Adjustable joint physiotherapy application device based on energy film

By combining a non-elastic substrate and freely cut fabric strips with a baby Velcro design, the problems of allergies and falling off of energy film patches are solved, achieving a comfortable and stable joint therapy effect.

CN224180105UActive Publication Date: 2026-05-01INSTITUTE OF PROCESS ENGINEERING CHINESE ACADEMY OF SCIENCES
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
INSTITUTE OF PROCESS ENGINEERING CHINESE ACADEMY OF SCIENCES
Filing Date
2025-05-30
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing methods of using energy membrane therapy patches can easily cause allergies or damage to sensitive skin, and the gauze bandage fixation method is prone to falling off, affecting the effectiveness of the treatment.

Method used

It uses a non-elastic base and free-cut fabric strips combined with baby Velcro loop and hook side design, and the tightness can be adjusted by Velcro connection to ensure that the energy film adheres tightly to the skin surface.

Benefits of technology

It provides a comfortable and stable application method, avoiding allergies and detachment, and is suitable for different groups of people, maintaining the therapeutic effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjustable physical therapy application device for each joint based on an energy film, which comprises a non-elastic base body, the front surface and the back surface of the non-elastic base body are configured to be magic tape hair surfaces, the front surface of the non-elastic base body is configured to be the magic tape hair surface, and the back surface of the non-elastic base body is configured to be a magic tape hook surface; the biological wave spectrum energy response film is arranged on the back surface of the non-elastic substrate; the freely-cut fabric long strips are connected to the left side and the right side of the non-elastic base body, and hook-and-loop fastener hook faces are arranged at the ends of the freely-cut fabric long strips. The hook-and-loop fastener loop surface is a baby hook-and-loop fastener loop surface, and the hook-and-loop fastener hook surface is a baby hook-and-loop fastener hook surface. According to the device disclosed by the utility model, the infant magic tape hook surface and the infant magic tape loop surface are mutually attached and connected, so that the tightness can be conveniently adjusted, the inner side surface of the fabric body can be pulled to move towards the skin of a human body, the physiotherapy application can be better adjusted, and the application can be more stably carried out.
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Description

A device for adjustable joint therapy patches based on an energy membrane Technical Field

[0001] This utility model relates to the field of sports protective gear technology, and in particular to a device for adjustable joint physiotherapy patches based on an energy membrane. Background Technology

[0002] The original method uses a bio-spectrum energy-responsive polar body functional electronic membrane, referred to as an energy membrane. It improves local microcirculation through the guidance of electret electric field, producing a physical auxiliary effect to alleviate discomfort in various joints after exercise. The conventional method of using the existing energy membrane is to fix it with adhesive or gauze. Adhesive fixation may cause allergic or damage symptoms in some people with sensitive skin, while gauze fixation is prone to falling off and tearing.

[0003] Therefore, based on the above-mentioned technical problems, those skilled in the art urgently need to develop a device for adjustable joint physiotherapy patches based on energy membranes. Summary of the Invention

[0004] The purpose of this invention is to provide an adjustable joint therapy patch based on an energy membrane, which solves the adverse effects of conventional energy membrane usage. The overall structure is comfortable and convenient to wear, and is suitable for use by various types of people.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] This invention relates to an adjustable joint therapy patch based on an energy membrane, the device comprising:

[0007] The non-elastic substrate has a front side configured with a hook and loop surface and a back side configured with a hook and loop surface.

[0008] A bio-spectral energy-responsive membrane disposed on the back side of the non-elastic substrate; and

[0009] Free-cut fabric strips are connected to the left and right sides of the non-elastic base, and the ends of the free-cut fabric strips are provided with Velcro hooks.

[0010] The hook and loop fastener side is made of baby hook and loop fastener material, and the hook and loop fastener side is made of baby hook and loop fastener material.

[0011] Furthermore, the inelastic substrate is configured as an inelastic substrate with a lip-shaped structure at both the upper and lower ends being arc-shaped surfaces;

[0012] The upper end of the non-elastic substrate is a concave arc-shaped surface formed by downward indentation;

[0013] The lower end of the non-elastic substrate is a downwardly convex arc-shaped surface;

[0014] The left and right sides of the non-elastic substrate form a first transition body with a gradually decreasing width at the position where it mates with the free-cut fabric strip.

[0015] Furthermore, the free-cut fabric strip is sewn to the first transition body on the corresponding side of the non-elastic substrate.

[0016] Furthermore, the free-cut fabric strip includes:

[0017] A second transition body connected to the first transition body; and

[0018] A fixed segment integrally formed with the second transition body;

[0019] The second transition body is configured such that its width gradually decreases from one end near the first transition body to the end away from the first transition body;

[0020] The fixed segment has a width that matches the smaller end of the width of the second transition body.

[0021] Furthermore, the free-cut fabric strip is divided into a first free-cut fabric strip at one end and a second free-cut fabric strip at the other end;

[0022] The second transition body of the first free-cut fabric strip is sewn and fixed together with the corresponding first transition body at the joint.

[0023] The second transition body of the second free-cut fabric strip and the corresponding first transition body are partially sewn together with a gap left.

[0024] The length of the gap is not less than the width of the fixed section, and the fixed section of the first free-cut fabric strip can pass through the gap.

[0025] Furthermore, the edges of the non-elastic substrate and the free-cut fabric strips on both sides are covered with binding ribs to form a binding structure.

[0026] Furthermore, the length of the bio-spectral energy-responsive membrane is 80 mm.

[0027] In the above technical solution, the adjustable joint physiotherapy patch based on an energy membrane provided by this utility model has the following beneficial effects:

[0028] The device of this invention features a hook and loop side for baby Velcro that are connected to each other, allowing for easy adjustment of tightness. This enables the device to pull the inner surface of the fabric towards the skin, facilitating better adjustment of the therapeutic patch and ensuring more stable application.

[0029] The energy film of this invention can be pasted onto the surface of a baby Velcro patch. Through the elasticity of the freely cut strips of fabric at both ends, the non-elastic substrate is pulled and tightly adhered to the surface of the human skin. When the user begins to apply the non-elastic substrate, the Velcro patch is pulled to fix the non-elastic substrate, which can easily and quickly make the patch unit adhere to the surface of the human skin. The energy film will not move or slip off, so it can achieve the effect of normal work and life, and also assist in health.

[0030] The device of this invention is easy to wear and apply to the limbs. It uses elastic skin-friendly fabric with Velcro to adjust the tightness and keep the energy membrane attached to the joint skin surface. Attached Figure Description

[0031] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.

[0032] Figure 1 is a front structural schematic diagram of an adjustable joint physiotherapy patch based on an energy membrane disclosed in an embodiment of this application;

[0033] Figure 2 is a schematic diagram of the back of an adjustable joint physiotherapy patch based on an energy membrane disclosed in an embodiment of this application.

[0034] Explanation of reference numerals in the attached figures:

[0035] 1. Inelastic substrate; 2. Free-cut fabric strips; 4. Bio-spectrum energy-responsive membrane; 5. Edge binding reinforcement;

[0036] 101. Concave arc surface; 102. Convex arc surface; 103. Baby Velcro hook surface; 104. First transition body;

[0037] 201. Second transition body; 202. Fixing section; 203. Baby Velcro hook side;

[0038] 301. Sewn part; 302. Gap. Detailed Implementation

[0039] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0040] See Figures 1 and 2;

[0041] This embodiment discloses a device for adjustable joint therapy patches based on an energy membrane, the device comprising:

[0042] The non-elastic substrate 1 has a front side configured as a hook and loop surface and a back side configured as a hook and loop surface.

[0043] A bio-spectral energy-responsive membrane 4 disposed on the back side of the inelastic substrate 1; and

[0044] Free-cut fabric strips 2 are connected to the left and right sides of the non-elastic base 1, and the ends of the free-cut fabric strips 2 are provided with Velcro hooks.

[0045] The hook and loop fasteners are made of baby hook and loop hook side 103, and the hook and loop fasteners are made of baby hook and loop hook side 203.

[0046] Specifically, this embodiment discloses a device suitable for physiotherapy patches for various joints, which includes an inelastic substrate 1 and an elastic, freely cut fabric strip 2. The inelasticity and elasticity depend on the properties of the material itself. An inelastic material is selected as the inelastic substrate 1 in this embodiment, and an elastic material is selected as the freely cut fabric strip 2 in this embodiment. In order to ensure comfort and meet the needs of different groups of people, the inelastic substrate 1 in this embodiment adopts a baby Velcro loop side on the front and a baby Velcro hook side 103 on the back. The ends of the freely cut fabric strip 2 are designed with corresponding baby Velcro hook sides 203. The baby Velcro is used to fix the corresponding joint after binding, maintain the structure of the device, and thus tightly adhere the internal bio-spectrum energy response membrane 4 to the outer skin surface of the joint.

[0047] The baby Velcro hook side 103 of this embodiment is cut in one piece based on the principle of three-dimensional cutting, ensuring the overall extensibility of the material. The fabric in contact with the skin is skin-friendly baby Velcro, soft and pliable, and the napped side is very suitable for adsorbing the bio-spectrum energy response membrane 4 of this embodiment. It can be reused and can still adhere to the energy membrane without falling off after multiple washes.

[0048] Preferably, the inelastic substrate 1 in this embodiment is configured as an inelastic substrate 1 with a lip-shaped structure having arc-shaped surfaces at both the upper and lower ends;

[0049] The upper end of the non-elastic substrate 1 is a concave arc-shaped surface 101 formed by downward indentation;

[0050] The lower end of the non-elastic substrate 1 is a downwardly protruding arc-shaped surface 102;

[0051] The left and right sides of the non-elastic substrate 1 form a first transition body 104 with a gradually decreasing width at the position where it matches the free-cut fabric strip 2.

[0052] First, this embodiment further defines the structure of the non-elastic substrate 1, which is designed to fit the joint and has a lip-shaped structure, that is, both its upper and lower ends are arc-shaped surfaces. Specifically, the upper end is a concave arc-shaped surface 101 and the lower end is a convex arc-shaped surface 102, thereby adapting to the upper and lower parts of the joint through the arc-shaped structure.

[0053] Secondly, in this embodiment, the free-cut fabric strip 2 is fixed to the first transition body 104 on the corresponding side of the non-elastic base 1 by sewing.

[0054] More specifically, the free-cut fabric strip 2 in this embodiment includes a second transition body 201 connected to the first transition body 103; and a fixed section 202 integrally formed with the second transition body 201;

[0055] The second transition body 201 is configured such that its width gradually decreases from one end near the first transition body 103 to the end away from the first transition body 103;

[0056] The fixed segment 202 is a structure whose width matches the smaller end of the second transition body 201.

[0057] To facilitate wearing and adapt to people with different joint dimensions, the free-cut fabric strip 2 in this embodiment is divided into a first free-cut fabric strip at one end and a second free-cut fabric strip at the other end. The second transition body 201 of the first free-cut fabric strip and the corresponding first transition body 103 are sewn together as a whole. The second transition body 201 of the second free-cut fabric strip and the corresponding first transition body 103 are partially sewn together with a gap 302. The length of the gap 302 is not less than the width of the fixed section 202, and the fixed section 202 of the first free-cut fabric strip can pass through the gap 302. When wearing, the first free-cut fabric strip can be passed through the gap 302 at the connection of the second free-cut fabric strip, especially allowing part of the first free-cut fabric strip to pass through, thereby adjusting the size of the overall circle to adapt to people with different joint dimensions and facilitate adjustment.

[0058] In order to make the overall structure of the device more integrated and more robust and durable, the edges of the non-elastic base 1 and the free-cut fabric strips 2 on both sides of this embodiment are covered by binding ribs 5 to form a binding structure.

[0059] Preferably, the length of the bio-spectral energy-responsive membrane 4 in this embodiment is 80 mm.

[0060] In the above technical solution, the adjustable joint physiotherapy patch based on an energy membrane provided by this utility model has the following beneficial effects:

[0061] The device of this utility model has a baby hook side 203 and a baby hook side 103 that are attached to each other, which makes it easy to adjust the tightness. It can pull the inner surface of the fabric body toward the human skin, which helps to better adjust the physiotherapy patch and help to apply it more stably.

[0062] The energy film of this invention can be attached to the hook side 103 of the baby Velcro. Through the elasticity of the fabric strips 2 cut at both ends, the non-elastic substrate 1 is pulled and tightly adhered to the surface of the human skin. When the user begins to apply the non-elastic substrate 1, the non-elastic substrate 1 is fixed by pulling the Velcro. The patch unit can be easily and quickly attached to the surface of the human skin without the energy film moving or slipping. It can achieve the effect of allowing normal work and life while also assisting in health.

[0063] The device of this invention is easy to wear and apply to the limbs. It uses elastic skin-friendly fabric with Velcro to adjust the tightness and keep the energy membrane attached to the joint skin surface.

[0064] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A device for adjustable joint therapy patches based on an energy membrane, characterized in that, The device includes: a non-elastic substrate (1), wherein the front side of the non-elastic substrate (1) is configured with a hook and loop surface and the back side is configured with a hook and loop surface; a bio-spectrum energy response membrane (4) disposed on the back side of the non-elastic substrate (1); and a free-cut fabric strip (2) connected to the left and right sides of the non-elastic substrate (1), wherein the ends of the free-cut fabric strip (2) are provided with hook and loop surfaces; the hook and loop surface is selected from baby hook and loop surfaces (103), and the hook and loop surfaces are selected from baby hook and loop surfaces (203).

2. The device for an adjustable joint physiotherapy patch based on an energy membrane according to claim 1, characterized in that, The non-elastic substrate (1) is configured as a lip-shaped structure with arc-shaped surfaces at both the upper and lower ends; the upper end of the non-elastic substrate (1) is a concave arc-shaped surface (101) formed by downward indentation; the lower end of the non-elastic substrate (1) is a convex arc-shaped surface (102) formed by downward protrusion; and the left and right sides of the non-elastic substrate (1) have first transition bodies (104) with gradually decreasing widths at the positions where they meet the free-cut fabric strip (2).

3. The device for an adjustable joint therapy patch based on an energy membrane according to claim 2, characterized in that, The free-cut fabric strip (2) is sewn to the first transition body (104) on the corresponding side of the non-elastic substrate (1).

4. The device for an adjustable joint physiotherapy patch based on an energy membrane according to claim 3, characterized in that, The free-cut fabric strip (2) includes: a second transition body (201) connected to the first transition body (104); and a fixed section (202) integrally formed with the second transition body (201); the second transition body (201) is configured to have a structure in which the width gradually decreases from one end near the first transition body (104) to one end away from the first transition body (104); the fixed section (202) has a structure in which the width matches the smaller width of the second transition body (201).

5. The device for an adjustable joint physiotherapy patch based on an energy membrane according to claim 4, characterized in that, The free-cut fabric strip (2) is divided into a first free-cut fabric strip at one end and a second free-cut fabric strip at the other end; the second transition body (201) of the first free-cut fabric strip and the corresponding first transition body (104) are sewn together as a whole; the second transition body (201) of the second free-cut fabric strip and the corresponding first transition body (104) are partially sewn together and a gap (302) is reserved; the length of the gap (302) is not less than the width of the fixed section (202), and the fixed section (202) of the first free-cut fabric strip can pass through the gap (302).

6. A device for an adjustable joint physiotherapy patch based on an energy membrane according to any one of claims 1 to 5, characterized in that, The edges of the non-elastic substrate (1) and the free-cut fabric strips (2) on both sides are covered by binding ribs (5) to form a binding structure.

7. The device for an adjustable joint physiotherapy patch based on an energy membrane according to claim 1, characterized in that, The length of the bio-spectral energy-responsive membrane (4) is 80 mm.