Radiation-proof sock with wear-resistant structure

The reinforced sole structure with carbon fiber layers and protective layers addresses wear and tear issues in radiation-resistant socks, enhancing durability and safety by preventing static electricity.

CN223094834UActive Publication Date: 2025-07-15SUZHOU QIANDU DUST-FREE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421949577.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-07-15
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

The soles of existing radiation-proof socks are easily damaged by friction and damage due to stress, have a short service life, and are prone to friction and static electricity, resulting in low safety.

Method used

The sole of the sole body of the sock body is provided with an electrostatic thickening part, including a carbon fiber layer and an upper and lower protective layer, and a fixed fold is formed at the fixed edge by sewing. A fabric interwoven with silver fiber and bamboo charcoal fiber is used to improve wear resistance and anti-static effect.

Benefits of technology

It enhances the wear resistance of the soles of the soles, extends the service life, and prevents static electricity from occurring through the frictional conduction effect of the carbon fiber layer, improving safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a radiation-proof sock with a wear-resistant structure, relates to the technical field of radiation-proof socks, and aims to solve the problems that the sole part of the conventional radiation-proof sock is easily damaged by friction under stress, the service life is short, static electricity is easily generated by friction, safety accidents are easily generated during operation in factories, and the safety is low. The sock main body comprises a sock opening part, an instep part, a heel part, a sole part and a toe part, the sock opening part, the instep part, the heel part, the sole part and the toe part are woven into a barrel shape, and the stressed part, close to the toe part, of the sole part is provided with an electrostatic thickening part used for thickening, resisting wear and preventing static electricity. The electrostatic thickening part comprises a carbon fiber layer, an upper protective layer and a lower protective layer, the upper protective layer and the lower protective layer wrap and protect the carbon fiber layer up and down, the carbon fiber layer comprises a first carbon fiber line and a second carbon fiber line, the first carbon fiber line and the second carbon fiber line are overlapped and interwoven up and down and are connected, and the edge of the electrostatic thickening part is bent to form a fixed folded edge.
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Description

Technical Field

[0001] The utility model relates to the technical field of radiation protection socks, and specifically relates to a radiation protection sock with a wear-resistant structure. Background Technique

[0002] Socks are a kind of clothing item worn on the feet, which play the role of protecting the feet and preventing foot odor, and are one of the commonly used items in life;

[0003] For example, the Chinese patent (socks) with the publication number of CN101317697B: It includes continuously knitting the foot into a tubular shape from the sock mouth through the foot. In front of the foot, a region with a reduced number of knitting coil rows and a region with an increased number of coil rows are arranged to form the toe part. Among them, at the position corresponding to the side of the big toe of the sock, the circular knitting machine reciprocates at a certain angle to form an increased region of the knitted fabric. Thus, a big toe swelling part is formed to obtain a sock suitable for the shape of the foot. Not only the swelling part on the big toe side, but also another fabric increased region is formed at the position corresponding to the little toe of the sock to form a little toe swelling part smaller than the big toe side swelling part. Thus, a sock more suitable for the foot shape can be realized. The purpose of the present invention is to provide a sock that is suitable for the foot shape, has good wearing comfort, and has no physical force acting on the foot.

[0004] However, the sole part of the existing radiation protection socks is easily damaged by friction under force, has a short service life, and is prone to generate static electricity due to friction, which is likely to cause safety accidents during factory operations, resulting in low safety; Therefore, it does not meet the existing requirements, and for this reason, we propose a radiation protection sock with a wear-resistant structure. Content of the Utility Model

[0005] The purpose of the present utility model is to provide a radiation protection sock with a wear-resistant structure to solve the problems in the above background technique that the sole part of the existing radiation protection socks is easily damaged by friction under force, has a short service life, is prone to generate static electricity due to friction, is likely to cause safety accidents during factory operations, and results in low safety.

[0006] To achieve the above purpose, the present utility model provides the following technical solution: A radiation protection sock with a wear-resistant structure, including: a sock body, the sock body includes a sock mouth part, a foot back part, a heel part, a sole part, and a toe part, and the sock mouth part, the foot back part, the heel part, the sole part, and the toe part are knitted into a tubular shape. A static electricity thickening part for thickening, wear resistance, and anti-static is arranged at the stressed part of the sole part close to the toe part. The static electricity thickening part includes a carbon fiber layer and an upper protective layer and a lower protective layer that wrap and protect the carbon fiber layer up and down.

[0007] Preferably, the carbon fiber layer includes a first carbon fiber wire and a second carbon fiber wire, and the first carbon fiber wire and the second carbon fiber wire are overlapped and intertwined up and down.

[0008] Preferably, the edge of the electrostatic thickening part is bent to form a fixed hem, and the fixed hem is bent upward to the upper end of the electrostatic thickening part.

[0009] Preferably, the fixed hem of the electrostatic thickening part and the force-bearing part of the sole are fixed by sutures, and the sutures pass through the electrostatic thickening part and the sole.

[0010] Preferably, an elastic band for fixing to a person's leg is provided at the open end of the sock mouth, and the elastic band surrounds the open end of the sock mouth for one circle.

[0011] Preferably, the fabric of the sock body is made of interwoven silver fiber and bamboo charcoal fiber.

[0012] Preferably, the fabrics of the upper protective layer and the lower protective layer are made of bamboo charcoal fiber.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] 1. By arranging an electrostatic thickening layer at the force-bearing part of the sole of the sock body, the present utility model realizes the thickening treatment of the force-bearing part of the sole through the electrostatic thickening part. And the electrostatic thickening part is composed of an upper protective layer, a carbon fiber layer and a lower protective layer. The upper protective layer and the lower protective layer sandwich the carbon fiber layer, so as to play a protective role and avoid the carbon fiber layer from being damaged by friction. At the same time, when a person wears the sock and walks, when the sole bends and bears force, the wear resistance is improved by relying on the electrostatic thickening part, avoiding the friction damage of the force-bearing part, and improving the service life. And when bearing friction force, the carbon fiber layer plays a role of friction conduction, so as to realize that the sock has an anti-static effect, solving the problems that the sole part of the existing anti-radiation sock is easily damaged by friction, has a short service life, and is prone to generate static electricity by friction, which is likely to cause safety accidents during factory operations and result in low safety. And the fabric of the sock body is made of interwoven silver fiber and bamboo charcoal fiber, and the fabrics of the upper protective layer and the lower protective layer are made of bamboo charcoal fiber, improving the anti-radiation and anti-static effects of the sock through silver fiber and bamboo charcoal fiber.

[0015] 2. By bending the edge of the electrostatic thickening part upward, a fixed hem is formed. The fixed hem of the electrostatic thickening part and the force-bearing part of the sole are fixed by sutures, fixing the electrostatic thickening part. Through the electrostatic thickening part, the thickening treatment of the force-bearing part of the sole is realized. The edge of the electrostatic thickening part is bent upward, so that when sewing, the frayed edges at the edge are not easily rubbed off, thus avoiding the loosening of the electrostatic thickening part and improving the stability and fixing firmness. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the overall structure of the present utility model;

[0017] Figure 2Schematic structural diagram of the electrostatic thickening part of the present utility model;

[0018] Figure 3 Front view structural diagram of the edge of the electrostatic thickening part of the present utility model;

[0019] Figure 4 Top view partial structural diagram of the carbon fiber layer of the present utility model;

[0020] In the figure: 1. Sock body; 2. Elastic band; 3. Electrostatic thickening part; 4. Sewing thread; 5. Carbon fiber layer; 6. Upper protective layer; 7. Lower protective layer; 8. Fixed hem; 9. First carbon fiber thread; 10. Second carbon fiber thread; 11. Dorsum of foot; 12. Sock mouth; 13. Heel; 14. Sole; 15. Toes. Specific implementation manners

[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments.

[0022] Please refer to Figures 1-4 , an embodiment provided by the present utility model: A radiation-proof sock with a wear-resistant structure, including: a sock body 1, the sock body 1 includes a sock mouth 12, a dorsum of foot 11, a heel 13, a sole 14 and toes 15, and the sock mouth 12, the dorsum of foot 11, the heel 13, the sole 14 and the toes 15 are woven into a tube shape. An electrostatic thickening part 3 for thickening, wear resistance and anti-static is provided at the stress part of the sole 14 close to the toes 15. The electrostatic thickening part 3 includes a carbon fiber layer 5 and an upper protective layer 6 and a lower protective layer 7 that wrap and protect the carbon fiber layer 5 up and down.

[0023] Through the electrostatic thickening part 3, the thickening treatment of the stress part of the sole 14 is realized, and the electrostatic thickening part 3 is composed of an upper protective layer 6, a carbon fiber layer 5 and a lower protective layer 7. The upper protective layer 6 and the lower protective layer 7 sandwich the carbon fiber layer 5, so as to play a protective role and avoid friction damage to the carbon fiber layer 5. At the same time, when a person wears the socks and walks, when the sole is bent and stressed, the wear resistance is improved by relying on the electrostatic thickening part 3, avoiding friction damage to the stressed part and improving the service life. And when stressed and rubbed, the carbon fiber layer 5 plays a role of friction conduction, so that the socks have an anti-static effect.

[0024] Please refer to Figure 4 , the carbon fiber layer 5 includes a first carbon fiber thread 9 and a second carbon fiber thread 10, and the first carbon fiber thread 9 and the second carbon fiber thread 10 are superposed and intertwined up and down. The firmness of the carbon fiber layer 5 is improved by the way of intertwined fixation, and it is not easy to loosen when stressed.

[0025] Please refer to Figure 1 and 3 , at the edge of the electrostatic thickening part 3, it is bent to form a fixed hem 8, and the fixed hem 8 is bent upward towards the upper end of the electrostatic thickening part 3. The fixed hem 8 of the electrostatic thickening part 3 and the stress-bearing part of the sole part 14 are stitched and fixed through a stitching thread 4, and the stitching thread 4 passes through the electrostatic thickening part 3 and the sole part 14. The edge of the electrostatic thickening part 3 is bent upward to form a fixed hem 8. The fixed hem 8 of the electrostatic thickening part 3 and the stress-bearing part of the sole part 14 are stitched and fixed through a stitching thread 4 to fix the electrostatic thickening part 3. Through the electrostatic thickening part 3, the stress-bearing part of the sole part 14 is thickened. The socks are not easily worn, and the service life is improved. Moreover, the edge of the electrostatic thickening part 3 is bent upward, so that when stitching, the frayed edges at the edge are not easily rubbed off, thus avoiding the loosening of the electrostatic thickening part 3 and improving the stability and firmness of fixation.

[0026] Please refer to Figure 1 , at the open end of the sock mouth part 12, there is an elastic band 2 for fixing with a person's leg, and the elastic band 2 surrounds the open end of the sock mouth part 12 in a circle. When a person wears the socks, the elastic band 2 is used for elastic fixation with the human leg.

[0027] Please refer to Figure 1 and 2 , the fabric of the sock body 1 is made of silver fiber and bamboo charcoal fiber intertwined, and the fabrics of the upper protective layer 6 and the lower protective layer 7 are made of bamboo charcoal fiber. The anti-radiation and anti-static effects of the socks are improved through silver fiber and bamboo charcoal fiber.

[0028] Working principle: When in use, the edge of the electrostatic thickening part 3 is bent upward to form a fixed hem 8. The fixed hem 8 of the electrostatic thickening part 3 and the stress-bearing part of the sole part 14 are stitched and fixed through a stitching thread 4 to fix the electrostatic thickening part 3. Through the electrostatic thickening part 3, the stress-bearing part of the sole part 14 is thickened. Moreover, the electrostatic thickening part 3 is composed of an upper protective layer 6, a carbon fiber layer 5, and a lower protective layer 7. The upper protective layer 6 and the lower protective layer 7 sandwich the carbon fiber layer 5 to achieve a protective effect and avoid friction damage to the carbon fiber layer 5. At the same time, when a person wears the socks and walks, when the sole is bent and stressed, the wear resistance is improved by relying on the electrostatic thickening part 3, and the stressed part is prevented from being rubbed and damaged, and the service life is improved. Moreover, when being stressed and rubbed, the carbon fiber layer 5 plays a role in friction conduction, thus realizing that the socks have an anti-static effect. The carbon fiber layer 5 is connected by the upper and lower superposition and interweaving of the first carbon fiber thread 9 and the second carbon fiber thread 10. The firmness of the carbon fiber layer 5 is improved through the interweaving and fixing method, and it is not easily loosened when stressed.

[0029] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.

Claims

1. A radiation-proof sock with an abrasion-resistant structure, comprising a sock body (1), characterized in that: The sock body (1) includes a sock mouth part (12), a instep part (11), a heel part (13), a sole part (14) and a toe part (15), and the sock mouth part (12), the instep part (11), the heel part (13), the sole part (14) and the toe part (15) are woven into a tubular shape. An electrostatic thickening part (3) for thickening, wear resistance and anti-static is arranged at the stress part of the sole part (14) close to the toe part (15). The electrostatic thickening part (3) includes a carbon fiber layer (5) and an upper protective layer (6) and a lower protective layer (7) that wrap and protect the carbon fiber layer (5) up and down.

2. The anti-radiation socks with a wear-resistant structure according to claim 1, characterized in that: The carbon fiber layer (5) includes a first carbon fiber thread (9) and a second carbon fiber thread (10), and the first carbon fiber thread (9) and the second carbon fiber thread (10) are superposed and intertwined up and down.

3. A radiation-proof sock with a wear-resistant structure according to claim 1, characterized in that: The edge of the electrostatic thickening part (3) is bent into a fixed hem (8), and the fixed hem (8) is bent upward at the upper end of the electrostatic thickening part (3).

4. A radiation-proof sock with an abrasion-resistant structure according to claim 3, characterized in that: The fixed hem (8) of the electrostatic thickening part (3) is fixedly stitched to the stress part of the sole part (14) through a stitching thread (4), and the stitching thread (4) passes through the electrostatic thickening part (3) and the sole part (14).

5. A radiation-proof sock with an abrasion-resistant structure according to claim 1, characterized in that: An elastic band (2) for fixing to a human leg is arranged at the open end of the sock mouth part (12), and the elastic band (2) surrounds the open end of the sock mouth part (12) in a circle.

6. The radiation-proof sock with a wear-resistant structure according to claim 1, characterized in that: The fabric of the sock body (1) is made of silver fiber and bamboo charcoal fiber intertwined.

7. The anti-radiation socks with a wear-resistant structure according to claim 1, characterized in that: The fabrics of the upper protective layer (6) and the lower protective layer (7) are made of bamboo charcoal fiber.

Citation Information

Patent Citations

  • Socks

    CN101317697B