Breathable health-care sports kneecap

By designing a breathable interwoven mesh structure in the knee pad, the knee problem caused by the non-breathable knee pad is solved, the breathability and comfort are improved, and the protective effect during exercise is enhanced.

CN223323011UActive Publication Date: 2025-09-12龙岩丽宇纺织科技有限公司
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Patent Information

Application Number
CN202422430561.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-09-12
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

Existing knee braces are not breathable, which causes premature aging of knee cell tissue, tight and rough skin, and reduced cell oxygen exchange activity, leading to dry and cracked skin and frequent muscle stiffness and cramps during exercise.

Method used

The bow knee composite fabric surface is matched with the flexed knee composite fabric surface, and a breathable interwoven mesh structure is formed through stitching. The honeycomb mesh patterned surface is lined with non-woven fabric surface using horizontal arc gaskets, rubber bands and Velcro gussets to enhance breathability and protection.

Benefits of technology

It improves the breathability and comfort of the knee pads, reduces heat accumulation, improves safety protection during exercise, and prevents knee sweating and muscle stiffness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a breathable health-care sports kneecap, which belongs to the field of sporting goods, and structurally comprises a knee-arching composite cloth cover, a kneecap cloth cover cylinder, a closing ring and a knee-bending composite cloth cover, and the knee-arching composite cloth cover is nested on the left side of the kneecap cloth cover cylinder and is positioned on the same cambered surface with the kneecap cloth cover cylinder. The knee bending composite cloth cover is nested on the right side of the knee protection cloth cover cylinder and is located on the same cambered surface, and the two closing rings are installed on the upper side and the lower side of the knee protection cloth cover cylinder respectively. The safety protection degree of the arch knee front top is improved through tension ventilation of the cross grain arc gasket of the arch knee composite cloth cover and the bee grid grain face, the phenomenon of knee bending and sweat covering is achieved through ventilation of the cross grain arc gasket of the knee bending composite cloth cover and the bee grid grain face, hot air is reduced, efficiency is high, and the safety protection degree of the whole kneecap ventilation health-care epoxy sports is improved.
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Description

Technical Field

[0001] The utility model relates to a breathable health-care sports kneepad, belonging to the field of sports supplies. Background Art

[0002] Sports protective gear is a kind of wearable equipment that protects against injury during sports. It can be generally divided into head guards, shoulder guards, hand guards, elbow guards, wrist guards, waist guards, leg guards, knee guards, patella guards, ankle guards, combined sports protective gear, and other sports protective gear. It has a certain protective effect on the human body. Knee pads refer to an item used to protect people's knees. They have the functions of sports protection, cold protection and warmth, and joint care. They are divided into sports knee pads and health knee pads. They are suitable for athletes, middle-aged and elderly people, and patients with knee diseases. The shortcomings of the current technology that needs to be optimized are:

[0003] Because knee pads are not breathable, the cell tissues covered in the knees for a long time will age prematurely and become unable to breathe, the skin will become tight and rough, and the cell oxygen exchange activity will decrease. As a result, the skin will easily crack inside the knee pads when the knees are bent violently during exercise, and the elasticity of the muscles will be affected, leading to stiffness and frequent cramps. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of the utility model is to provide a breathable health-care sports knee pad to solve the problem that the cell tissue covered by the knee for a long time due to the non-breathable knee pad will age prematurely and have no breath, the skin surface will become tight and rough, and the cell oxygen exchange activity will be reduced, which will cause the skin surface to dry and crack inside the knee pad due to severe knee bending during exercise, and affect the elasticity of the muscle group, resulting in frequent stiffness and cramps.

[0005] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical solutions: a breathable health-care sports kneepad, the structure of which includes: a knee-bending composite fabric surface, a kneepad fabric surface tube, a closing ring, and a knee-flexing composite fabric surface, the knee-bending composite fabric surface is nested in the left side of the kneepad fabric surface tube and is on the same arc surface, the knee-flexing composite fabric surface is nested in the right side of the kneepad fabric surface tube and is on the same arc surface, the closing ring is provided and is respectively installed on the upper and lower sides of the kneepad fabric surface tube, the kneepad fabric surface tube and the closing ring are sewn into one body and the axes are in line, the knee-bending composite fabric surface is sewn together with the kneepad fabric surface tube through the kneepad fabric surface tube, and the knee-bending composite fabric surface is sewn together with the knee-flexing composite fabric surface. The cloth surface is provided with a transverse arc gasket, a rubber band, a Velcro gusset, a honeycomb mesh surface, and a non-woven fabric surface. The rubber band and the Velcro gusset are tightly attached to each other and belong to the same vertical plane. There are two Velcro gussets and they are respectively tightly attached to the upper and lower sides of the honeycomb mesh surface. There are four rubber bands and they are respectively inserted into the upper and lower sides and the left and right sides of the honeycomb mesh surface. The honeycomb mesh surface is installed on the inside of the non-woven fabric surface and belongs to the same vertical plane. The honeycomb mesh surface and the non-woven fabric surface are sewn together. The transverse arc gasket is inserted into the inside of the honeycomb mesh surface and belongs to the same vertical plane. The non-woven fabric surface is nested on the left side of the knee pad cloth surface tube.

[0006] In order to optimize the above technical solutions, further measures are taken as follows:

[0007] As a further improvement of the present invention, the transverse arc gasket is composed of a double transverse patch and a single transverse gasket. The double transverse patch is installed on the front side of the single transverse gasket. The double transverse patch and the single transverse gasket are tightly attached together and are on the same vertical plane.

[0008] As a further improvement of the present invention, the honeycomb patterned surface is a patterned lining cloth structure with a composite wide honeycomb through-hole matrix arrangement, which is convenient for forming a tough mesh surface with wide openings for breathability and safe health care for the muscles at the knee connection end to prevent abrasions.

[0009] As a further improvement of the present invention, the double horizontal stripe patch is a knitted patch fabric structure with dense double horizontal stripes and breathable seams, which facilitates the front and back superposition of breathable seams to enhance the overall horizontal ventilation amplification effect of the airflow around the knee end.

[0010] As a further improvement of the present invention, the knee-flexing composite fabric surface is provided with a transverse arc gasket, a rubber band, a Velcro gusset plate, a honeycomb mesh surface, and a non-woven fabric surface. The components of the knee-flexing composite fabric surface are the same as those of the knee-bow composite fabric surface.

[0011] Beneficial effects

[0012] The utility model relates to a breathable health-care sports knee pad. A worker forms a conventional knee pad structure by sewing a knee pad cloth tube up and down through a closing circle, and then adds a knee-bending composite cloth surface and sews it back and forth before the knee-bending composite cloth surface. The horizontal arc gasket is pulled by rubber bands and Velcro panels to form a breathable interwoven mesh structure effect under the cover of the honeycomb mesh lining non-woven fabric surface. The double horizontal stripe patches and the single horizontal stripe gasket form a breathable operation effect of a wide seam superimposed on a narrow seam, so that the airflow in the honeycomb mesh surface surrounds and improves the comfort and efficiency of the knee pad.

[0013] The advantages that can be achieved after the operation of the utility model are:

[0014] By using the combination of the knee-bending composite fabric and the knee-flexing composite fabric, the front of the knee is enhanced through the tension, breathability and safety protection of the horizontal arc gasket and honeycomb mesh surface of the knee-bending composite fabric through forward and backward knee-bending and knee-bending movements. The sweating phenomenon when the knee is bent is also reduced through the breathability and ventilation of the horizontal arc gasket and honeycomb mesh surface of the knee-flexing composite fabric, which effectively improves the overall breathable health epoxy sports safety protection of the knee pad. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will describe in detail the drawings in the description of the embodiments, so that other features, purposes and advantages of the present invention will become more apparent:

[0016] Figure 1 This is a schematic structural diagram of a breathable health-care sports kneepad of the present invention.

[0017] Figure 2 This is a schematic diagram of the detailed side cross-section of the knee-bow composite fabric of the present invention.

[0018] Figure 3 This is a detailed schematic diagram of the layered side cross-sectional structure of the transverse arc gasket of the present invention.

[0019] Figure 4 This is a detailed side sectional structural diagram of the single transverse stripe gasket of the present invention.

[0020] Explanation of the accompanying reference numerals: composite fabric surface for knee arch - 1, knee pad fabric surface tube - 2, closing ring - 3, composite fabric surface for knee flexion - 4, horizontal arc gasket - 11, rubber band - 12, Velcro gusset - 13, honeycomb mesh surface - 14, non-woven fabric surface - 15, double horizontal stripe patch - 111, single horizontal stripe gasket - 112. DETAILED DESCRIPTION

[0021] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0022] Example 1:

[0023] See also Figure 1-Figure 4 The utility model provides a breathable health-care sports knee pad, which comprises: a knee-bending composite fabric surface 1, a knee-bending fabric surface tube 2, a closing ring 3, and a knee-flexing composite fabric surface 4. The knee-bending composite fabric surface 1 is nested in the left side of the knee-bending fabric surface tube 2 and is on the same arc surface, and the knee-flexing composite fabric surface 4 is nested in the right side of the knee-bending fabric surface tube 2 and is on the same arc surface. The closing ring 3 is provided with two and is respectively installed on the upper and lower sides of the knee-bending fabric surface tube 2. The knee-bending fabric surface tube 2 and the closing ring 3 are sewn into one body and the axes are collinear. The knee-bending composite fabric surface 1 is sewn together with the knee-flexing composite fabric surface 4 through the knee-bending fabric surface tube 2. The knee-bending composite fabric surface 1 is provided with a transverse arc gasket 11, a rubber band 12, a Velcro gusset plate 13, a honeycomb mesh surface 14, and a non-woven fabric surface 15. The rubber band 12 and the Velcro gusset plate 13 are tightly attached to each other and belong to the same vertical plane. The Velcro gusset plate 13 is provided with two and is respectively installed on the upper and lower sides of the knee-bending fabric surface tube 2. Closely attached to the upper and lower sides of the honeycomb mesh surface 14, four rubber bands 12 are provided and are respectively inserted into the upper and lower sides and left and right sides of the honeycomb mesh surface 14, the honeycomb mesh surface 14 is installed on the inside of the non-woven fabric surface 15 and belong to the same vertical plane, the honeycomb mesh surface 14 and the non-woven fabric surface 15 are sewn together, the transverse arc gasket 11 is inserted into the inside of the honeycomb mesh surface 14 and belong to the same vertical plane, the non-woven fabric surface 15 is nested in the left side of the knee pad cloth surface tube 2, the honeycomb mesh surface 14 is a composite wide honeycomb through-hole matrix arranged in a mesh lining fabric structure, which is convenient for forming a tough mesh with a wide mouth and breathable and safe health care to protect the muscle groups at the knee connection end from abrasions, the knee flexion composite cloth surface 4 is provided with a transverse arc gasket 11, rubber bands 12, Velcro gussets 13, honeycomb mesh surface 14, and non-woven fabric surface 15. The knee flexion composite cloth surface 4 has the same components as the bow knee composite cloth surface 1.

[0024] See also Figure 3-Figure 4 The horizontal arc gasket 11 is composed of a double horizontal patch 111 and a single horizontal gasket 112. The double horizontal patch 111 is installed on the front side of the single horizontal gasket 112. The double horizontal patch 111 and the single horizontal gasket 112 are tightly attached to each other and are on the same vertical plane. The double horizontal patch 111 is a knitted patch fabric structure with dense double-woven horizontal seams and breathable surface, which facilitates the front and back superposition of gaps for ventilation to enhance the overall horizontal ventilation amplification effect of the airflow around the knee end.

[0025] Working process: The staff sews the knee pad cloth tube 2 up and down through the closing circle 3 to form a conventional knee pad structure effect, and then adds the arched knee composite cloth surface 1 and sews it front and back to the flexed knee composite cloth surface 4, so that the horizontal arc gasket 11 is pulled by the rubber band 12 and the Velcro gusset plate 13 to form a breathable interwoven mesh structure effect under the cover of the honeycomb mesh surface 14 lined with non-woven fabric surface 15, and the double horizontal stripe patch 111 and the single horizontal stripe gasket 112 form a wide seam superimposed on a narrow seam for ventilation, so that the airflow in the honeycomb mesh surface 14 can enhance the comfort and efficiency of the knee pad.

[0026] The utility model achieves the purpose of using the knee-bending composite fabric surface 1 and the knee-flexing composite fabric surface 4 in coordination with each other through the forward and backward knee-flexing and knee-bending movements, so that the tension, breathability and safety protection of the front of the knee are improved through the transverse arc gaskets 11 and the honeycomb mesh surface 14 of the knee-bending composite fabric surface 1, and the sweating phenomenon when the knee is bent is also effectively reduced through the ventilation of the transverse arc gaskets 11 and the honeycomb mesh surface 14 of the knee-flexing composite fabric surface 4, thereby improving the overall breathable health-care epoxy sports safety protection of the knee pad, thereby solving the problem that the cell tissue covered by the knee for a long time due to the non-breathable knee pad will prematurely age and breathe, the skin surface will be tight and rough, and the cell oxygen exchange activity will be reduced, which will cause the skin surface to dry out and crack inside the knee pad due to severe knee bending during exercise, and affect the elasticity of the muscle group, leading to frequent stiffness and cramps.

[0027] The specific embodiments described herein are merely illustrative of the present invention. Persons skilled in the art may make various modifications, additions, or substitutions to the described specific embodiments without departing from the scope of the present invention or exceeding the scope of the appended claims.

Claims

1. A breathable health-care sports kneepad, comprising: The invention comprises a knee-bending composite cloth surface (1), a knee-support cloth surface tube (2), a closing ring (3), and a knee-bending composite cloth surface (4), which are characterized by: The knee-bending composite fabric surface (1) is nested in the left side of the kneepad fabric surface tube (2), and the knee-flexing composite fabric surface (4) is nested in the right side of the kneepad fabric surface tube (2). Two closing rings (3) are provided and are respectively installed on the upper and lower sides of the kneepad fabric surface tube (2). The kneepad fabric surface tube (2) and the closing rings (3) are sewn together into one body. The knee-bending composite fabric surface (1) is sewn together with the knee-flexing composite fabric surface (4) through the kneepad fabric surface tube (2). The knee-bow composite fabric surface (1) is provided with a transverse arc gasket (11), a rubber band (12), a Velcro gusset plate (13), a honeycomb mesh surface (14), and a non-woven fabric surface (15); The rubber band (12) is tightly attached to the Velcro gusset plate (13), two Velcro gusset plates (13) are provided and are tightly attached to the upper and lower sides of the honeycomb mesh surface (14), four rubber bands (12) are provided and are inserted into the upper and lower sides and the left and right sides of the honeycomb mesh surface (14), the honeycomb mesh surface (14) is installed inside the non-woven fabric surface (15), the honeycomb mesh surface (14) and the non-woven fabric surface (15) are sewn together, the transverse arc gasket (11) is inserted into the inside of the honeycomb mesh surface (14), and the non-woven fabric surface (15) is nested in the left side of the knee pad cloth surface tube (2).

2. The breathable health-care sports kneepad according to claim 1, characterized in that: The transverse arc gasket (11) is composed of a double transverse patch (111) and a single transverse gasket (112); the double transverse patch (111) is installed on the front side of the single transverse gasket (112); and the double transverse patch (111) and the single transverse gasket (112) are tightly attached together.

3. The breathable health-care sports kneepad according to claim 1, characterized in that: The honeycomb patterned surface (14) is a patterned lining fabric surface structure with a composite wide honeycomb through-hole matrix arrangement.

4. The breathable health-care sports kneepad according to claim 2, characterized in that: The double-stripe patch (111) is a knitted patch fabric structure with dense double-woven horizontal stripes and breathable seams.

5. The breathable health-care sports kneepad according to claim 1, characterized in that: The knee-flexing composite fabric surface (4) is provided with a transverse arc gasket (11), a rubber band (12), a Velcro gusset plate (13), a honeycomb mesh surface (14), and a non-woven fabric surface (15). The knee-flexing composite fabric surface (4) has the same components as the knee-bow composite fabric surface (1).