Compression running sock
By setting up a rubber compression structure in the Achilles tendon and arch areas of running socks, the problem of insufficient protection of the Achilles tendon and arch of existing running socks is solved, better support and blood circulation is achieved, and fatigue and soreness during running are reduced.
Patent Information
- Application Number
- CN202421371891.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-06-14
AI Technical Summary
The production cost of existing running socks is expensive, the protection of the Achilles tendon and arch of the foot is insufficient, the cushioning effect is lacking, the non-slip function is not anti-slip, the safety is poor, and the breathability is poor. Long-term running will cause soreness and swelling of the leg muscles.
A compression running sock is designed, with the back of the sock tube having an Achilles tendon area, and a plurality of first rubbers extending along the length of the sock tube being built into it; the middle of the sock body is equipped with an arch area, and a plurality of second rubbers extending along the length of the sock body are built into it; the front of the sock tube is equipped with an upper extensor support belt area and a tibial anterior muscle area, a fourth rubber band on the back of the sock body is installed, and a fifth rubber band on the sock mouth is installed.
By setting up a rubber compression structure in the Achilles tendon and arch area, it provides additional support, reduces damage to the Achilles tendon and arch, improves blood circulation, reduces fatigue and soreness during running, and improves user experience.
Smart Images

Figure CN222954921U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of socks, and particularly to a compression running sock. Background Art
[0002] In daily life and sports, as a type of sock, running socks can provide professional protection for the user's feet, thereby providing a more comfortable sports experience. Therefore, the comfort when using running socks is very important.
[0003] Most running socks on the current market are expensive to produce, and the protection of the Achilles tendon and arch areas is not sufficient. They have no shock absorption effect, are not anti-slip, their safety performance is poor, their breathability is relatively poor, and running for a long time will cause soreness in the leg muscles. Summary of the Utility Model
[0004] The present disclosure provides a compression running sock to solve the problems existing in the prior art.
[0005] According to a first aspect of the present disclosure, there is provided a compression running sock, comprising:
[0006] A sock opening;
[0007] A sock barrel, on the back of the bottom of the sock barrel, there is an Achilles tendon area, and a plurality of first elastic bands are arranged in the Achilles tendon area. The first elastic bands are configured to extend along the length direction of the sock barrel, and the plurality of first elastic bands are configured to be spaced apart along the circumferential direction of the sock barrel in the Achilles tendon area;
[0008] A sock body, the middle part of the sock body is configured as an arch area, and the arch area is configured to extend along the circumferential direction of the sock body; a plurality of second elastic bands extending along the length direction of the sock body are arranged in the arch area;
[0009] A sock heel;
[0010] A sock toe.
[0011] In an embodiment of the present disclosure, an extensor upper support band area is provided on the front of the sock barrel, and the Achilles tendon area is configured to surround the back of the sock barrel and extend to both sides of the extensor upper support band area.
[0012] In an embodiment of the present disclosure, the first elastic bands are configured to gradually shorten from the side of the sock barrel to the front and / or back of the sock barrel, and the first elastic bands maintain the same length in the middle part of the back of the sock barrel.
[0013] In one embodiment of the present disclosure, the arch area is configured to surround the back of the sock tube and form two spaced free ends on the front of the sock tube; the second elastic band on the front of the sock body is configured to gradually shorten from outside to inside; the second elastic band on the back of the sock body is configured to maintain the same length.
[0014] In one embodiment of the present disclosure, the front of the sock tube is provided with a tibialis anterior muscle area, which is configured to extend along the length direction of the sock tube; a plurality of third elastic bands are arranged in the tibialis anterior muscle area and are configured to extend along the circumferential direction of the sock tube, and the plurality of third elastic bands are arranged at intervals in the length direction of the sock tube.
[0015] In one embodiment of the present disclosure, the sock body includes a subfibular retinaculum area, and a plurality of thinning portions arranged at intervals and extending circumferentially of the sock body are provided in the subfibular retinaculum area, and the thickness of the thinning portion is smaller than the thickness of the remaining positions of the subfibular retinaculum area.
[0016] In one embodiment of the present disclosure, the front of the sock body is configured to be provided with breathable mesh holes.
[0017] In one embodiment of the present disclosure, the areas on the back of the sock body between the sock heel and the arch area, and between the sock toe and the arch area are configured to be provided with a plurality of fourth elastic bands arranged at intervals, and the fourth elastic bands are configured to extend along the circumferential direction of the back of the sock body.
[0018] In one embodiment of the present disclosure, the thicknesses of the sock heel and the sock toe are configured to be greater than those of the sock tube and the sock body.
[0019] In one embodiment of the present disclosure, a fifth elastic band is provided at the sock mouth, and the fifth elastic band is configured to extend along the length direction of the sock tube, and the plurality of fifth elastic bands are configured to be arranged at intervals along the circumference of the sock mouth.
[0020] One beneficial effect of the present disclosure is that by providing an elastic compression structure in the Achilles tendon area and the arch area of the sock body, appropriate compression around the Achilles tendon can provide additional support for the user's Achilles tendon, help reduce fatigue and prevent Achilles tendonitis; the elastic structure provided in the arch area can support the user's arch and help disperse the pressure on the user's foot, provide stable support for the user's foot, and reduce foot fatigue during running.
[0021] Other features and advantages of the present disclosure will become clear through the following detailed description of the exemplary embodiments of the present disclosure with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The accompanying drawings incorporated in and constituting a part of this specification illustrate embodiments of the present disclosure and, together with the description thereof, serve to explain the principles of the present disclosure.
[0023] Figure 1 is a schematic structural view of the compression running socks of the present disclosure;
[0024] Figure 2 is a front view of the compression running socks of the present disclosure;
[0025] Figure 3 is a reverse view of the compression running socks of the present disclosure.
[0026] Figures 1 to 3 The one-to-one correspondence between the names of the components and the reference numerals in is as follows:
[0027] 1. Sock mouth; 11. Fifth elastic band; 2. Sock barrel; 21. Achilles tendon area; 211. First elastic band; 22. Extensor upper support band area; 23. Tibialis anterior muscle area; 231. Third elastic band; 3. Sock body; 31, Arch area; 311, Second elastic band; 32. Extensor lower support band area; 321. Thinning part; 33. Fourth elastic band; 4. Sock heel; 5. Sock toe. Detailed Description of the Embodiments
[0028] Now, various exemplary embodiments of the present disclosure will be described in detail with reference to the accompanying drawings. It should be noted that: Unless otherwise specifically stated, the relative arrangements of the components and steps set forth in these embodiments, the numerical expressions and values thereof do not limit the scope of the present disclosure.
[0029] The following description of at least one exemplary embodiment is merely illustrative in nature and is in no way intended to limit the present disclosure, its application, or its use.
[0030] Technologies, methods, and devices known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, such technologies, methods, and devices should be regarded as part of the specification.
[0031] It should be noted that: Similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further discussed in subsequent drawings.
[0032] In this document, "upper", "lower", "front", "rear", "left", "right", etc. are only used to represent the relative positional relationships between relevant parts, rather than to limit the absolute positions of these relevant parts.
[0033] In this document, "first", "second", etc. are only used for distinction from each other, rather than indicating importance, order, and the prerequisite for mutual existence, etc.
[0034] In this text, terms such as "equal" and "identical" are not strict mathematical and / or geometric limitations, and also include errors that can be understood by those skilled in the art and are allowed in manufacturing or use, etc.
[0035] The present disclosure provides a compression running sock, including: a sock mouth, a sock tube, a sock body, a sock heel, and a sock toe. The sock mouth, sock tube, sock body, sock heel, and sock toe are configured to be integrally knitted. The sock mouth is arranged at the uppermost end of the running sock, and its lower end is knitted and connected to the sock tube. The sock tube is arranged close to the human calf, and its upper end is knitted and connected to the sock mouth, and its lower end is knitted and connected to the sock body. The sock body is arranged close to the human foot, a sock toe is arranged at the front end of the sock body, and a sock heel is arranged at the rear end of the sock body.
[0036] In the prior art, most running socks are expensive to produce, and the protection of the Achilles tendon and arch areas is not in place enough, there is no shock absorption function, no anti-slip property, their safety is not good, the breathability is poor, and running for a long time will cause soreness in the leg muscles.
[0037] The present disclosure provides an Achilles tendon area on the back of the bottom of the sock tube, and a plurality of first elastic bands are arranged in the Achilles tendon area. The first elastic bands are configured to extend along the length direction of the sock tube, and the plurality of first elastic bands are configured to be arranged at intervals along the circumferential direction of the sock tube in the Achilles tendon area. During exercise, the back of the Achilles tendon is subjected to friction force when rubbing against the edge of the shoe, and chronic injuries are likely to occur at the Achilles tendon, which can lead to Achilles tendonitis in severe cases. In the present disclosure, the plurality of first elastic bands provide additional support to the Achilles tendon area, avoid excessive friction at the Achilles tendon, reduce the injury at the Achilles tendon, and the plurality of first elastic bands provide appropriate compression to the periphery of the Achilles tendon, improve the blood circulation around the Achilles tendon, and help relieve fatigue. The present disclosure provides an arch area in the middle of the sock body. The arch area is configured to extend along the circumferential direction of the sock body, and a plurality of second elastic bands extending along the length direction of the sock body are arranged in the arch area. During the movement process, the contact between the arch and the bottom of the shoe is less, the pressure and friction force received are smaller, and it is difficult to help disperse the foot pressure. However, in the present disclosure, the plurality of second elastic bands can play a certain role in arch support, increase the friction between the arch and the bottom of the shoe, the arch can disperse a part of the foot pressure, can improve the stability during running, and the plurality of second elastic bands have a certain compression effect on the arch, can improve the blood circulation around the arch, help reduce the foot fatigue during running, and improve the user experience.
[0038] The following describes the specific embodiments of the present disclosure with reference to the accompanying drawings.
[0039] In one embodiment of the present disclosure, in combination with Figure 1, the present disclosure provides a compression running sock, comprising: a sock mouth 1, a sock tube 2, a sock body 3, a sock heel 4, and a sock toe 5. A calcaneal tendon area 21 is provided on the back of the bottom of the sock tube 2, and the calcaneal tendon area 21 is arranged on the sock tube 2 corresponding to the human calcaneal tendon area. The upper end of the calcaneal tendon area 21 is woven and connected to the sock tube 2, and the lower end is woven and connected to the sock body 3. A plurality of first elastic bands 211 are provided in the calcaneal tendon area 21. The first elastic bands 211 are configured to extend along the length direction of the sock tube 2. The plurality of first elastic bands 211 are configured to be arranged at intervals along the circumferential direction of the sock tube 2 in the calcaneal tendon area 21. The first elastic bands 211 are configured to gradually shorten from the side surface of the sock tube 2 to the front and / or back of the sock tube 2, and the first elastic bands 211 maintain the same length in the middle part of the back of the sock tube 2. The first elastic bands 211 are configured as an axial strip structure, and the thickness of the strip structure of the first elastic bands 211 is thicker than that of the sock tube 2, that is, the axial strip structure of the first elastic bands 211 forms a protrusion on the sock tube 2. In addition, the material of the first elastic bands 211 can be latex silk or spandex silk.
[0040] During exercise, the back tendon rubs against the rear edge of the shoe and is stressed, and chronic injuries are likely to occur at the calcaneal tendon. In severe cases, it can lead to calcaneal tendonitis. In the present disclosure, a plurality of first elastic bands 211 arranged along the circumferential direction of the sock tube 2 are provided around the calcaneal tendon area 21. The plurality of first elastic bands 211 compress the periphery of the calcaneal tendon in the circumferential direction, apply a radial force to the periphery of the calcaneal tendon, make the sock tube 2 tighter in the calcaneal tendon area 21, accelerate the blood circulation near the calcaneal tendon area 21, and thus increase the oxygen content in the blood, which can relieve the fatigue problem during running. In addition, the plurality of first elastic bands 211 themselves can provide a certain support for the calcaneal tendon area 21. Since the first elastic bands 211 have strong elasticity, they can provide a certain buffer for the calcaneal tendon area 21 and the rear edge of the shoe. In addition, the first elastic bands 211 closer to the side surface of the sock tube 2 are longer, have a larger stress area, and exert a greater pressure on the calcaneal tendon. That is, the two sides of the calcaneal tendon are stressed the most, the front is stressed the least, and the back is stressed moderately and evenly. That is, the resultant force is forward, which can provide a supporting force for the calcaneal tendon, help improve sports performance. In addition, mild compression can reduce endogenous muscle vibration, thereby relieving leg soreness and fatigue, improving the comfort of the user, avoiding excessive friction at the calcaneal tendon, and reducing injuries at the calcaneal tendon.
[0041] In an embodiment of the present disclosure, in combination with Figure 1 , Figure 3, the middle part of the sock body 3 is configured as an arch area 31. The arch area 31 is arranged on the sock body 3 corresponding to the arch of the human foot. The front end and the rear end of the arch area 31 are woven and connected to the sock body 3; the arch area 31 is configured to extend along the circumferential direction of the sock body 3, and the arch area 31 is configured to surround the back of the sock body 3 and form two spaced free ends on the front of the sock body 3. The two free ends of the arch area 31 are configured as triangles or trapezoids, and the other parts of the arch area 31 are configured as rectangles. In addition, a plurality of second elastic bands 311 extending along the length direction of the sock body 3 are arranged in the arch area 31. The second elastic bands 311 on the front of the sock body 3 are configured to gradually become shorter from the outside to the inside, and the second elastic bands 311 on the back of the sock body 3 are configured to maintain the same length. The second elastic bands 311 are configured as axial strip structures. The axial strip structures of the second elastic bands 311 are configured to be longer in the radial direction relative to the sock body 3, that is, the thickness at the axial strip structures of the second elastic bands 311 is thicker, and the second elastic bands 311 are arranged more closely than the first elastic bands 211.
[0042] During exercise, the contact between the arch and the bottom of the shoe is less, and the pressure and friction received are smaller, making it difficult to disperse the foot pressure at the arch during exercise. In the present disclosure, a plurality of second elastic bands 311 are arranged in the arch area 31. The second elastic bands 311 themselves are thicker and more elastic than the fabric of the sock body 3. The second elastic bands 311 can play a certain role in supporting the arch, increasing the friction between the arch and the bottom of the shoe, helping to disperse a part of the foot pressure at the arch, and improving the stability during running. In addition, since the second elastic bands 311 compress the arch area 31, that is, the pressure on both sides and the back of the arch is greater, while the pressure on the front of the arch is smaller, and the pressure size decreases step by step from the side to the front. The stepped structure design of the second elastic bands 311 on the front of the arch area 31 is more in line with the characteristics of the human arch, has better fit with the human arch, and better provides a buffering effect on the arch. In addition, the plurality of second elastic bands 311 are arranged closely, applying a radial force to the arch along the circumferential direction, having a certain compression effect on the arch, can improve the blood circulation around the arch, help reduce foot fatigue during running, and improve the user experience.
[0043] In an embodiment of the present disclosure, in combination with Figure 1 , Figure 2, on the front of the sock tube 2, there is an extensor upper support band area 22. The Achilles tendon area 21 is configured to surround the back of the sock tube 2 and extend to both sides of the extensor upper support band area 22. The extensor upper support band area 22 is arranged in the area of the sock tube 2 corresponding to the extensor upper support band of the human body. The extensor upper support band area 22 is configured to be below the tibialis anterior muscle area 23 and connected to the tibialis anterior muscle area 23. Both sides of the extensor upper support band area 22 are respectively connected to both ends of the Achilles tendon area 21. The extensor upper support band area 22 is in an irregular polygon shape, and together with the Achilles tendon area 21, it is configured to be cylindrical. During exercise, the Achilles tendon area 21 compresses and tightens the area around the Achilles tendon, while the extensor upper support band area 22 is configured as a non-elastic compression structure. By applying a circumferential tension to the Achilles tendon area 21, the extensor upper support band area 22 avoids excessive pressure concentration in the Achilles tendon area 21, relieves the pressure on the area around the Achilles tendon, and improves the comfort of the user's Achilles tendon area.
[0044] In one embodiment of the present disclosure, in combination with Figure 1 , Figure 2 , on the front of the sock tube 2, there is a tibialis anterior muscle area 23. The tibialis anterior muscle area 23 is configured to extend along the length direction of the sock tube 2. The tibialis anterior muscle area 23 is arranged in the area of the sock tube 2 corresponding to the tibialis anterior muscle of the human body. The upper end of the tibialis anterior muscle area 23 is woven and connected to the sock tube 2, and the lower end of the tibialis anterior muscle area 23 is woven and connected to the extensor upper support band area 22. Moreover, a partial area at the upper end of the tibialis anterior muscle area 23 is configured to be a rounded triangle or trapezoid, while other areas of the tibialis anterior muscle area 23 are configured to be a rectangle or a rounded rectangle. In addition, the tibialis anterior muscle area 23 is configured to have a thickness greater than that of the sock tube 2; multiple third elastic bands 231 are arranged in the tibialis anterior muscle area 23. The third elastic bands 231 are configured to extend along the circumferential direction of the sock tube 2. The multiple third elastic bands 231 are arranged at intervals in the length direction of the sock tube 2. The third elastic bands 231 in the tibialis anterior muscle area 23 are configured to be a strip structure along the circumferential direction of the sock tube 2. The width of the strip structure of the third elastic bands 231 is wider than that of the first elastic band 211 and the second elastic band 311, and the third elastic bands 231 are arranged closely, that is, the tibialis anterior muscle area 23 has a wide pressure range and a large pressure acting force on the leg.
[0045] During exercise, multiple third elastic bands 231 compress the anterior tibialis muscle area 23. The compression range of the anterior tibialis muscle area 23 is large, the pressure effect is strong, the blood circulation is faster, and the oxygen content in the blood is higher. It can reduce muscle vibration and fatigue, help improve sports performance and accelerate the recovery of energy loss. The upper end of the anterior tibialis muscle area 23 becomes narrower along the direction of the sock mouth 1, and the anterior tibialis muscle area 23 fits more closely to the anterior tibialis muscle of the human body, making the pressure on the human body around the upper end of the anterior tibialis muscle area 23 show a gradient change. By compressing the leg, endogenous muscle vibration can be reduced, thereby alleviating leg soreness and fatigue. In addition, since the thickness of the anterior tibialis muscle area 23 is thicker than that of the sock barrel 2, and the third elastic band 231 of the anterior tibialis muscle area 23 has strong elasticity, when impacted, the anterior tibialis muscle area 23 can play a buffering role, avoid excessive pressure around the tibia, reduce the impact force on the tibia, and has a certain protective effect on the area around the tibia.
[0046] In one embodiment of the present disclosure, in combination with Figure 1 , Figure 2 , the sock body 3 includes a submuscular extensor retinaculum area 32. Multiple thinning portions 321 arranged at intervals and extending circumferentially around the sock body 3 are provided in the submuscular extensor retinaculum area 32. The thickness of the thinning portion 321 is less than the thickness of the remaining positions of the submuscular extensor retinaculum area 32. The submuscular extensor retinaculum area 32 is provided in the area of the sock body 3 corresponding to the submuscular extensor retinaculum of the human body. The submuscular extensor retinaculum area 32 is woven and connected to the sock body 3 around its perimeter, and the submuscular extensor retinaculum area 32 is configured to gradually become narrower from the rear end of the sock body 3 to the front end of the sock body 3, and the submuscular extensor retinaculum area 32 is trapezoidal; the thinning portions 321 in the submuscular extensor retinaculum area 32 are stepped along the length direction of the sock body 3. The thinning portions 321 are arranged at intervals, and the circumferential length of the thinning portions 321 becomes shorter from the rear end to the front end of the sock body 3. Since the thinning portions 321 are relatively thinner than the sock body 3, a folding structure is formed in the submuscular extensor retinaculum area 32.
[0047] Due to the stepped folding structure of the submuscular extensor retinaculum area 32, the thinning portions 321 are more likely to undergo elastic deformation on the front surface of the sock body 3 during exercise, and the force on the instep is stepped, that is, the pressure on the front end is smaller, while the pressure on the rear end is larger. The stepped folding structure conforms more to the characteristics of the human instep and is more conducive to the movement of the instep, which can improve the comfort during exercise. The submuscular extensor retinaculum area 32 can be trapezoidal, triangular, semi-circular, or can also be set to other basic shapes, and the present disclosure does not limit this.
[0048] In one embodiment of the present disclosure, the front surface of the sock body 3 is configured to be provided with ventilation mesh holes. The ventilation mesh hole design is used in the front surface area of the sock body 3 to help keep the feet ventilated and reduce the accumulation of moisture and heat.
[0049] In one embodiment of the present disclosure, in combination with Figure 3, the areas on the back of the sock body 3 located between the heel 4 and the arch area 31, and the areas located between the toe 5 and the arch area 31 are configured to be provided with a plurality of fourth elastics 33 arranged at intervals. The fourth elastics 33 are configured to extend circumferentially along the back of the sock body 3. Denote the area between the heel 4 and the arch area 31 as the first area, and the area between the toe 5 and the arch area 31 as the second area. The fourth elastics 33 in the first area are knitted and connected to the arch area 31 and the heel 4 on the back of the sock body 3, while the fourth elastics 33 in the second area are knitted and connected to the arch area 31 and the toe 5 on the back of the sock body 3. Moreover, the fourth elastics 33 are configured to be uniformly distributed in the first area and the second area in a circumferential strip structure, and the length of the fourth elastics 33 is configured to be the same as the width of the sock body 3.
[0050] During exercise, the fourth elastics 33 exert a certain pressure on both the front end and the back end of the sole of the foot, increasing the friction of the sole of the foot and improving the stability during exercise. In addition, through the compression of the sole of the foot, the blood circulation around the sole of the foot can be improved, which helps to reduce foot fatigue during running and improve the user experience.
[0051] In an embodiment of the present disclosure, the thicknesses of the heel 4 and the toe 5 are configured to be greater than those of the sock barrel 2 and the sock body 3. Figure 1 , the heel 4 and the toe 5 are respectively arranged at the rear end and the front end of the sock body 3. The heel 4 and the toe 5 are both configured to be bag-shaped and are both knitted and connected to the sock body 3. By thickening the heel 4 and the toe 5 in the radial direction, the pressure resistance of the heel 4 and the toe 5 is stronger, that is, the buffering ability for the foot is stronger, the shock resistance of the foot is stronger, and the user comfort is higher.
[0052] In an embodiment of the present disclosure, Figure 1 , a fifth elastic 11 is provided at the sock mouth 1. The fifth elastic 11 is configured to extend along the length direction of the sock barrel 2, and a plurality of fifth elastics 11 are configured to be arranged at intervals along the circumference of the sock mouth 1. The sock mouth 1 is arranged at the uppermost end of the compression running sock. The sock mouth 1 is cylindrical and the lower end is knitted and connected to the sock barrel 2. The fifth elastic 11 at the sock mouth 1 is in an axial linear structure. The fifth elastic 11 is thicker than other areas of the sock mouth 1, and the fifth elastics 11 are arranged closely and are uniformly distributed along the cylindrical structure of the sock mouth 1. During exercise, generally, the sock may fall off due to the continuous movement of the leg. The fifth elastic 11 can provide sufficient pressure radially at the sock mouth 1, that is, the fifth elastic 11 has a large friction force on the human body at the sock mouth 1. This anti-slip design structure avoids the problem of the sock slipping during running and can keep the sock mouth 1 in an appropriate position, improving the user experience.
[0053] The embodiments of the present disclosure have been described above. The above description is exemplary, not exhaustive, and is not limited to the disclosed embodiments. Many modifications and variations are obvious to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, the practical application, or the improvement of technology in the market, or to enable other ordinary skill in the art to understand the embodiments disclosed herein. The scope of the present disclosure is defined by the appended claims.
Claims
1. A compression running sock, characterized in that: include: Sock opening (1); A sock (2), wherein an Achilles tendon area (21) is arranged on the back of the bottom of the sock (2), and a plurality of first elastic bands (211) are arranged in the Achilles tendon area (21), wherein the first elastic bands (211) are configured to extend along the length direction of the sock (2), and the plurality of first elastic bands (211) are configured to be arranged at intervals in the Achilles tendon area (21) along the circumferential direction of the sock (2), wherein the first elastic bands (211) are configured to gradually shorten along the side of the sock (2) toward the front and / or back of the sock (2), and the first elastic bands (211) maintain the same length in the middle part of the back of the sock (2), and the first elastic bands (211) are configured to be an axial band-like structure, and form a protrusion on the sock (2); A sock body (3), wherein the middle portion of the sock body (3) is configured as an arch region (31), and the arch region (31) is configured to extend along the circumferential direction of the sock body (3); a plurality of second elastic bands (311) extending along the length direction of the sock body (3) are arranged in the arch region (31), wherein the arch region (31) is configured to surround the back of the sock body (3) and form two spaced free ends on the front of the sock body (3); the second elastic bands (311) on the front of the sock body (3) are configured to gradually shorten from the outside to the inside; and the second elastic bands (311) on the back of the sock body (3) are configured to maintain the same length; Sock heels (4); Sock toe (5).
2. The compression running socks according to claim 1, characterized in that: An extensor upper support band area (22) is provided on the front side of the sock tube (2), and the Achilles tendon area (21) is constructed to surround the back side of the sock tube (2) and extend to both sides of the extensor upper support band area (22).
3. The compression running socks according to claim 1, characterized in that: The front side of the sock (2) is provided with a tibialis anterior muscle area (23), and the tibialis anterior muscle area (23) is configured to extend along the length direction of the sock (2); a plurality of third elastic bands (231) are provided in the tibialis anterior muscle area (23), and the third elastic bands (231) are configured to extend along the circumferential direction of the sock (2), and the plurality of third elastic bands (231) are arranged at intervals in the length direction of the sock (2).
4. The compression running socks according to claim 1, characterized in that: The sock body (3) comprises an extensor retinaculum sublux area (32), and a plurality of thinning portions (321) arranged at intervals and extending in the circumferential direction of the sock body (3) are provided in the extensor retinaculum sublux area (32), wherein the thickness of the thinning portions (321) is smaller than the thickness of other positions of the extensor retinaculum sublux area (32).
5. The compression running socks according to claim 1, characterized in that: The front side of the sock body (3) is configured to be provided with a breathable mesh.
6. The compression running socks according to claim 1, characterized in that: The bottom of the sock body (3) is located between the sock heel (4) and the arch area (31), and the bottom of the sock body (3) is located between the sock toe (5) and the arch area (31). A plurality of fourth elastic bands (33) are arranged at intervals, and the fourth elastic bands (33) are configured to extend along the circumference of the sock body (3) at the bottom of the sock body (3).
7. The compression running socks according to claim 1, characterized in that: The thickness of the sock heel (4) and the sock toe (5) is constructed to be greater than that of the sock tube (2) and the sock body (3).
8. The compression running socks according to claim 1, characterized in that: A fifth elastic band (11) is provided at the sock opening (1), the fifth elastic band (11) being configured to extend along the length direction of the sock tube (2), and a plurality of the fifth elastic bands (11) being configured to be arranged at intervals in the circumferential direction of the sock opening (1).