Invisible sock with air cushion

By incorporating air cushions and multiple layers of cushioning components inside the sock sole, the design solves the problem of traditional air-cushioned invisible socks being unable to achieve precise support and shock absorption, providing all-around foot support and comfort, and enhancing the overall wearing experience.

CN223873307UActive Publication Date: 2026-02-06YIWU NANJI KNITTING CO LTD
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Patent Information

Application Number
CN202520395701.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-02-06
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

Traditional air-cushioned invisible socks are designed to provide precise support and effective shock absorption for all parts of the foot, resulting in short-lasting comfort and failure to comprehensively alleviate pressure on different parts of the foot.

Method used

The socks feature an air cushion and multiple layers of shock absorption components inside the sole, including a rubber elastic layer, a silicone cushioning pad, a breathable layer, and an antibacterial layer. This multi-layered design provides comprehensive support and shock absorption, enhancing foot comfort and hygiene.

Benefits of technology

It provides precise support and shock absorption for all parts of the foot, improving comfort and hygiene, and ensuring a comfortable experience for extended wear.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of articles for daily use, and discloses an air cushion invisible sock which comprises a sock body, a sock bottom is fixedly connected to the bottom of the sock body, air cushions are arranged on the middle side and the upper side of the interior of the sock bottom, a first rubber elastic layer is arranged on the upper side of the sock bottom, a middle protective layer is arranged on the middle side of the sock bottom, and a second rubber elastic layer is arranged on the lower side of the sock bottom. A buffering assembly is arranged in the middle protection layer and used for buffering mechanical energy of the feet of the user; the buffering assembly comprises a second rubber elastic layer, the second rubber elastic layer is arranged in the middle of the middle protection layer, and a bottom supporting layer is arranged on the lower side of the sock sole. According to the air cushion, ground impact force is effectively absorbed, pressure borne by the feet during walking or running is reduced, friction discomfort is avoided, additional support is provided, it is ensured that the buffering effect of the air cushion is fully exerted, and therefore the comfort of the feet is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of daily necessities, especially relates to a gas cushion invisible sock. BACKGROUND

[0002] With the emphasis on health and comfortable life, more and more people begin to choose high-comfort shoes and socks, especially when standing, walking or running for a long time, comfort and support become the key to selection. Gas cushion shoes and comfortable socks have been widely used in sports shoes, work shoes and daily life due to their shock absorption, cushioning and support functions. However, most traditional insoles or socks can only provide single comfort, and the precise support and effective shock absorption of each part of the foot have not been achieved in design, especially in the area with high pressure on the sole, the problem of foot fatigue and discomfort has not been completely solved.

[0003] Traditional gas cushion invisible socks provide comfortable wearing experience through built-in gas cushion design, which is usually used to avoid foot fatigue or reduce the pressure caused by high-heeled shoes. When using, first put the socks on the feet, make sure the gas cushion part is aligned with the sole and heel to provide comfortable effect. Since the design is invisible, the socks are usually made of thin and breathable materials, which are not easy to show on the outside of the shoes, suitable for wearing in formal or daily occasions. Gas cushion invisible socks are generally suitable for various shoe types, especially high-heeled shoes or tight shoes, to help improve comfort and enhance foot support.

[0004] Traditional gas cushion invisible socks are mostly designed with only bottom gas cushion, which is difficult to effectively combine the cushioning design with the comfort of socks, usually there are problems such as comfort not lasting, comfort concentrated in certain parts, or unable to fully relieve the foot pressure of different parts. INVENTION CONTENTS

[0005] In order to make up for the above shortcomings, the utility model provides a gas cushion invisible sock, which aims to improve the problems of traditional gas cushion invisible socks, such as comfort not lasting, comfort concentrated in certain parts, or unable to fully relieve the foot pressure of different parts.

[0006] To achieve the above purpose, the utility model provides the following technical scheme: a gas cushion invisible sock, comprising a sock body, a sock bottom fixedly connected to the bottom of the sock body, gas cushions arranged on the inner middle side and upper side of the sock bottom, a rubber elastic layer one arranged on the upper side of the sock bottom, a middle protection layer arranged on the middle side of the sock bottom, and an internal buffer assembly of the middle protection layer, the buffer assembly is used for buffering the mechanical energy of the user's foot.

[0007] The buffer assembly comprises a rubber elastic layer two arranged in the middle of the middle protection layer, and a bottom support layer arranged on the lower side of the sock bottom.

[0008] Further, the sock body and the inside of the sock sole are provided with a bacteria-proof layer, the top and bottom of the sock sole are provided with a silica gel buffer pad, the outer wall of the silica gel buffer pad is provided with a fitting layer, one side of the rubber elastic layer one is provided with a support layer, and the inside of the middle protection layer is provided with a durable assembly.

[0009] Further, the durable assembly comprises an anti-skid layer and a breathable layer, the anti-skid layer is arranged on the inside upper side of the middle protection layer, and the breathable layer is arranged on the inside lower side of the middle protection layer.

[0010] Further, the bacteria-proof layer is made of bamboo charcoal fiber, which effectively inhibits bacterial growth and reduces the occurrence of foot odor and athlete's foot.

[0011] Further, the rubber elastic layer one is made of neoprene, which is used for enhancing the adaptability of the front end of the instep, the rubber elastic layer two is made of synthetic rubber, which is used for enhancing the adaptability of the middle part of the instep, and the bottom support layer is made of thermoplastic polyurethane, which is used for enhancing the supporting force of the bottom of the sock.

[0012] Further, the inside of the silica gel buffer pad is provided with spandex, which is used for ensuring that the silica gel buffer pad forms good contact with the foot and avoids sliding.

[0013] Further, the breathable layer is made of mesh fabric.

[0014] The utility model has the following beneficial effects:

[0015] 1、 in the utility model, the air cushion invisible sock is provided with air cushion in the inside of sock sole, effectively absorbs ground impact force, reduces the pressure borne by the foot when walking or running, the air cushion forms a buffer area, shock absorption and provides comfortable support, the rubber elastic layer one on the upper side of the sock sole enhances the adaptability of the front end of the instep, avoids friction discomfort and provides additional support, ensures that the buffering effect of the air cushion can be fully played, thereby improving the comfort of the foot.

[0016] 2、 in the utility model, the silica gel buffer pad is arranged on the top and bottom of the sock sole and is in close contact with the foot through the fitting layer, ensuring that the buffering effect can be better transmitted to the foot, especially the toe and heel area, the bacteria-proof layer inhibits bacterial growth and reduces odor, the anti-skid layer keeps the sock stable and fitted, the breathable layer helps to reduce foot sweat and keep the foot dry, the overall design improves the foot protection, comfort and hygiene, and ensures the comfortable experience during long-time wearing. DRAWINGS

[0017] Figure 1 A three-dimensional structure schematic view of the air cushion invisible sock is provided for the utility model;

[0018] Figure 2The utility model provides a kind of air cushion invisible socks' sock bottom internal structure schematic view.

[0019] Figure 3 The utility model provides a kind of air cushion invisible socks' silica gel buffer pad structure schematic view.

[0020] Figure 4 The utility model provides a kind of air cushion invisible socks' middle part protective layer internal structure schematic view.

[0021] Legend:

[0022] 1, sock body;2, sock bottom;3, air cushion;4, antibacterial layer;5, rubber elastic layer one;6, support layer;7, middle part protective layer;8, bottom support layer;9, silica gel buffer pad;10, fit layer;11, breathable layer;12, rubber elastic layer two;13, antiskid layer. Specific embodiments

[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0024] Refer to Figure 1 - Figure 4 An embodiment provided by the utility model: an air cushion invisible sock, including sock body 1, the bottom of sock body 1 is fixedly connected with sock bottom 2, the inside middle side and upper side of sock bottom 2 are all provided with air cushion 3, the upper side of sock bottom 2 is provided with rubber elastic layer one 5, the middle side of sock bottom 2 is provided with middle part protective layer 7, the inside buffer assembly of middle part protective layer 7, buffer assembly is used to buffer the mechanical energy of user's foot;

[0025] Buffer assembly includes rubber elastic layer two 12, rubber elastic layer two 12 is arranged in the middle part of middle part protective layer 7, the lower side of sock bottom 2 is provided with bottom support layer 8;

[0026] Specifically, first, the inside of the sock body 1 and the sock bottom 2 are provided with an air cushion 3, which effectively absorbs the impact force from the ground, reduces the pressure on the feet when walking or running, and forms a buffer area between the sole and the sole through its elastic structure, providing shock absorption and comfortable support. The air cushion 3 can provide different intensity of cushioning according to the different needs of foot movement, effectively relieve the pressure caused by ground impact, thereby reducing foot fatigue and improving the comfort of the wearer. In addition, the rubber elastic layer one 5 on the upper side of the sock bottom 2 is made of neoprene, which enhances the adaptability of the front end of the foot. This layer can help the socks better fit the feet, avoid discomfort caused by friction, and provide additional support, so that the cushioning effect of the air cushion 3 is fully realized, further improving the overall comfort. Through the elastic properties of neoprene, the rubber elastic layer one 5 effectively reduces the friction of the foot, ensuring that the socks remain comfortable and fit during various activities. The middle protective layer 7 in the middle of the sock bottom 2 contains a rubber elastic layer two 12, which is made of synthetic rubber and is mainly used to enhance the adaptability of the middle part of the foot, ensuring that the socks remain stable during exercise. The elasticity and support of synthetic rubber ensure that the socks remain stable during different activities of the feet and can effectively share the pressure on the feet. In addition, the bottom support layer 8 enhances the pressure resistance of the socks by providing strong support, preventing excessive wear and tear. The bottom support layer 8 is made of thermoplastic polyurethane, which has good wear resistance, ensuring that the socks will not be damaged due to excessive use during long-term wear, thereby improving the overall durability and service life of the socks.

[0027] Referring to Figure 1 - Figure 4 The inside of the sock body 1 and the sock bottom 2 are provided with an air cushion 3, which effectively absorbs the impact force from the ground, reduces the pressure on the feet when walking or running, and forms a buffer area between the sole and the sole through its elastic structure, providing shock absorption and comfortable support. The air cushion 3 can provide different intensity of cushioning according to the different needs of foot movement, effectively relieve the pressure caused by ground impact, thereby reducing foot fatigue and improving the comfort of the wearer. In addition, the rubber elastic layer one 5 on the upper side of the sock bottom 2 is made of neoprene, which enhances the adaptability of the front end of the foot. This layer can help the socks better fit the feet, avoid discomfort caused by friction, and provide additional support, so that the cushioning effect of the air cushion 3 is fully realized, further improving the overall comfort. Through the elastic properties of neoprene, the rubber elastic layer one 5 effectively reduces the friction of the foot, ensuring that the socks remain comfortable and fit during various activities. The middle protective layer 7 in the middle of the sock bottom 2 contains a rubber elastic layer two 12, which is made of synthetic rubber and is mainly used to enhance the adaptability of the middle part of the foot, ensuring that the socks remain stable during exercise. The elasticity and support of synthetic rubber ensure that the socks remain stable during different activities of the feet and can effectively share the pressure on the feet. In addition, the bottom support layer 8 enhances the pressure resistance of the socks by providing strong support, preventing excessive wear and tear. The bottom support layer 8 is made of thermoplastic polyurethane, which has good wear resistance, ensuring that the socks will not be damaged due to excessive use during long-term wear, thereby improving the overall durability and service life of the socks.

[0028] Specifically, the top and bottom of the sock bottom 2 are provided with a silica gel cushion 9, and the inside of the silica gel cushion 9 is provided with spandex, which is used to ensure that the silica gel cushion 9 forms good contact with the foot and avoids slipping. The elasticity and softness of the spandex material enable the silica gel cushion 9 to closely fit the foot, avoiding the influence of slipping on the buffering effect and ensuring a comfortable wearing experience. The fitting layer 10 further improves the stability of the cushion, ensuring that the buffering effect of the silica gel cushion 9 can be more directly transmitted to the foot, improving comfort and stability. The antibacterial layer 4 is made of bamboo charcoal fiber material, which can effectively inhibit bacterial growth and reduce foot odor problems, keeping the feet dry. Bamboo charcoal fiber not only has good antibacterial properties, but also can absorb moisture and sweat, ensuring the dryness and hygiene of the feet during long-term wear. The anti-slip layer 13 effectively prevents the socks from slipping during wear, ensuring that the socks closely fit the feet, especially when walking or exercising, and are not easily slipped or deformed. The breathable layer 11 is made of mesh fabric material, which has excellent breathability, helping to reduce foot sweating and keep the feet dry, preventing overheating and discomfort. The combined effect of these designs improves the overall comfort of the socks, reduces friction and discomfort, and ensures a comfortable experience for the wearer during long-term use.

[0029] Working principle: When the air cushion invisible socks are needed, the inside of the sock bottom 2 is provided with an air cushion 3, which can effectively absorb the impact force from the ground and reduce the pressure on the feet during walking or running. The air cushion 3 has an elastic structure that forms a buffer area between the sole and the shoe sole, thereby providing shock absorption and comfortable support. In addition, the upper side of the sock bottom 2 is provided with a rubber elastic layer one 5, which can enhance the adaptability of the front end of the foot surface and help the socks better fit the feet, avoiding discomfort caused by friction. The rubber elastic layer one 5 can effectively provide additional support, allowing the air cushion 3 to fully exert its buffering effect and further improve the comfort of the feet. The rubber elastic layer two 12 inside the middle protective layer 7 in the middle of the sock bottom 2 is used to enhance the adaptability of the middle part of the foot surface, ensuring that the socks remain stable during exercise and provide appropriate support. The bottom support layer 8 enhances the pressure resistance of the entire pair of socks by providing strong support to the bottom of the socks, avoiding excessive wear and tear.

[0030] In addition, the top and bottom of the sock bottom 2 are provided with silica gel buffer pads 9, which are in close contact with the feet through the adhesive layer 10, effectively avoiding the sliding between the buffer pad and the feet, while ensuring that the buffering effect of the silica gel buffer pad 9 can be more directly transmitted to the feet, ensuring comfortable fit, avoiding sliding, while adding comfort and stability to the socks, the bacteria prevention layer 4 can effectively inhibit bacterial growth, reduce foot odor problems, keep the feet dry, the anti-skid layer 13 can effectively prevent the socks from sliding during wearing, ensuring that the socks are closely fitted to the feet, especially when walking or exercising; and the breathable layer 11 has excellent breathability, helping to reduce foot sweating and keep the feet dry, not only improving the comfort of the socks, but also effectively preventing unnecessary friction and overheating, further enhancing the wearing experience of the user.

[0031] Finally, it should be noted that: the above is only the preferred embodiment of the present application, and is not intended to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included within the protection scope of the present application.

Claims

1. An air-cushioned panty-hose comprising a panty portion (1), characterized in that: The bottom of the sock body (1) is fixedly connected with a sock bottom (2), the inner middle side and upper side of the sock bottom (2) are provided with air cushions (3), the upper side of the sock bottom (2) is provided with a rubber elastic layer one (5), the middle side of the sock bottom (2) is provided with a middle protective layer (7), the inner buffer assembly of the middle protective layer (7), the buffer assembly is used for buffering the mechanical energy of the user's foot; The buffer assembly comprises a rubber elastic layer two (12), the rubber elastic layer two (12) is arranged in the middle of the middle protective layer (7), and the lower side of the sock bottom (2) is provided with a bottom support layer (8).

2. An air-cushioned pantyhose according to claim 1, characterized in that: The inner part of the sock body (1) and the sock bottom (2) is provided with a bacteria-proof layer (4), the top and bottom of the sock bottom (2) are provided with a silica gel buffer pad (9), the outer wall of the silica gel buffer pad (9) is provided with a fitting layer (10), one side of the rubber elastic layer one (5) is provided with a support layer (6), and the inner part of the middle protective layer (7) is provided with a durable assembly.

3. An air-cushioned pantyhose according to claim 2, characterized in that: The durable assembly comprises an anti-skid layer (13) and a breathable layer (11), the anti-skid layer (13) is arranged on the inner upper side of the middle protective layer (7), and the breathable layer (11) is arranged on the inner lower side of the middle protective layer (7).

4. An air-cushioned pantyhose according to claim 2, characterized in that: The bacteria-proof layer (4) is made of bamboo charcoal fiber, which effectively inhibits bacterial growth and reduces the occurrence of foot odor and athlete's foot.

5. An air-cushioned pantyhose according to claim 1, characterized in that: The rubber elastic layer one (5) is made of neoprene, which is used to enhance the adaptability of the front end of the foot, the rubber elastic layer two (12) is made of synthetic rubber, which is used to enhance the adaptability of the middle part of the foot, and the bottom support layer (8) is made of thermoplastic polyurethane, which is used to enhance the supporting force of the bottom of the sock.

6. An air-cushioned pantyhose according to claim 2, characterized in that: The inner part of the silica gel buffer pad (9) is provided with spandex, which is used to ensure that the silica gel buffer pad (9) and the foot form good contact, while avoiding sliding.

7. An air-cushioned pantyhose according to claim 3, characterized in that: The breathable layer (11) is made of mesh fabric.