable layer 11. Because its surface has microscopic breathable grooves 12, it is easy for users to distinguish the position of the drug layer 6, so as to facilitate the application of the entire health patch to the affected limb and improve its practicality.
[0034] Specifically, the base layer 1 is provided with an adhesive ring 3 that is integral with the base layer 1 and has the same shape as the outer edge of the base layer 1 via the connecting groove 2. The side of the base layer 1 closest to the release paper 8 is provided with an adhesive surface 4 that is flush with the adhesive ring 3. The advantage is that the design of the adhesive ring 3 can provide edge fixing force, forming a ring-shaped adhesive structure, preventing the edge of the patch from rolling up due to friction during movement. At the same time, the adhesive surface 4 expands the adhesion of the middle area, allowing the drug layer 6 to be in close contact with the skin. The two work together to achieve a dual fixing effect of edge reinforcement and center adhesion, enhancing the stability of the patch. When applied to joints or other active areas, it can prevent the patch from falling off due to limb movement.
[0035] Specifically, the side of the base layer 1 away from the release paper 8 has a folding groove 10 with the same shape as the lug 9. The folding groove 10 is adapted to the lug 9. The advantage is that the cooperation between the folding groove 10 and the lug 9 can form a slot-type auxiliary peeling structure. When tearing off the release paper 8, the fingers can pinch the lug 9 and apply force along the direction of the folding groove 10. The folding groove 10 guides the release paper 8 to peel off smoothly, avoiding wrinkles in the drug layer 6 or contamination of the adhesive surface 4 due to direct tearing, which would affect subsequent application.
[0036] Example 2: Figure 2-7 As shown, this is an improvement on the previous embodiment.
[0037] Specifically, both the base layer 1 and the protective layer 7 are made of non-woven fabric. Multiple ventilation grooves 12 are provided. The coverage areas of the multiple ventilation grooves 12 are opposite to those of the drug layer 6 and do not overlap. The advantage is that the ventilation grooves 12 are funnel-shaped, with a larger diameter at the end closer to the base layer 1. The multiple ventilation grooves 12 and the drug layer 6 have opposite coverage areas and do not overlap, forming a staggered ventilation mesh. When applied, the heat and sweat on the skin surface can be quickly discharged through the wide end of the ventilation groove 12, while the narrow end restricts the entry of external dust. This ensures the skin's breathing function under the patch and prevents the drug layer 6 from being contaminated by impurities, maintaining a clean and comfortable application environment.
[0038] Specifically, the 6th layer of medicine is made from *Gentiana macrophylla*, *Cyperus rotundus*, *Angelica pubescens*, *Panax notoginseng*, *Clematis chinensis*, *Sargentodoxa cuneata*, *Achyranthes bidentata*, *Dipsacus asper*, *Corydalis yanhusuo*, *Angelica sinensis*, *Ligusticum chuanxiong*, *Gentiana macrophylla*, and borneol. Its advantages are: *Gentiana macrophylla*, *Cyperus rotundus*, and *Angelica pubescens* dispel wind and dampness, unblock meridians, and relieve pain; *Panax notoginseng*, *Clematis chinensis*, and *Sargentodoxa cuneata* invigorate blood circulation, remove blood stasis, and unblock tendons and bones; *Achyranthes bidentata* and *Dipsacus asper* tonify the liver and kidneys and strengthen tendons and bones; *Corydalis yanhusuo*, *Angelica sinensis*, and *Ligusticum chuanxiong* promote qi and blood circulation, disperse blood stasis, and relieve pain; *Gentiana macrophylla* dispels wind and dampness and relieves pain; and borneol provides cooling and transdermal absorption, guiding the medicine to penetrate the skin. This not only targets the obstruction of meridians and joint pain caused by wind-cold-dampness, but also addresses the root cause of liver and kidney deficiency. Furthermore, the transdermal properties of borneol enhance drug absorption, achieving multiple effects.
[0039] Specifically, the four corners of the base layer 1 are rounded, and the four corners of the adhesive ring 3 are the same as those of the base layer 1. The advantage is that the rounded corners of the base layer 1 and the adhesive ring 3 avoid the sharpness of right angle edges. When applied, the rounded corner structure reduces skin friction and irritation, making it especially suitable for sensitive skin or long-term application scenarios. The rounded corners of the adhesive ring 3 match the base layer 1, making the edge adhesive force distribution more even, avoiding adhesive failure or skin redness due to stress concentration at right angles, and improving the safety and comfort of the patch.
[0040] Working Principle: During use, the design of the through groove 5 allows it to limit the position of the drug layer 6, facilitating rapid positioning during the production of the health patch. Furthermore, the through groove 5, combined with the breathable layer 11, features microscopic breathable grooves 12 on its surface, making it easy for users to identify the position of the drug layer 6 and thus facilitating the application of the entire health patch to the affected limb, improving its practicality. The design of the adhesive ring 3 provides edge fixing force, forming a ring-shaped adhesive structure, preventing the patch edges from curling up due to friction. Simultaneously, the adhesive surface 4 expands the adhesion in the central area, allowing the drug layer... 6. In close contact with the skin, the two work together to achieve a dual fixation effect of edge reinforcement and central adhesion, enhancing the stability of the patch. When applied to joints or other active areas, it prevents the patch from falling off due to limb movement. The folding groove 10 and the lug 9 work together to form a slot-type auxiliary peeling structure. When tearing off the release paper 8, fingers can pinch the lug 9 and apply force along the folding groove 10, using the folding groove 10 to guide the release paper 8 to peel off smoothly, avoiding wrinkles in the drug layer 6 or contamination of the adhesive surface 4 caused by direct tearing, thus affecting subsequent application. The ventilation groove 12 is funnel-shaped, with a larger diameter at the end closer to the base layer 1, allowing for more... The ventilation grooves 12 and the drug layer 6 have opposite coverage areas and do not overlap, forming a staggered ventilation mesh. During application, heat and sweat from the skin surface can be quickly discharged through the wide end of the ventilation grooves 12, while the narrow end restricts the entry of external dust. This ensures the skin's respiratory function under the patch while preventing the drug layer 6 from being contaminated by impurities, maintaining a clean and comfortable application environment. The drug layer 6 uses herbs such as *Zhuifengsan*, *Xiangfu*, and *Duhuo* to dispel wind and dampness, and to unblock meridians and relieve pain; *Sanqi*, *Weilingxian*, and *Daxueteng* to invigorate blood circulation, remove blood stasis, and unblock meridians; *Niuxi* and *Xuduan* to tonify the liver and kidneys and strengthen tendons and bones; *Yanhusuo*, *Danggui*, and *Chuanxiong* to promote qi and blood circulation, disperse blood stasis, and relieve pain; and *Qinjiu* to dispel wind and dampness. It relieves pain and numbness; borneol has a cooling and transdermal effect, guiding the medicine to penetrate the skin. It not only targets the blockage of meridians and joint pain caused by wind, cold and dampness, but also addresses the root cause of liver and kidney deficiency. At the same time, the transdermal properties of borneol enhance the absorption rate of the medicine, achieving multiple effects. The four corners of the base layer 1 and the adhesive ring 3 are designed with rounded corners to avoid the sharpness of right angles. When applied, the rounded corner structure reduces skin friction and irritation, making it especially suitable for sensitive skin or long-term application. The rounded corners of the adhesive ring 3 match the base layer 1, making the edge adhesion force more evenly distributed, avoiding adhesion failure or skin redness due to stress concentration at right angles, thus improving the safety and comfort of the patch.
[0041] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A health-care patch for activating meridians and collaterals, comprising a base layer (1) and a release paper (8) covering the base layer (1), characterized in that: A connecting groove (2) is provided on the side of the base layer (1) close to the release paper (8) and at the outer edge of the base layer (1). A drug layer (6) is provided on the side of the base layer (1) close to the release paper (8). A protective layer (7) is provided on the end of the drug layer (6) away from the base layer (1). A lug (9) is folded and provided near the edge of the release paper (8). A breathable layer (11) is fixedly installed on the side of the base layer (1) away from the release paper (8). A breathable groove (12) is opened through the end of the breathable layer (11) close to the base layer (1). The diameter of the end of the breathable groove (12) close to the base layer (1) is larger than that of the end away from the base layer (1).
2. The health-care patch for activating meridians and collaterals according to claim 1, characterized in that: The base layer (1) has a through groove (5) on the side away from the release paper (8), and the through groove (5) is the same size as the drug layer (6).
3. The health-care patch for relieving muscle and bone pain according to claim 1, wherein the patch is characterized by: The base layer (1) is provided with an adhesive ring (3) that is integral with the base layer (1) and has the same shape as the outer edge of the base layer (1) through the connecting groove (2). The side of the base layer (1) close to the release paper (8) is provided with an adhesive surface (4) that is flush with the adhesive ring (3).
4. The health-care patch for relieving muscle and bone pain according to claim 1, wherein: The base layer (1) has a folding groove (10) on the side away from the release paper (8) that is the same shape as the lug (9), and the folding groove (10) is adapted to the lug (9).
5. The health-care patch for relieving muscle and bone pain according to claim 1, wherein the patch is characterized by: Both the base layer (1) and the protective layer (7) are non-woven fabrics. Multiple air-permeable grooves (12) are provided. The coverage of multiple air-permeable grooves (12) is opposite to that of the drug layer (6) and the coverage does not overlap.
6. The health-care patch for relieving muscle and bone pain according to claim 3, wherein: The base layer (1) has rounded corners at its four corners, and the four corners of the adhesive ring (3) are the same as those of the base layer (1).