Sock with heel not prone to falling

The innovative sock design with elastic cuffs and a binding strap system addresses the issue of slippage by increasing friction and stability, effectively keeping the sock in place during intense exercise.

CN223094835UActive Publication Date: 2025-07-15DUOLONG DEQING JIEPIN IND CO LTD
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Patent Information

Application Number
CN202422034786.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-07-15
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

Socks are prone to fall off when walking for a long time or exercising vigorously, and the prior art is difficult to effectively prevent this phenomenon.

Method used

The elastic cord, inner and outer elastic patch, restraint belt and suspended rope structure is adopted to enhance the fit between the sock opening and the feet, and the restraint belt and booster belt are used to increase friction, combining the support of the suspended rope and suspended ring to prevent the sock from falling off.

Benefits of technology

Effectively prevent the socks from falling off during exercise, ensuring that the wearer is not affected during high-intensity training, and improving the fit and fixation between the socks and feet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of socks, and particularly relates to a sock with a heel not prone to falling, which comprises a sock body, an elastic rib top is arranged at a welt of the sock body, an inner elastic patch is attached to the inner wall of the elastic rib top, an outer elastic patch is attached to the outer wall of the elastic rib top, and the inner elastic patch and the outer elastic patch are detachably connected. The two ends of the binding belt are connected with binding blocks in a sliding mode, pressurizing blocks used for applying pressure to the binding belt are installed on the binding blocks, and a soft belt attached to the skin is arranged on the inner side of the binding belt. The fitting degree of the opening position of the sock body and the foot position is increased through the inner elastic paste, the outer elastic paste and the elastic rib top, the lower leg position is sleeved and supported through the binding belt, the pressurizing belt and the binding block, the height of the elastic rib top is supported under the hanging of the hanging rope, the phenomenon that the heel of the sock body falls off and is separated from the heel is avoided, and the sock body is convenient to use. Therefore, the phenomenon that the heels fall off can be effectively prevented after the shoes are worn.
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Description

Technical Field

[0001] The utility model belongs to the technical field of socks, and in particular relates to a pair of socks that are not easy to fall off. Background Art

[0002] Sock heels falling off is a common but annoying problem. There may be many reasons for sock heels falling off. On the one hand, the wrong size of socks is a common factor. If the socks are too large and the fit between the feet and the socks is not good enough, the heels are likely to fall off during walking or exercise. On the other hand, the material and design of the socks may also have an impact; when the wearer walks for a long time or exercises vigorously, the foot moves more widely. If the socks themselves are not fixed well, the heels are likely to fall off. Utility Model Content

[0003] The utility model provides a pair of socks with heels that are not easy to fall off, which solves the problem that the heels of socks fall off during long-term walking or intense exercise.

[0004] The utility model provides the following technical solution: comprising a sock body, wherein an elastic cuff is arranged at the sock opening of the sock body, an inner elastic patch is fitted on the inner wall of the elastic cuff, an outer elastic patch is fitted on the outer wall of the elastic cuff, the inner elastic patch and the outer elastic patch are detachably connected, a binding belt is arranged above the elastic cuff, binding blocks are slidably connected at both ends of the binding belt, a boosting block for applying pressure to the binding belt is installed on the binding block, a sling is hung at the bottom of the boosting block, a hanging ring is installed on the sock body, and the boosting block is connected to the hanging ring through the hanging rope.

[0005] Wherein, a soft belt for skin contact is provided on the inner side of the restraint belt, and a pressurizing belt for increasing friction with the pressurizing block is provided on the outer side of the restraint belt.

[0006] Among them, a plurality of connecting blocks are installed on one side of the inner elastic patch, a slot is opened at one end of the connecting block, the elastic cuff and the sock body are opened with perforations matching the connecting block, and a block engaged with the slot is installed on one side of the outer elastic patch.

[0007] The outer elastic patch is provided with a clearance hole for making way for the hanging ring, an attachment layer is installed on one side of the inner elastic patch, and support belts are fixedly connected to both ends of the outer elastic patch.

[0008] Wherein, a support plate is installed at the bottom of the restraining block, and a hanging plate is rotatably connected to the bottom of the support plate, and the bottom end of the hanging plate is fixedly connected to the hanging rope.

[0009] Wherein, a connecting column is fixedly connected to the top of the support plate, and a connecting groove matching the connecting column is opened at the bottom of the restraining block.

[0010] The beneficial effects of the present utility model are as follows: By means of the inner elastic patch, the outer elastic patch and the elastic ribbing, the fitting degree between the opening position of the sock body and the foot position is increased. Then, through the restraint band, the pressurizing band and the restraint block sleeve, it is supported at the calf position. Under the suspension of the suspension rope, the height of the elastic ribbing is supported, making it difficult for the sock body to have the phenomenon of heel dropping and separation from the heel part. Thus, after wearing, it can effectively prevent the occurrence of heel detachment, ensuring that when the wearer is undergoing high-intensity training during exercise, it will not have an impact on the wearer.

[0011] Parts not involved in this device are the same as those in the prior art or can be implemented using the prior art. Description of the Drawings

[0012] Figure 1 is the front view structural schematic diagram of the present utility model;

[0013] Figure 2 is the split structural schematic diagram of the outer elastic patch in the present utility model;

[0014] Figure 3 is the present utility model Figure 1 the enlarged schematic diagram of A in;

[0015] Figure 4 is the present utility model Figure 2 the enlarged schematic diagram of B in.

[0016] In the figure: 1, sock body; 11, elastic ribbing; 12, perforation; 13, suspension ring; 14, wear-resistant sock heel; 2, inner elastic patch; 21, attaching layer; 22, connecting block; 23, card slot; 24, outer elastic patch; 241, relief hole; 25, card block; 26, support band; 3, restraint band; 31, soft band; 32, pressurizing band; 33, restraint block; 34, pressurizing block; 341, connecting groove; 35, support plate; 351, connecting column; 36, suspension plate; 37, suspension rope. Detailed Embodiment

[0017] Please refer to Figures 1-4 , the present utility model provides the following technical solutions: It includes a sock body 1. An elastic ribbing 11 is provided at the sock mouth of the sock body 1. An inner elastic patch 2 is attached to the inner wall of the elastic ribbing 11, and an outer elastic patch 24 is attached to the outer wall of the elastic ribbing 11. The inner elastic patch 2 and the outer elastic patch 24 are detachably connected. A restraint band 3 is provided above the elastic ribbing 11. Both ends of the restraint band 3 are slidably connected with restraint blocks 33. A pressurizing block 34 for applying pressure to the restraint band 3 is installed on the restraint blocks 33. A soft band 31 for attaching to the skin is provided on the inner side of the restraint band 3, and a pressurizing band 32 for increasing the friction with the pressurizing block 34 is provided on the outer side of the restraint band 3. A suspension rope 37 is suspended at the bottom of the pressurizing block 34. A suspension rope 37 corresponding to the suspension rope 37 is installed on the sock body 1 and the elastic ribbing 11.

[0018] In this embodiment: After the sock body 1 is worn to the foot position, the elastic rib 11 has a certain elasticity, increasing the friction between it and the wearer's ankle, so that the sock body 1 can adhere to the instep after being normally worn. In special situations such as high-intensity training, when the fit between the foot and the sock is insufficient, it is easy to have the heel drop during walking or exercise. At this time, when it is necessary to ensure that the sock body 1 does not have the phenomenon of heel drop after being worn, when wearing the sock body 1, the inner elastic patch 2 can be attached to the opening position of the sock body 1, so that one side of the inner elastic patch 2 adheres to the heel part, increasing the fit between the opening position of the sock body 1 and the wearer's heel part. At the same time, the attachment layer 21 can be connected to the outer elastic patch 24. The outer elastic patch 24 is located on the outside of the sock body 1, so that the outer elastic patch 24 can support at the inner wall position of the shoe mouth, ensuring that the attachment layer 21 is supported by the outer elastic patch 24 and will not be separated from the opening position of the sock body 1. When wearing the sock body 1, the restraint band 3 can be sleeved on the wearer's calf position. At this time, the two ends of the restraint band 3 can be limited by the restraint blocks 33, so that the two ends of the restraint band 3 slide in the inner walls of the restraint blocks 33. At the same time, the pressure-increasing blocks 34 installed on the restraint blocks 33 can support the pressure-increasing band 32 installed on the outside of the restraint band 3 when limiting the two ends of the restraint band 3, increasing the friction between the pressure-increasing band 32 and one end of the pressure-increasing block 34, so that the restraint band 3 can closely adhere to the calf position according to its fixed position and is located above the elastic rib 11. By the restraint block 33 being in the tail position, its position can correspond to the heel position of the elastic rib 11, so that at this time, the suspension cord 37 installed at the bottom of the restraint block 33 can correspond to the suspension ring 13 installed on the sock body 1. At this time, due to the support of the restraint band 3, the height of the restraint block 33 is limited and remains unchanged, and the suspension cord 37 can suspend the suspension ring 13, so that the elastic rib 11 can be supported by the suspension ring 13 and the suspension cord 37, making it difficult for the elastic rib 11 to have the phenomenon of heel drop and separation from the heel part when the wearer's moving foot moves greatly. Thus, after being worn, it can effectively prevent the occurrence of heel-off phenomenon, ensuring that it will not affect the wearer during high-intensity training of the wearer.

[0019] The sock body 1 is provided with a wear-resistant sock heel 14. On one side of the inner elastic patch 2, a number of connecting blocks 22 are installed. One end of the connecting block 22 is provided with a card slot 23. Through holes 12 matching the connecting blocks 22 are provided on the elastic rib 11 and the sock body 1. On one side of the outer elastic patch 24, a clamping block 25 that is engaged with the card slot 23 is installed; the wear-resistant sock heel 14 provided on the sock body 1 can support at the bottom of the wearer's heel, increasing the frictional support force between it and the inner wall of the shoe. The connecting blocks 22 installed on one side of the inner elastic patch 2 can pass through the through holes 12 provided on the sock body 1 and the elastic rib 11, so that the card slot 23 provided on the connecting block 22 can, after the outer elastic patch 24 is attached to the outer wall of the elastic rib 11, enable the clamping block 25 to be engaged with the card slot 23, enabling the outer elastic patch 24 to be supported and fixed outside the sock body 1, enabling the outer elastic patch 24 to support at the shoe mouth position and increasing the degree of fit between the sock body 1 and the wearer's foot.

[0020] On the outer elastic patch 24, a relief hole 241 for making way for the hanging ring 13 is provided. On one side of the inner elastic patch 2, an attaching layer 21 is installed. At both ends of the outer elastic patch 24, support bands 26 are fixedly connected; the relief hole 241 provided on the outer elastic patch 24 can make way for the installation position of the hanging ring 13. When the inner elastic patch 2 is at the position of the wearer's foot through the attaching layer 21, the attaching layer 21 can increase the adhesion force between it and the foot position. The support bands 26 installed at both ends of the outer elastic patch 24 are used to enable the outer elastic patch 24 to be sleeved on the elastic rib 11 and support and reinforce the position of the outer elastic patch 24.

[0021] At the bottom of the restraint block 33, a support plate 35 is installed. At the bottom of the support plate 35, a hanging plate 36 is rotatably connected. The bottom end of the hanging plate 36 is fixedly connected to the hanging rope 37; the support plate 35 installed at the bottom of the restraint block 33 can be connected to the bottom of the restraint block 33, enabling the support plate 35 to install and support the hanging plate 36. When the support plate 35 rotates on the hanging plate 36 and the hanging plate 36 supports the hanging rope 37, the support plate 35 can be installed and separated from the bottom of the restraint block 33 through rotation.

[0022] At the top of the support plate 35, a connecting column 351 is fixedly connected. At the bottom of the restraint block 33, a connecting groove 341 matching the connecting column 351 is provided; the connecting column 351 fixedly connected to the top of the support plate 35 can be engaged with the connecting groove 341 provided at the bottom of the restraint block 33, so that the support plate 35 can be detachably connected to the bottom of the restraint block 33, facilitating their respective separation, so that after the sock body 1 is separated, it can be worn separately.

[0023] Working principle and usage process of the utility model: After the sock body 1 is worn to the foot position, the elastic cuffs 11 can support at the ankle position. When wearing the sock body 1, the inner elastic patch 2 is attached to the opening position of the sock body 1, with one side of the inner elastic patch 2 attached to the heel part, increasing the fitting degree between the opening position of the sock body 1 and the wearer's heel part. Then, through the restraint belt 3 being restricted by the restraint block 33 and the pressure increasing block 34, it can be sleeved on the calf position. At this time, the suspension rope 37 installed at the bottom of the restraint block 33 corresponds to the suspension ring 13 installed on the sock body 1 and the elastic cuffs 11. While the suspension rope 37 is pressed against the bottom of the restraint block 33 and supported by it, it can suspend the suspension ring 13, so that the elastic cuffs 11 can be supported by the suspension ring 13 and the suspension rope 37. When the wearer's moving foot has a large range of movement, the position of the elastic cuffs 11 can be supported, making it difficult to produce the phenomenon of the sock falling off and separating from the heel part. Thus, after wearing, it can effectively prevent the phenomenon of the sock coming off the heel, ensuring that when the wearer is performing high-intensity training during exercise, it will not affect the wearer.

Claims

1. A sock that is not easy to slip off the heel, including a sock body (1), wherein an elastic ribbing (11) is provided at the mouth of the sock body (1), and the characteristics are as follows: The inner wall of the elastic cuff (11) is fitted with an inner elastic patch (2), and the outer wall of the elastic cuff (11) is fitted with an outer elastic patch (24); the inner elastic patch (2) and the outer elastic patch (24) are detachably connected; a binding belt (3) is provided above the elastic cuff (11); binding blocks (33) are slidably connected at both ends of the binding belt (3); a booster block (34) for applying pressure to the binding belt (3) is installed on the binding block (33); a sling (37) is suspended at the bottom of the booster block (34); a sling ring (13) is installed on the sock body (1); the booster block (34) is connected to the sling ring (13) via the sling ring (37).

2. The non-slip sock according to claim 1, characterized in that: The inner side of the restraint belt (3) is provided with a soft belt (31) for contact with the skin, and the outer side of the restraint belt (3) is provided with a pressure-increasing belt (32) for increasing friction with the pressure-increasing block (34).

3. The sock that is not easy to slip off the heel according to claim 1, wherein: A plurality of connecting blocks (22) are installed on one side of the inner elastic patch (2), a slot (23) is provided at one end of the connecting block (22), a through hole (12) matching the connecting block (22) is provided on the elastic cuff (11) and the sock body (1), and a block (25) engaging with the slot (23) is installed on one side of the outer elastic patch (24).

4. The sock that is not easy to fall off at the heel according to claim 1, wherein: The outer elastic patch (24) is provided with a clearance hole (241) for making way for the hanging ring (13), an attachment layer (21) is installed on one side of the inner elastic patch (2), and support belts (26) are fixedly connected at both ends of the outer elastic patch (24).

5. The non-slip sock according to claim 1, characterized in that: A support plate (35) is installed at the bottom of the restraining block (33), and a hanging plate (36) is rotatably connected to the bottom of the support plate (35), and the bottom end of the hanging plate (36) is fixedly connected to the hanging rope (37).

6. The non-slip-off sock according to claim 5, characterized in that: A connecting column (351) is fixedly connected to the top of the support plate (35), and a connecting groove (341) matching the connecting column (351) is formed at the bottom of the restraining block (33).