Wearable stretch sock
By incorporating a diagonally cut zipper and a limiting block structure in the elastic stockings, combined with silicone pads to adjust the pressure, the problem of inconvenient wearing and taking off of existing elastic stockings has been solved, achieving a fast, stable, and adjustable wearing experience, suitable for the elderly and rehabilitation patients.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-03-31
AI Technical Summary
Existing elastic stockings are cumbersome to put on and take off, especially for critically ill comatose patients or postoperative patients who have difficulty putting them on and taking them off by themselves. In addition, the Velcro structure is prone to catching hair or fabric, and the stickiness decreases after long-term use, making it inconvenient for the elderly or rehabilitation patients to operate.
A wearable elastic stocking was designed, which uses a zipper with an oblique cut-out, combined with a limiting block and a silicone pad. The oblique zipper path reduces resistance, the positioning block prevents loosening, and the silicone pad in the slot achieves pressure adjustment. The stocking body is made of high elastic fiber and carbon fiber reinforcement to ensure comfort and support.
These elastic stockings allow for quick and stable on and off, and the pressure can be adjusted as needed to improve wearing efficiency. They are suitable for the elderly and rehabilitation patients, and the material design ensures comfort and stability.
Smart Images

Figure CN224055376U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical appliance technical field especially relates to a wearable elastic socks. BACKGROUND
[0002] Because elastic socks have higher pressure, it is difficult to wear than general silk socks, and the skin of the affected part is rubbed when wearing, in the case that the patient cannot wear and take off the elastic socks by himself or herself, the family members or medical staff need to assist in wearing and taking off, or when the patient needs to adjust the wearing and taking off of the elastic socks without help, the existing elastic socks basically adopt buckles to connect and adjust, and the buckles need to be connected one by one when wearing and taking off, which is relatively cumbersome.
[0003] The existing elastic socks are realized to be easily worn and taken off by adopting magic tape or connecting buckle, such as the anti-venous elastic socks disclosed in patent publication No. CN219127059U, the first magic tape and the fourth magic tape with the same length as the sock body are arranged, the sock body is placed under the patient's leg by lifting the patient's leg slightly, the adaptability is adjusted by the different connection lengths of the three magic tapes, the magic tape is adopted to combine the split type sock body, and the quick wearing and taking off are realized. However, the magic tape structure is adopted, the hair or fabric is easily stuck during use, the adhesion decreases after long-term use, especially the position needs to be repeatedly adjusted to ensure the adhesion when wearing, the operation needs to be performed by two hands to pull tightly and press to fix, the quick and accurate positioning cannot be realized, and the operation experience of the old people or the rehabilitation patients is not good. SUMMARY
[0004] The utility model provides a simple structure, convenient to wear and take off and adjustable pressure wearable elastic socks.
[0005] To achieve the above-mentioned purpose, the technical scheme of the utility model is as follows:
[0006] A wearable elastic sock, comprising a sock cover and a sock body integrally connected to the top of the sock cover, a break is obliquely arranged from the arch of the foot to the upper side of the rear side of the sock body, the break is connected by a zipper, and a sawtooth structure is arranged on the lower end of the zipper head.
[0007] Preferably, the break is obliquely arranged at an angle of 45° from the lower end to the upper end.
[0008] Preferably, the limiting block is an arc-shaped structure made of plastic material with a thickness of 1-2 mm.
[0009] Preferably, the slots are respectively located at the arch of the foot and the calf of the sock, and each set of slots is positioned to avoid the zipper.
[0010] Preferably, the thickness of the silicone pad is 2mm, 4mm or 6mm.
[0011] Preferably, the surface of the silicone pad has a fish scale pattern.
[0012] Preferably, the socks and sock body each include an inner medical-grade silver ion fiber layer and an outer pressure layer made of high-elasticity fibers woven using 3D molding knitting technology. The pressure layer is woven with several vertically arranged carbon fiber reinforcing ribs, and the diameter of the carbon fiber reinforcing ribs is 0.3 mm.
[0013] Preferably, the medical-grade anionic fiber is a fiber made of 78% polyamide and 22% elastic fiber.
[0014] The above-mentioned technical solution of this utility model has the following beneficial effects:
[0015] This wearable elastic stocking features a slanted opening that extends the zipper path, reducing resistance caused by the large circumference of the upper and lower legs during zipping. After zipping, a positioning block prevents it from slipping off, improving wearing efficiency and stability. The stocking has slots on the inside for inserting silicone pads of varying thicknesses, allowing for pressure adjustment through physical compression. Made of highly elastic fibers, the stocking incorporates carbon fiber reinforcement to resist longitudinal stretching, ensuring both comfort and support while maintaining shape stability. Attached Figure Description
[0016] Fig. 1 This is a schematic diagram of the structure of the wearable elastic stockings of this utility model;
[0017] Fig. 2 This is an enlarged view of the zipper pull structure;
[0018] Fig. 3 This is a schematic diagram of the slot structure inside the sock. Detailed Implementation
[0019] The embodiments of the wearable elastic stockings of this utility model will be described in detail below with reference to the accompanying drawings and examples.
[0020] Please see Figs. 1-3As shown, this utility model discloses a wearable elastic stocking, including a stocking cover 1 and a stocking body 2 integrally connected to the top of the stocking cover 1. The stocking body 2 has a diagonal cut 3 extending upwards from the arch of the foot on its rear side. A zipper 4 connects to the cut 3, and the lower end of the zipper head 5 of the zipper 4 has a serrated structure 6. A limiting block 7 is connected to the side of the stocking body 2 near the upper cut 3. The limiting block 7 extends towards the other side of the cut and is connected to the stocking body 2 via a snap fastener 70. The upper edge of the limiting block 7 has a second serration 8 that engages with the serrated structure 6. The distance between the limiting block 7 and the top of the stocking body is not less than the length of the zipper head 5. When the zipper head 5 is pulled to the top, the second serration 8 of the limiting block 7 can engage with the serrated structure of the zipper head 5. The inner side of the stocking body 2 has two sets of slots 9 with upper openings, and each slot 9 contains a silicone pad 90.
[0021] The break point 3 is inclined at 45° from the bottom up, which extends the zipper path and reduces the resistance caused by the large circumference of the upper and lower legs when pulling and closing, making the operation more effortless.
[0022] The limiting block 7 is an arc-shaped structure made of plastic material with a thickness of 1-2mm. The arc length of the limiting block 7 is set to ensure that it fits snugly against the sock body when fastened.
[0023] The slots 9 are respectively located on the arch and calf of the sock body 2, with each group of slots 9 positioned away from the zipper 4. The size and number of each group of slots 9 can be adjusted according to actual conditions, such as being positioned opposite each other on both sides of the arch and calf.
[0024] The slot 9 can accommodate silicone pads 90 of different thicknesses. During use, different thicknesses can be selected according to individual needs to adjust the pressure. Preferably, the thickness of the silicone pad 90 is 2mm, 4mm, or 6mm.
[0025] The surface of the silicone pad 90 is decorated with a fish scale pattern, which reduces resistance when pulled out and automatically expands and locks in place after insertion.
[0026] Both the stocking liner 1 and the stocking body 2 include an inner medical-grade silver ion fiber layer 10 and an outer pressure layer 11 made of high-elasticity fibers woven using 3D molding knitting technology. The pressure layer 11 has several vertically arranged carbon fiber reinforcing ribs 12 woven on it, each rib having a diameter of 0.3 mm, used to resist longitudinal tensile stress. The medical-grade anion fiber layer 10 is made of 78% polyamide and 22% elastic fibers.
[0027] To use, unzip the side zipper and slip the stocking 1 onto your foot. Pull the stocking 2 up to the calf below the knee, then zip it up to close. When the zipper is at the top, engage the stop block to hold the zipper head in place. When pressure adjustment is needed, select the appropriate silicone insert before wearing and push it into the slot.
[0028] The above-described embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Various modifications and improvements made by those skilled in the art to the technical solutions of the present utility model without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.
Claims
1. A wearable elastic sock comprising a sock cover and a sock body integrally connected to a top of the sock cover, characterized in that, The rear side of the sock body is obliquely provided with a break at the instep, and the break is connected by a zipper, the upper surface of the lower end of the zipper head is provided with a sawtooth structure; the side of the break close to the upper end of the sock body is connected with a limiting block, the limiting block extends towards the other side of the break and is connected to the sock body by a snap fastener, the upper edge of the limiting block is provided with a second sawtooth which is engaged with the sawtooth structure; the inner side of the sock body is provided with two groups of insertion slots which are open at the upper end, and the insertion slots are provided with silica gel pads.
2. The compression stocking of claim 1, wherein, The break is obliquely arranged at an angle of 45° from the lower end.
3. The compression stocking of claim 1, wherein, The limiting block is an arc-shaped structure made of plastic material with a thickness of 1-2mm.
4. The compression stocking of claim 1, wherein, The insertion slots are respectively arranged at the instep and the calf of the sock body, and each group of the insertion slots is arranged away from the zipper.
5. The compression stocking of claim 1, wherein, The thickness of the silica gel pad is 2mm, 4mm or 6mm.
6. The compression stocking of claim 1, wherein, The surface of the silica gel pad is provided with fish scale patterns.
7. The compression stocking of claim 1, wherein, The sock cover and the sock body each include an inner layer of medical-grade silver ion fiber layer and an outer layer of pressure layer made of high-elasticity fiber by 3D forming knitting technology, a plurality of vertical carbon fiber reinforcing ribs are knitted on the pressure layer, and the diameter of the carbon fiber reinforcing rib is 0.3mm.
Citation Information
Patent Citations
Anti-varicosity stretch sock
CN219127059U