A type of anti-slip medical sock

CN224612801UActive Publication Date: 2026-08-11SUZHOU DUKANGNING MEDICAL PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-06
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0006]本实用新型提供一种防滑医用袜套,解决了常规的袜套缺乏防滑功能在光滑地面或者病房瓷砖地面上增加了病人摔倒风险的问题

Benefits of technology

[0024]本实用新型提供一种防滑医用袜套,为了提高医用袜套的穿着后的防滑性能,在袜套本体脚掌区域的前掌区域、足弓区域以及脚跟区域,均匀涂抹一层防滑胶,防滑胶上均匀的分布呈点状的防滑点和条状分布防滑条,前掌和脚跟区域的防滑条可稍长,足弓区域防滑条稍短,且各区域的防滑胶分布密度适中,既保证防滑效果,又不会因胶层过厚影响脚部的灵活性,通过该设计防滑组件能显著增加袜套本体脚掌与地面的摩擦力,有效防止病人在行走过程中滑倒,降低因摔倒导致的二次伤害风险,为病人的术后康复和日常活动提供安全保障。

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Abstract

This utility model provides an anti-slip medical sock, comprising: a sock body; and an anti-slip component, wherein the anti-slip component is disposed at the bottom of the sock body near the bottom edge. The anti-slip component includes anti-slip adhesive, anti-slip dots, and anti-slip strips. The anti-slip adhesive is connected to the bottom of the sock body, and the thickness of the anti-slip adhesive is 0.5-1mm. The anti-slip dots and anti-slip strips are located at the bottom of the anti-slip adhesive. The sock body includes a sock body and a sock cuff, with the sock cuff located at the top of the sock body. The anti-slip medical sock provided by this utility model has a moderate distribution density of anti-slip adhesive in each area, ensuring anti-slip effect without affecting foot flexibility due to excessive adhesive layer thickness. This anti-slip component design significantly increases the friction between the sock body and the ground, effectively preventing patients from slipping during walking, reducing the risk of secondary injuries caused by falls, and providing safety for patients' postoperative recovery and daily activities.
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Description

Technical Field

[0001] This utility model relates to the field of medical sock technology, and in particular to a non-slip medical sock. Background Technology

[0002] Socks refer to short or no leg coverings that can extend to the ankle, knee, or thigh.

[0003] Medical stockings are mainly used to assist in the treatment and prevention of venous diseases. They promote the return of venous blood in the lower limbs through gradient pressure, reduce leg swelling and soreness, improve blood circulation, and reduce the risk of deep vein thrombosis. They are often used by patients with varicose veins, postoperative recovery groups, and those who are bedridden for a long time. Patients are relatively weak after surgery or during recovery, and their balance is reduced, making them prone to slipping when walking.

[0004] While regular medical socks can keep warm and protect the feet, they lack anti-slip properties. When walking on smooth surfaces, such as the tiled floors of hospital rooms, the insufficient friction greatly increases the risk of patients falling and getting injured.

[0005] Therefore, it is necessary to provide a non-slip medical sock to solve the above-mentioned technical problems. Utility Model Content

[0006] This invention provides a non-slip medical sock, which solves the problem that conventional socks lack anti-slip function and increase the risk of patients falling on smooth floors or tiled floors in hospital wards.

[0007] To solve the above-mentioned technical problems, this utility model provides an anti-slip medical sock, comprising: a sock body;

[0008] An anti-slip component is disposed at the bottom of the sock body near the bottom end. The anti-slip component includes anti-slip rubber, anti-slip dots, and anti-slip strips. The anti-slip rubber is connected to the bottom of the sock body. The thickness of the anti-slip rubber is 0.5-1mm. The anti-slip dots and anti-slip strips are located at the bottom of the anti-slip rubber. The sock body includes a sock body and a sock cuff. The sock cuff is located at the top of the sock body.

[0009] The anti-slip points and strips are integrally molded with the anti-slip rubber. The sock body includes the sock leg, heel, sole, and toe. The anti-slip components are located below the heel, sole, and toe. The sock cuff is elastic to prevent the sock from slipping down.

[0010] Preferably, the anti-slip dots have a diameter of 3-5mm and a spacing of 2-3mm, and the anti-slip strip has a width of 2-3mm;

[0011] The thickness of both the anti-slip strips and anti-slip dots is 0.5-0.8mm.

[0012] Preferably, the sock body comprises bamboo fiber yarn, polyester yarn and elastic fiber yarn, and the bamboo fiber yarn, polyester yarn and elastic fiber yarn are formed by multifilament weaving.

[0013] Bamboo fiber yarn and polyester yarn are used as base materials. They are first spun into basic yarns, and then interwoven with the elastic fiber yarns through a ring weaving process.

[0014] Preferably, the diameter of the bamboo fiber filament is 8-12μm, the diameter of the polyester filament is 15-20μm, and the diameter of the elastic fiber filament is 0.15mm-0.25mm.

[0015] Preferably, multiple adhesive structures are installed on the bottom of the sock near both sides, and the adhesive structures are used to install anti-slip components;

[0016] The adhesive structure is located on the sides of the heel and sole of the sock. The base layer of the adhesive structure is only 0.1mm thick, and the overall thickness is close to that of the sock fabric, so it will not create a noticeable foreign body sensation when it fits the foot.

[0017] Preferably, the adhesive structure includes an adhesive fleece surface and an adhesive adhesive surface, wherein the adhesive fleece surface is connected to the top of the anti-slip component, and the adhesive adhesive surface is connected to the bottom of the sock body;

[0018] The top edge of the anti-slip rubber has an adhesive structure, while the center area of ​​the anti-slip rubber is not covered, reducing direct contact with the pressure points of the foot.

[0019] Preferably, tightening components are installed on both sides of the anti-slip component. The tightening component includes a first tightening band, an adhesive component, and a second tightening band. One end of the first tightening band and the second tightening band are respectively connected to both sides of the anti-slip component. The adhesive component is used to connect the first tightening band and the second tightening band together.

[0020] The adhesive components and adhesive structures are the same; the adhesive components are divided into rough surfaces and adhesive surfaces.

[0021] Preferably, the width of the first and second tightening straps is 2cm, and the first and second tightening straps are made of medical-grade spandex and nylon blend material;

[0022] The material is a medical-grade blend of spandex and nylon, with spandex accounting for 60% and nylon accounting for 40%. Spandex provides high elasticity, ensuring that the strap can adapt to different ankle sizes and generate stable retraction force, while nylon enhances the strength and abrasion resistance of the fabric.

[0023] Compared with related technologies, this utility model has the following beneficial effects:

[0024] This invention provides an anti-slip medical sock. To improve the anti-slip performance of the sock after wearing, an anti-slip adhesive is evenly applied to the forefoot, arch, and heel areas of the sock body. The anti-slip adhesive has evenly distributed dot-shaped anti-slip dots and strip-shaped anti-slip strips. The anti-slip strips in the forefoot and heel areas can be slightly longer, while those in the arch area can be slightly shorter. The distribution density of the anti-slip adhesive in each area is moderate, ensuring the anti-slip effect without affecting the flexibility of the foot due to excessive adhesive layer. This anti-slip component design significantly increases the friction between the sock body and the ground, effectively preventing patients from slipping during walking, reducing the risk of secondary injuries caused by falls, and providing safety for patients' postoperative recovery and daily activities. Attached Figure Description

[0025] Figure 1 A schematic diagram of the structure of the first embodiment of the anti-slip medical socks provided by this utility model;

[0026] Figure 2 This invention provides a structural schematic diagram of the sock cuff.

[0027] Figure 3 Provided for this utility model Figure 2 An enlarged view of point A shown;

[0028] Figure 4 A schematic diagram of bamboo fiber filaments is provided for this utility model;

[0029] Figure 5 A schematic diagram of the structure of the second embodiment of the anti-slip medical socks provided by this utility model;

[0030] Figure 6 A schematic diagram of the adhesive structure is provided for this utility model;

[0031] Figure 7 Provided for this utility model Figure 6 A magnified view of point B shown.

[0032] The diagram is labeled as follows: 1. Sock body, 101. Sock body, 1011. Bamboo fiber yarn, 1012. Polyester yarn, 1013. Elastic fiber yarn, 102. Sock cuff;

[0033] 2. Anti-slip components: 201. Anti-slip adhesive; 202. Anti-slip dots; 203. Anti-slip strips;

[0034] 3. Tightening assembly, 301. First tightening band, 302. Adhesive component, 303. Second tightening band;

[0035] 4. Adhesive structure, 401, adhesive on rough surface, 402, adhesive on sticky surface. Detailed Implementation

[0036] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0037] First embodiment:

[0038] Please refer to the following: Figures 1-4 The first embodiment of this invention provides an anti-slip medical sock, comprising: a sock body 1;

[0039] Anti-slip component 2 is located at the bottom of the sock body 1 near the bottom end. Anti-slip component 2 includes anti-slip rubber 201, anti-slip dots 202 and anti-slip strips 203. Anti-slip rubber 201 is connected to the bottom of the sock body 1. The thickness of anti-slip rubber 201 is 0.5-1mm. Anti-slip dots 202 and anti-slip strips 203 are located at the bottom of anti-slip rubber 201. The sock body 1 includes a sock body 101 and a sock opening 102. The sock opening 102 is located at the top of the sock body 101.

[0040] Anti-slip points 202 and anti-slip strips 203 are integrally molded with anti-slip adhesive 201. The sock body 101 includes the sock cuff, sock heel, sock sole, and sock toe. The anti-slip component 2 is located below the sock heel, sock sole, and sock toe. The sock opening 102 is elastic to prevent the sock body 101 from slipping down. The anti-slip adhesive 201 is evenly applied to the area below the sock heel, sock sole, and sock toe.

[0041] Please refer to Figure 2 and Figure 3 The anti-slip dots 202 have a diameter of 3-5mm and a spacing of 2-3mm, and the anti-slip strips 203 have a width of 2-3mm.

[0042] The anti-slip strip 203 and the anti-slip dot 202 have the same thickness, 0.5-0.8mm.

[0043] Please refer to Figure 1 and Figure 4 The sock body 101 comprises bamboo fiber yarn 1011, polyester yarn 1012 and elastic fiber yarn 1013, which are formed by multifilament weaving.

[0044] Bamboo fiber yarn 1011 and polyester yarn 1012 are used as base materials. They are first spun into basic yarns and then interwoven with elastic fiber yarn 1013 through a circular weaving process. In this weaving method, the three fibers intertwine and interweave with each other inside the fabric to form a continuous and uniform overall structure without obvious layer boundaries.

[0045] Please refer to Figure 1 and Figure 4 The diameter of bamboo fiber filament 1011 is 8-12μm, the diameter of polyester filament 1012 is 15-20μm, and the diameter of elastic fiber filament 1013 is 0.15mm-0.25mm.

[0046] The working principle of this first embodiment is as follows:

[0047] In actual use, when a patient walks while wearing medical socks, the anti-slip component 2 on the sole of the sock body 1 comes into direct contact with the ground. The anti-slip component 2 itself has a high coefficient of friction. The dotted anti-slip dots 202 and striped anti-slip strips 203 on the surface of the anti-slip component 2 can increase the friction between it and the ground. During walking, as the foot is lifted and lowered, the anti-slip component 2 generates compression and friction with the ground. Utilizing the adhesive and structural characteristics of the adhesive layer, it prevents relative sliding between the foot and the ground, thereby providing stable support for the patient and preventing slipping. At the same time, the elastic fabric of the sock body 1 allows the anti-slip adhesive to always fit the sole of the foot, ensuring effective contact between the anti-slip adhesive and the ground during walking.

[0048] Second embodiment:

[0049] Please refer to the following: Figures 5-7 Based on the anti-slip medical socks provided in the first embodiment of this application, the second embodiment of this application proposes another type of anti-slip medical socks. The second embodiment is merely a preferred embodiment of the first embodiment, and the implementation of the second embodiment will not affect the separate implementation of the first embodiment.

[0050] Specifically, the difference in the anti-slip medical socks provided in the second embodiment of this application is that, please refer to... Figure 6 and Figure 7 Multiple adhesive structures 4 are installed on the bottom of the sock body 101 near both sides. The adhesive structures 4 are used to install the anti-slip components 2.

[0051] The adhesive structure 4 is located on both sides of the heel and sole of the sock body 101. The base layer of the adhesive structure 4 is only 0.1mm thick, and the overall thickness is close to that of the sock fabric, so it will not create a noticeable foreign body sensation when it fits the foot.

[0052] Please refer to Figure 6 and Figure 7 The adhesive structure 4 includes an adhesive fleece surface 401 and an adhesive adhesive surface 402. The adhesive fleece surface 401 is connected to the top of the anti-slip component 2, and the adhesive adhesive surface 402 is connected to the bottom of the sock body 101.

[0053] An adhesive structure 4 is provided on the top edge area of ​​the anti-slip adhesive 201, and the center area of ​​the anti-slip adhesive 201 is not covered to reduce direct contact with the pressure points of the foot. The protrusion height of the adhesive textured surface 401 and the adhesive adhesive surface 402 is controlled within 0.2mm.

[0054] Please refer to Figure 5 and Figure 6Both sides of the anti-slip component 2 are equipped with tightening components 3. The tightening components 3 include a first tightening band 301, an adhesive component 302, and a second tightening band 303. One end of the first tightening band 301 and the second tightening band 303 are respectively connected to both sides of the anti-slip component 2. The adhesive component 302 is used to connect the first tightening band 301 and the second tightening band 303 together.

[0055] The adhesive component 302 is the same as the adhesive structure 4. The adhesive component 302 is divided into a rough surface and an adhesive surface, which are connected to the first tightening band 301 and the second tightening band 303 respectively, so as to facilitate the connection between the first tightening band 301 and the second tightening band 303.

[0056] Please refer to Figure 5 and Figure 6 The width of the first tightening band 301 and the second tightening band 303 is 2cm. The first tightening band 301 and the second tightening band 303 are made of medical grade spandex and nylon blend material.

[0057] The material is a blend of medical-grade spandex and nylon, with spandex accounting for 60% and nylon accounting for 40%. Spandex provides high elasticity, ensuring that the strap can adapt to different ankle sizes and generate stable shrinkage force, while nylon enhances the strength and abrasion resistance of the fabric, preventing snagging or breakage after long-term use.

[0058] In this second embodiment, to facilitate the replacement of the anti-slip component 2, multiple adhesive structures 4, consisting of an adhesive fleece surface 401 and an adhesive adhesive surface 402, are installed on both sides of the foot area of ​​the sock body 1. The anti-slip component 2 is attached to the foot of the sock body 1 through the adhesive structures 4, and then tightened by the tightening component 3 to prevent the anti-slip component 2 from sliding or falling off. When it is necessary to disassemble and replace, simply loosen the tightening component 3, and then separate the adhesive fleece surface 401 and the adhesive adhesive surface 402 to remove the anti-slip component 2 for replacement. This design, which uses a replaceable anti-slip component 2, extends the service life of the sock body 1, reduces medical costs, and reduces resource waste, making it especially suitable for rehabilitation patients who need to use it for a long time.

[0059] The above are merely embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A type of anti-slip medical sock, characterized in that, include: Sock body (1); Anti-slip component (2), the anti-slip component (2) is disposed at the bottom of the sock body (1) near the bottom end, the anti-slip component (2) includes anti-slip rubber (201), anti-slip dots (202) and anti-slip strips (203), the anti-slip rubber (201) is connected to the bottom of the sock body (1), the thickness of the anti-slip rubber (201) is 0.5-1mm, the anti-slip dots (202) and anti-slip strips (203) are located at the bottom of the anti-slip rubber (201), the sock body (1) includes a sock body (101) and a sock cuff (102), the sock cuff (102) is located at the top of the sock body (101).

2. The anti-slip medical sock cover according to claim 1, characterized in that, The anti-slip points (202) have a diameter of 3-5 mm and a spacing of 2-3 mm, and the anti-slip strips (203) have a width of 2-3 mm.

3. The anti-slip medical sock cover according to claim 1, characterized in that, The sock body (101) comprises bamboo fiber yarn (1011), polyester yarn (1012) and elastic fiber yarn (1013), which are formed by multifilament weaving.

4. The anti-slip medical sock cover according to claim 3, characterized in that, The diameter of the bamboo fiber filament (1011) is 8-12μm, the diameter of the polyester filament (1012) is 15-20μm, and the diameter of the elastic fiber filament (1013) is 0.15mm-0.25mm.

5. The anti-slip medical sock cover according to claim 1, characterized in that, Multiple adhesive structures (4) are installed on the bottom of the sock body (101) near both sides, and the adhesive structures (4) are used to install anti-slip components (2).

6. The anti-slip medical sock cover according to claim 5, characterized in that, The adhesive structure (4) includes an adhesive fleece surface (401) and an adhesive adhesive surface (402), the adhesive fleece surface (401) being connected to the top of the anti-slip component (2), and the adhesive adhesive surface (402) being connected to the bottom of the sock body (101).

7. The anti-slip medical sock cover according to claim 1, characterized in that, Both sides of the anti-slip component (2) are equipped with tightening components (3). The tightening components (3) include a first tightening band (301), an adhesive component (302), and a second tightening band (303). One end of the first tightening band (301) and the second tightening band (303) are respectively connected to both sides of the anti-slip component (2). The adhesive component (302) is used to connect the first tightening band (301) and the second tightening band (303) together.

8. The anti-slip medical sock cover according to claim 7, characterized in that, The width of the first tightening band (301) and the second tightening band (303) is 2cm. The first tightening band (301) and the second tightening band (303) are made of medical grade spandex and nylon blended material.