Antiskid quick-dry knitted fabric

By incorporating moisture-wicking elements, breathable channels, and ventilation holes into the knitted fabric, combined with moisture-wicking yarns and anti-slip sheets, the problem of insufficient moisture wicking performance of knitted fabrics is solved, achieving rapid moisture wicking and anti-slip effects, and improving the breathability and comfort of the fabric.

CN223777974UActive Publication Date: 2026-01-09WUJIANG CITY XINGRUI KNITTING APPAREL
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Patent Information

Application Number
CN202520003288.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2026-01-09
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

Knitted fabrics have limited moisture-wicking properties, which makes it easy for the fabric to slip between the fabric and the skin after sweat is absorbed, thus reducing breathability.

Method used

A non-slip, quick-drying knitted fabric was designed. By setting moisture-wicking elements, breathable grooves, and breathable holes between the inner and outer layers, combined with moisture-wicking yarns and non-slip sheets, the breathability and moisture dissipation of the material are improved, and the contact area between the fabric and the skin is reduced.

Benefits of technology

It enables rapid wicking away of sweat, prevents slipping, improves the breathability and moisture-wicking properties of the fabric, and keeps the skin dry.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-slip quick-dry knitted fabric, which relates to the technical field of textiles, and is characterized in that a plurality of linear gaps are formed in an outer layer in a penetrating manner, the outer layer between the adjacent gaps deforms along the direction close to an inner layer and then abuts against the inner layer to form a plurality of ventilation grooves, and a plurality of moisture guiding pieces are arranged between the inner layer and the outer layer. The moisture absorption of the moisture guiding pieces is smaller than that of the outer layer and larger than that of the inner layer, ventilation spaces communicated with the ventilation grooves are formed among the adjacent moisture guiding pieces, the inner layer and the outer layer, a plurality of ventilation holes communicated with the ventilation spaces are formed in the inner layer in a penetrating mode, and the side, away from the outer layer, of the inner layer is additionally covered with a plurality of anti-skid pieces. Water in the fabric can be quickly dispersed and removed through the outer layer made of the linen fibers, the anti-skid performance of the fabric is improved through the anti-skid pieces made of the polyurethane materials, a good air circulation effect is achieved in the fabric through the ventilation spaces, the ventilation holes, the ventilation grooves and the pits which are communicated with one another, and the moisture dissipation performance of the whole fabric is enhanced.
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Description

Technical Field

[0001] This utility model relates to the field of textile technology, and more specifically, to anti-slip quick-drying knitted fabric. Background Technology

[0002] Knitted fabric is a type of textile fabric made by bending yarns into loops and interlocking them. It can be divided into warp-knitted fabric and weft-knitted fabric. The raw materials are mainly woven from fibers such as cotton, linen, wool and silk. It has the characteristics of being soft and skin-friendly, warm and comfortable, moisture-absorbing and highly elastic, and is therefore widely used in underwear, pantyhose, home furnishings and other fields.

[0003] Knitted fabrics are typically made of loose, porous materials with strong moisture absorption. They can quickly absorb large amounts of water, causing a large amount of sweat to be rapidly absorbed into the fabric when the wearer sweats. This clogs the pores in the fibers, reducing the fabric's breathability and limiting its moisture dissipation. As a result, the fabric cannot effectively remove moisture from the skin, making it prone to slipping due to the sweat.

[0004] Therefore, a new solution is needed to address this problem. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a non-slip and quick-drying knitted fabric to solve the problem that the knitted fabric has limited moisture dissipation performance and cannot remove the adsorbed water in time, which easily leads to slipping between the fabric and the skin.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: The anti-slip quick-drying knitted fabric includes an inner layer and an outer layer that are fixedly connected to each other. The outer layer has several straight slits. When the outer layer between adjacent slits is sewn to the inner layer with moisture-wicking yarn, it deforms in the direction closer to the inner layer to form several breathable grooves. Several moisture-wicking elements are provided between the inner layer and the outer layer. The moisture absorption of the moisture-wicking elements is less than that of the outer layer but greater than that of the inner layer. Adjacent moisture-wicking elements form breathable spaces that communicate with the breathable grooves between the inner layer and the outer layer. The inner layer has several breathable holes that communicate with the breathable spaces. Several anti-slip sheets are added to the side of the inner layer away from the outer layer.

[0007] The present invention is further configured such that: a plurality of the aforementioned slit arrays are disposed on the outer layer, and the outer layer deformation distance between adjacent slits along the fabric width direction is greater than the depth of the slits, and the outer layer between adjacent slits along the fabric width direction abuts against the inner layer after deformation.

[0008] The present invention is further configured such that: the thickness of the moisture-wicking component is greater than the deformation distance of the outer layer, and the inner layer deforms into a depression along the direction close to the outer layer after being sewn and fixed to the deformed outer layer.

[0009] The present invention is further configured such that: a plurality of vent holes on the inner layer are integrally formed by a loop weaving method, and a plurality of vent holes are arranged in an array within a recess, and the recess is interconnected with the vent space through the plurality of vent holes.

[0010] The present invention is further configured such that: the moisture-wicking component is cut from a substrate made of moisture-wicking yarn woven with plain knitting after being overlapped and fixed in multiple layers; the moisture-wicking yarn is formed by twisting a first strand and a second strand; the first strand is formed by twisting flax fiber; and the second strand is formed by twisting polyester fiber.

[0011] The present invention is further configured such that: the outer layer is made of moisture-wicking yarn by plain knitting and warp knitting, the moisture-wicking yarn is made by spirally winding the first strand around the second strand, and the content of the first strand in the outer layer is greater than the content of the first strand in the moisture-wicking element.

[0012] The present invention is further configured such that: the inner layer is woven from anti-slip yarn, the anti-slip yarn is made by spirally winding a second strand of yarn around a third strand of yarn, the third strand of yarn is made by twisting cotton fibers, and the moisture absorption of the first strand of yarn is greater than that of the third strand of yarn.

[0013] The present invention is further configured such that: a plurality of anti-slip sheets are symmetrically arranged between a plurality of adjacent recesses along the length direction of the fabric, and the anti-slip sheets are thin films made of polyurethane material.

[0014] In summary, this utility model has the following beneficial effects: flax fiber has strong moisture absorption and dissipation properties, allowing the outer layer to quickly dissipate the moisture it contains. Several moisture-wicking components and moisture-wicking yarns used to sew the inner and outer layers can promptly guide the moisture absorbed in the inner layer to the outer layer for dissipation. Polyester fiber has good quick-drying properties, ensuring the inner layer remains relatively dry when in contact with the skin, preventing slippage due to sweat. Several anti-slip sheets made of polyurethane material improve the fabric's anti-slip properties while reducing the contact area between the inner layer and the skin, thus slowing down the fabric's moisture absorption rate. Several interconnected breathable spaces, pores, grooves, and recesses improve the air circulation within the fabric, further enhancing the overall moisture dissipation of the fabric and preventing absorbed moisture from accumulating inside. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of the present invention. Figure 1 ;

[0016] Figure 2 for Figure 1Enlarged view of point A in the middle;

[0017] Figure 3 This is a schematic diagram of the structure of the present invention. Figure 2 ;

[0018] Figure 4 for Figure 3 Enlarged view of point B in the middle;

[0019] Figure 5 A cross-sectional view of the moisture-wicking yarn;

[0020] Figure 6 A cross-section of the loose-wet yarn;

[0021] Figure 7 This is a cross-section of the anti-slip yarn.

[0022] In the diagram: 1. Inner layer; 2. Outer layer; 3. Slit; 4. Ventilation groove; 5. Moisture-wicking component; 6. Ventilation space; 7. Ventilation hole; 8. Anti-slip sheet; 9. Moisture-wicking yarn; 10. Recess; 11. First strand; 12. Second strand; 13. Moisture-dissipating yarn; 14. Anti-slip yarn; 15. Third strand. Detailed Implementation

[0023] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0024] Example: This anti-slip, quick-drying knitted fabric, such as Figure 1 and Figure 6 As shown, the outer layer 2 consists of an inner layer 1 and an outer layer 2 that are fixedly connected to each other. The outer layer 2 is made by feeding moisture-wicking yarn 13 into a knitting machine and knitting it with plain knitting and warp knitting. During warp knitting, multiple moisture-wicking yarns 13 are simultaneously looped along the longitudinal direction of the fabric to form loops and knots, making the structure of the outer layer 2 stable and not easy to unravel after breaking. The moisture-wicking yarn 13 is made by spirally winding a first strand 11 onto a second strand 12 using a ring spinning process. The first strand 11 is made by twisting flax fibers using a twisting machine, and the second strand 12 is made by twisting polyester fibers using a twisting machine. Flax fibers have high breathability and moisture wicking properties, while polyester fibers have high strength and abrasion resistance. The outer layer 2 made by the moisture-wicking yarn 13 ensures its strength while giving the flax fibers inside a larger contact area, allowing the flax fibers in the outer layer 2 to fully contact the airflow from the outside and improve the moisture wicking effect.

[0025] like Figure 1 , Figure 4 and Figure 5As shown, several rectangular moisture-wicking elements 5 are provided between the inner layer 1 and the outer layer 2. The height of the moisture-wicking elements 5 is respectively abutted against the end faces of the inner layer 1 and the outer layer 2. After the moisture-wicking yarn 9 is fed into the knitting machine and knitted into a base material through plain knitting, the four base materials are first overlapped and hot-pressed together using a hot press machine. Then, the hot-pressed base material is cut into moisture-wicking elements 5 by a cutting machine. The moisture-wicking yarn 9 is formed by twisting a first strand 11 and a second strand 12 through a twisting machine. The content of the first strand 11 in the outer layer 2 is greater than that in the moisture-wicking element 5, so that the moisture absorption of the outer layer 2 is greater than that of the moisture-wicking element 5.

[0026] like Figure 1 and Figure 7 As shown, the inner layer 1 is made by feeding anti-slip yarn 14 into a transfer loop weaving machine and then weaving it using a transfer loop structure. The anti-slip yarn 14 is made by spirally winding a second strand 12 onto a third strand 15 using a ring spinning process. The third strand 15 is made by twisting cotton fibers using a twisting machine. Cotton fibers have good moisture absorption, which allows the inner layer 1 to absorb sweat produced by the wearer's skin and keep the skin dry. Polyester fibers have lower moisture absorption, so they have quick-drying properties. The inner layer 1, made by wrapping polyester fibers on cotton fibers, can maintain a certain degree of dryness when in contact with the skin. The moisture absorption of linen fibers is greater than that of cotton and polyester fibers, so the moisture absorption of the inner layer 1 is less than that of the moisture-wicking elements 5. The moisture-wicking elements 5 can guide the moisture absorbed in the inner layer 1 to the outer layer 2 in a timely manner to dissipate, avoiding slippage between the inner layer 1 and the skin due to sweat.

[0027] like Figure 1 , Figure 2 and Figure 4 As shown, a cutting machine is used to cut several straight slits 3 through the outer layer 2. The array of slits 3 is arranged on the outer layer 2. The outer layer 2 between adjacent slits 3 along the width direction of the fabric is sewn together with the inner layer 1 by moisture-wicking yarns 9. The moisture-wicking yarns 9 reinforce the outer layer 2 at the slits 3 to prevent it from coming apart. At the same time, the outer layer 2 between adjacent slits 3 deforms in the direction closer to the inner layer 1 to form two arc-shaped ventilation grooves 4. The slits 3 and ventilation grooves 4 improve the breathability of the outer layer 2 and increase the contact area between the outer layer 2 and the air, thereby enhancing the moisture dissipation performance of the outer layer 2. The moisture-wicking yarns 9 that are sewn together to fix the inner layer 1 and the outer layer 2 further accelerate the speed at which moisture in the inner layer 1 is guided to the outer layer 2, thus better maintaining the dryness of the inner layer 1.

[0028] like Figure 1 , Figure 2 and Figure 4As shown, several adjacent moisture-wicking elements 5 form several breathable spaces 6 between the end faces of the inner layer 1 and the outer layer 2 that are close to each other. The deformation distance of the outer layer 2 located between adjacent slits 3 is greater than the depth of the slits 3, so that the breathable grooves 4 and the breathable spaces 6 are interconnected. Several breathable holes 7 are opened through the inner layer 1. The several breathable holes 7 are all integrally formed on the inner layer 1 by the weaving method of the transfer loop structure. The several breathable holes 7 are all interconnected with the breathable spaces 6. The thickness of the moisture-wicking element 5 is greater than the deformation distance of the outer layer 2, so that the inner layer 1 deforms in the direction close to the outer layer 2 after being sewn and fixed with the deformed outer layer 2, forming a depression 10. The array of several breathable holes 7 is arranged in the depression 10, so that the depression 10 is interconnected with the breathable spaces 6 through the several breathable holes 7. The interconnected breathable spaces 6, breathable holes 7, breathable grooves 4 and depressions 10 improve the air circulation effect inside the fabric. The good air circulation effect further enhances the overall moisture dissipation of the fabric.

[0029] like Figures 1-3 As shown, the inner layer 1 is covered with several anti-slip sheets 8 on the side away from the outer layer 2. The anti-slip sheets 8 are thin films made of polyurethane material. The anti-slip sheets 8 are symmetrically arranged between several adjacent recesses 10 along the length of the fabric. Polyurethane material has good anti-slip and waterproof properties. By adding several anti-slip sheets 8, the anti-slip performance of the fabric is improved while reducing the contact area between the inner layer 1 and the skin. This reduces the speed at which the fabric absorbs sweat when worn, and prevents the fabric from absorbing water too quickly, which would block the pores in the fibers and reduce the breathability and moisture wicking effect.

[0030] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.

Claims

1. A non-slip, quick-drying knitted fabric, comprising an inner layer (1) and an outer layer (2) fixedly connected to each other, characterized in that: The outer layer (2) has several straight slits (3) through it. When the outer layer (2) between adjacent slits (3) is sewn to the inner layer (1) through moisture-wicking yarn (9), it deforms in the direction close to the inner layer (1) until it abuts against the inner layer (1) to form several breathable grooves (4). Several moisture-wicking elements (5) are provided between the inner layer (1) and the outer layer (2). The moisture absorption of the moisture-wicking elements (5) is less than that of the outer layer (2) and greater than that of the inner layer (1). Adjacent moisture-wicking elements (5) form a breathable space (6) that communicates with the breathable grooves (4) between the inner layer (1) and the outer layer (2). The inner layer (1) has several breathable holes (7) through it that communicate with the breathable space (6). Several anti-slip sheets (8) are added to the side of the inner layer (1) away from the outer layer (2).

2. The anti-slip quick-drying knitted fabric according to claim 1, characterized in that: A plurality of the aforementioned slits (3) arrays are disposed on the outer layer (2), and the deformation distance of the outer layer (2) between adjacent slits (3) along the fabric width direction is greater than the depth of the slits (3), and the outer layer (2) between adjacent slits (3) along the fabric width direction abuts against the inner layer (1) after deformation.

3. The anti-slip quick-drying knitted fabric according to claim 2, characterized in that: The thickness of the moisture-wicking element (5) is greater than the deformation distance of the outer layer (2), and the inner layer (1) deforms into a recess (10) in the direction close to the outer layer (2) after being sewn and fixed with the deformed outer layer (2).

4. The anti-slip quick-drying knitted fabric according to claim 3, characterized in that: The inner layer (1) has several vent holes (7) that are integrally formed by the weaving of the loop structure. The array of several vent holes (7) is arranged in the recess (10). The recess (10) is interconnected with the ventilation space (6) through several vent holes (7).

5. The anti-slip quick-drying knitted fabric according to claim 4, characterized in that: The moisture-wicking component (5) is cut from a substrate made of multiple layers of moisture-wicking yarn (9) woven with plain knitting. The moisture-wicking yarn (9) is formed by twisting a first strand (11) and a second strand (12). The first strand (11) is formed by twisting flax fiber, and the second strand (12) is formed by twisting polyester fiber.

6. The anti-slip quick-drying knitted fabric according to claim 5, characterized in that: The outer layer (2) is made by plain knitting and warp knitting of moisture-wicking yarn (13). The moisture-wicking yarn (13) is made by spirally winding the first strand (11) around the second strand (12). The content of the first strand (11) in the outer layer (2) is greater than the content of the first strand (11) in the moisture-wicking component (5).

7. The anti-slip quick-drying knitted fabric according to claim 6, characterized in that: The inner layer (1) is woven from anti-slip yarn (14), which is made by spirally winding a second strand (12) onto a third strand (15). The third strand (15) is made by twisting cotton fibers. The moisture absorption of the first strand (11) is greater than that of the third strand (15).

8. The anti-slip quick-drying knitted fabric according to claim 3, characterized in that: Several anti-slip pieces (8) are symmetrically arranged between several adjacent recesses (10) along the length of the fabric. The anti-slip pieces (8) are thin films made of polyurethane material.