Weft-knitted multifunctional anti-slip breathable comfortable fabric
By combining non-elastic yarns and elastic yarns in the weaving process, a non-slip, moisture-wicking, quick-drying, and breathable zone is formed, solving the problem of non-slip fabrics being stuffy and not breathable in summer. This achieves a balance between non-slip and breathability, improving wearing comfort and aesthetics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-29
- Publication Date
- 2026-03-31
AI Technical Summary
Existing anti-slip fabrics are stuffy and not breathable in summer, and have poor comfort, failing to meet the needs of both anti-slip stability and skin dryness at the same time.
It uses a combination of non-elastic yarn, elastic yarn and elastic yarn to weave anti-slip areas and moisture-wicking and breathable areas through looping, tucking or floating. By controlling the area ratio of different areas and combining specific weaving methods, anti-slip points, vertical stripes, horizontal stripes or surfaces are formed to achieve a balance between anti-slip and breathability.
This improves the breathability and comfort of the anti-slip fabric during summer use, avoiding stuffiness and stickiness, and providing excellent anti-slip performance and a dry wearing experience.
Smart Images

Figure CN121760122A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of textile technology, specifically a weft-knitted multifunctional anti-slip, breathable and comfortable fabric. Background Technology
[0002] As people's living standards continue to improve, the concepts of functional and fashionable clothing have gradually taken root in people's hearts. At the same time, as summer temperatures continue to rise and people's pursuit of comfortable, beautiful and appropriate clothing becomes stronger, such as off-shoulder dresses, tank tops, and one-shoulder long skirts, etc. In order to avoid the embarrassment of exposed shoulder straps, the existing solutions to this problem are as follows: (1) Applying breast stickers, which are thick, easy to slip off, and stuffy and not breathable; (2) Ordinary strapless bras, which are too tight and will dig into the flesh, and too loose and will ride up; (3) Traditional anti-slip bras, which use liquid ammonia anti-slip strips or liquid ammonia dots, are stuffy and not breathable in summer, and are thick and hard, with no aesthetics or comfort; (4) Ordinary anti-slip fabrics, although they solve the problem of traditional anti-slip bras being thick and hard, cannot effectively deal with moisture management. When sweat accumulates on the skin, the perspiration efficiency is low, resulting in the skin being in a sticky and damp state. These limitations highlight the fundamental contradiction between the anti-slip function and breathability of existing technologies, and cannot simultaneously meet the needs of anti-slip stability and dry and comfortable skin.
[0003] In summary, existing anti-slip fabrics have relatively limited functions. To enable anti-slip fabrics to not only have excellent anti-slip properties but also dry, breathable, and comfortable functions, a new type of customizable weft-knitted multi-functional anti-slip, breathable, and comfortable fabric has emerged. Summary of the Invention
[0004] To address the aforementioned technical problems, this invention provides a weft-knitted multifunctional anti-slip, breathable, and comfortable fabric.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0006] A weft-knitted multifunctional anti-slip, breathable, and comfortable fabric includes a fabric body. The fabric body is woven from at least three types of yarns: a non-elastic yarn Y1, an elastic yarn Y2, and an elastic yarn Y3, using loop weaving, tucking, or float weaving to form anti-slip areas and moisture-wicking, quick-drying, and breathable areas. On the same side of the fabric body, the area of the anti-slip area S1 is set to be 30% ≤ S1 < 100% of the fabric body area, and the area of the moisture-wicking, quick-drying, and breathable area S2 is set to be 20% of the fabric body area. <S2≤70%。
[0007] As a further improvement, the fabric body is a single-sided fabric with a single-layer structure. Part of the fabric body is an anti-slip area, and the remaining area of the fabric body is a moisture-wicking, quick-drying, and breathable area.
[0008] As a further improvement, the fabric body is a double-sided fabric with a double-layer structure. One layer is a moisture-wicking and quick-drying breathable layer, and the other layer is an anti-slip, moisture-wicking, quick-drying, and breathable layer. The entire area of the moisture-wicking and quick-drying breathable layer is a moisture-wicking and quick-drying breathable area, and the anti-slip, moisture-wicking, quick-drying, and breathable layer is composed of an anti-slip area and a moisture-wicking and quick-drying breathable area.
[0009] As a further improvement, the fabric body is a composite fabric with at least three layers, one outer layer being a moisture-wicking and quick-drying breathable layer, another outer layer being an anti-slip moisture-wicking and quick-drying breathable layer, and the middle layer being a moisture-wicking layer. The moisture-wicking layer is used to connect the moisture-wicking and quick-drying breathable layer and the anti-slip moisture-wicking and quick-drying breathable layer. The entire area of the moisture-wicking and quick-drying breathable layer is a moisture-wicking and quick-drying breathable area, and the anti-slip moisture-wicking and quick-drying breathable layer is composed of an anti-slip area and a moisture-wicking and quick-drying breathable area.
[0010] As a further improvement, the anti-slip area is composed of several anti-slip points; or the anti-slip area is composed of several anti-slip vertical or horizontal strips; or the anti-slip area is composed of several anti-slip surfaces.
[0011] As a further improvement, the anti-slip point is formed by two continuous weft stitches and one warp stitch, and the length and width of the anti-slip point are both ≤1MM;
[0012] The anti-slip vertical or horizontal stripes are formed by continuous weft > 2 stitches or continuous warp > 1 row of knitting. The width of the anti-slip vertical or horizontal stripes is ≤ 1 mm, and the length is 1 mm ≤ 5 mm.
[0013] The anti-slip surface is formed by continuous weft knitting of more than 2 stitches and continuous warp knitting of more than 1 row. The width of the anti-slip surface is ≥1MM and the length is ≥5MM.
[0014] As a further improvement, the moisture-wicking and breathable area is formed by weaving two continuous needles in the weft direction and one path in the warp direction to form several moisture-wicking and breathable mesh points, the length and width of which are ≤1MM;
[0015] Alternatively, the moisture-wicking, quick-drying, and breathable area is formed by weaving more than 2 stitches in the weft direction or more than 1 row in the warp direction to create several vertical or horizontal strips of moisture-wicking, quick-drying, and breathable mesh. The width of these vertical or horizontal strips is ≤1mm, and the length is 1mm ≤ 5mm.
[0016] Alternatively, the moisture-wicking, quick-drying, and breathable area is formed by several moisture-wicking, quick-drying, and breathable mesh surfaces woven with more than 2 continuous weft stitches and more than 1 continuous warp stitch, with the width of the moisture-wicking, quick-drying, and breathable mesh surface being ≥1MM and the length being ≥5MM.
[0017] As a further improvement, the moisture-wicking layer is formed by weaving elastic yarns and inelastic yarns, or by weaving elastic yarns alone, or by weaving inelastic yarns alone.
[0018] As a further improvement, the non-elastic yarn is nylon, polyester, or a composite yarn of nylon and polyester, and has a linear density of 10D to 200D, preferably 20D to 100D.
[0019] As a further improvement, the linear density of the elastic yarn is 10D to 150D, preferably 15D to 70D.
[0020] As a further improvement, the area of the anti-slip zone on the fabric body may be the same as or different from the area of the moisture-wicking, quick-drying, and breathable zone.
[0021] The present invention has the following beneficial technical effects:
[0022] By using different yarns in a looping, tucking, or floating weaving pattern, and dividing specific areas proportionally, a balance between slip resistance and breathability is achieved. This effectively combines slip resistance and breathability, improving wearing comfort and preventing stuffiness and slippage. It effectively solves the problems of existing slip-resistant fabrics being single-function, stuffy, and uncomfortable. This fabric provides excellent slip resistance and a dry, breathable wearing experience, thus avoiding the stuffiness, stickiness, and discomfort of traditional slip-resistant products in summer, improving both wearing comfort and aesthetics. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the structure of Embodiment 1 of the present invention;
[0024] Figure 2 This is a schematic diagram of the needle arrangement in Example 1;
[0025] Figure 3 This is a schematic diagram of the rhombus configuration in Example 1;
[0026] Figure 4 This is a schematic diagram of the structure of Embodiment 2 of the present invention;
[0027] Figure 5 This is a schematic diagram of the needle arrangement in Example 2;
[0028] Figure 6 This is a schematic diagram of the rhombus configuration in Example 2;
[0029] Figure 7 This is a schematic diagram of the structure of Embodiment 3 of the present invention;
[0030] Figure 8 This is a schematic diagram of the needle arrangement in Example 3;
[0031] Figure 9 This is a schematic diagram of the diamond-shaped configuration in Example 3; Detailed Implementation
[0032] Embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0033] In the description of this invention, it should be understood that if terms such as "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise" are used to indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0034] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection. They can refer to a mechanical connection or an electrical connection. They can refer to a direct connection or an indirect connection through an intermediate medium, and they can refer to the internal communication of two components or the interaction between two components. For those skilled in the art, the specific meaning of the above terms in this invention can be understood according to the specific circumstances.
[0035] Example 1
[0036] like Figure 1-3 As shown, a weft-knitted multifunctional anti-slip, breathable, and comfortable fabric includes a fabric body. The fabric body is woven from three types of yarns: non-elastic yarn Y1, elastic yarn Y2, and elastic yarn Y3, using looping, tucking, or floating yarns to form an anti-slip area 1 and a moisture-wicking, quick-drying, and breathable area 2. Various weaving methods are flexibly combined to achieve functional differentiation in different areas of the fabric body. In areas requiring anti-slip properties, the coefficient of friction can be increased by increasing yarn density or changing the loop structure; in areas requiring moisture-wicking and quick-drying breathability, breathability and moisture-wicking properties can be enhanced by forming a loose loop structure or using yarns with moisture-wicking properties.
[0037] The fabric itself is a single-sided fabric, meaning it has a single-layer structure. A portion of the fabric body is an anti-slip zone, while the remaining area is a moisture-wicking, quick-drying, and breathable zone. The area S1 of the anti-slip zone 1 is set to be 30% ≤ S1 < 100% of the fabric body area, and the area S2 of the moisture-wicking, quick-drying, and breathable zone 2 is set to be 20% of the fabric body area. <S2≤70%。
[0038] By defining specific area ratios, it is ensured that the fabric provides effective anti-slip functionality while also maintaining good moisture-wicking, quick-drying, and breathable properties. For example, when the anti-slip area accounts for a larger proportion, the overall anti-slip performance of the fabric is enhanced; when the moisture-wicking, quick-drying, and breathable area accounts for a larger proportion, the breathability and comfort of the fabric are improved. By rationally allocating the area of these two functional zones, a functional balance can be achieved in practical applications.
[0039] During weaving, the anti-slip area can utilize the shrinkage of elastic yarns Y2 and Y3 or the roughness of non-elastic yarn Y1 to increase friction, while the moisture-wicking and quick-drying breathable area may enhance breathability and moisture-wicking performance through a looser weave structure or the application of moisture-wicking yarns.
[0040] Example 2
[0041] like Figure 4-6 As shown, a weft-knitted multifunctional anti-slip, breathable, and comfortable fabric includes a fabric body. The fabric body is woven from three types of yarns: non-elastic yarn Y1, elastic yarn Y2, and elastic yarn Y3, using looping, tucking, or floating yarns to form an anti-slip area 1 and a moisture-wicking, quick-drying, and breathable area 2. The fabric body is a double-sided fabric, meaning it has a double-layer structure. One layer is a moisture-wicking, quick-drying, and breathable layer 3 as the garment layer, and the other layer is an anti-slip, moisture-wicking, quick-drying, and breathable layer 4 as the skin-contact layer. The entire area of the moisture-wicking, quick-drying, and breathable layer 3 is a moisture-wicking, quick-drying, and breathable area. The anti-slip, moisture-wicking, quick-drying, and breathable layer 4 is composed of both anti-slip and moisture-wicking, quick-drying, and breathable areas. Within the anti-slip, moisture-wicking, quick-drying, and breathable layer, the following conditions are met: the area of the anti-slip area S1 is 30% ≤ S1 < 100% of the area of the anti-slip, moisture-wicking, quick-drying, and breathable layer; and the area of the moisture-wicking, quick-drying, and breathable area S2 is 20% of the area of the anti-slip, moisture-wicking, quick-drying, and breathable layer. <S2≤70%。
[0042] As a skin-contact layer, the non-slip, moisture-wicking, quick-drying, and breathable layer combines non-slip and moisture-wicking properties, enhancing comfort when in contact with the skin.
[0043] Example 3
[0044] like Figure 7-9As shown, a weft-knitted multifunctional anti-slip, breathable, and comfortable fabric includes a fabric body, which is a three-layer composite fabric. One outer layer is a moisture-wicking, quick-drying, and breathable layer 3 as a garment layer; another outer layer is an anti-slip, moisture-wicking, quick-drying, and breathable layer 4 as a skin-contact layer; and the middle layer is a moisture-wicking layer 5, which connects the moisture-wicking, quick-drying, and breathable layer 3 and the anti-slip, moisture-wicking, quick-drying, and breathable layer 4. The entire area of the moisture-wicking, quick-drying, and breathable layer is a moisture-wicking, quick-drying, and breathable area. The anti-slip, moisture-wicking, quick-drying, and breathable layer consists of both anti-slip and moisture-wicking, quick-drying, and breathable areas, satisfying the following conditions: the area of the anti-slip area S1 is 30% ≤ S1 < 100% of the area of the anti-slip, moisture-wicking, quick-drying, and breathable layer; and the area of the moisture-wicking, quick-drying, and breathable area S2 is 20% of the area of the anti-slip, moisture-wicking, quick-drying, and breathable layer. <S2≤70%。
[0045] The moisture-wicking layer serves two purposes: connecting the layers and acting as a bridge for moisture transfer. It efficiently guides the moisture absorbed from the anti-slip, moisture-wicking, quick-drying, and breathable layer to the moisture-wicking, quick-drying, and breathable layer, or facilitates the directional transfer of moisture between the layers, ensuring the smooth operation of the moisture management system.
[0046] In specific weaving, the moisture-wicking and quick-drying breathable layer can be woven from non-elastic yarn Y1 and elastic yarn Y2; the moisture-wicking layer can be woven from non-elastic yarn Y4 and elastic yarn Y5; and the anti-slip, moisture-wicking and quick-drying breathable layer can be woven from non-elastic yarn Y6, elastic yarn Y3 and elastic yarn Y7.
[0047] Among them, the non-elastic yarns Y1, Y4, and Y6 can be selected as nylon, polyester, or a composite yarn of nylon and polyester, and the spinning method is DTY, FDY, ATY, or other spinning methods. The linear density is 10D≤Y1, Y4, Y6≤200D, preferably 20D~100D. The linear density of the elastic yarns Y2, Y3, Y5, and Y7 is 10D≤Y2, Y3, Y5, Y7≤150D, preferably 15D~70D, and spandex can be selected.
[0048] Furthermore, the anti-slip area is composed of several anti-slip points; or the anti-slip area is composed of several anti-slip vertical or horizontal strips; or the anti-slip area is composed of several anti-slip surfaces. More specifically:
[0049] The anti-slip points are formed by knitting two consecutive needles in the weft direction and one loop in the warp direction, with both the length and width of the anti-slip points ≤1mm. Specifically, this is achieved by having the yarn continuously cross two needles in the weft direction and knit only one loop in the warp direction. This knitting method combines the loop, tuck, or float structure of the non-elastic yarn Y1, elastic yarn Y2, and elastic yarn Y3, resulting in anti-slip points that appear as tiny bumps or texture variations on the fabric surface. Their length and width are precisely controlled within 1mm. This small size ensures that the anti-slip points provide localized friction while minimizing the impact on the overall softness and breathability of the fabric.
[0050] Anti-slip vertical or horizontal stripes are formed by continuous weft knitting of more than 2 stitches or continuous warp knitting of more than 1 loop. The width of the anti-slip vertical or horizontal stripe is ≤1mm, and the length is ≤5mm. Specifically, the anti-slip vertical or horizontal stripes are formed by continuously crossing more than 2 needles in the weft direction or continuously knitting more than 1 loop in the warp direction. This knitting method creates a linear structure for the anti-slip area. When the number of continuous weft crossings is large, a horizontal anti-slip stripe is formed; when the number of continuous warp knitting loops is large, a vertical anti-slip stripe is formed. This strip-like structure provides a more continuous friction surface than anti-slip points, suitable for areas requiring moderate anti-slip performance. Vertical stripes are suitable for resisting lateral slippage, while horizontal stripes are suitable for resisting longitudinal slippage, thus providing directional anti-slip function.
[0051] The anti-slip surface is knitted with more than 2 continuous weft stitches and more than 1 continuous warp loop, with a width of ≥1mm and a length of ≥5mm. Specifically, the anti-slip surface is achieved by having the yarn continuously cross more than 2 needles in the weft direction and continuously knit more than 1 loop in the warp direction. This knitting method creates a planar structure with a significant area for the anti-slip area, with its width precisely controlled to be greater than 1mm and its length precisely controlled to be greater than 5mm. This large-area anti-slip structure provides the strongest friction, making it suitable for applications with extremely high anti-slip performance requirements.
[0052] The anti-slip surface is achieved through a continuous, large area. This anti-slip surface can be formed by using a large area of looped, floating, or special looped structures, combined with a combination of non-elastic yarn Y1, elastic yarn Y2, and elastic yarn Y3, to create a surface with a uniform or dense anti-slip texture, providing a more comprehensive and stable anti-slip effect.
[0053] By designing anti-slip areas as anti-slip dots, vertical or horizontal strips, or anti-slip surfaces, the anti-slip function of the fabric itself can be flexibly configured according to the needs of specific application scenarios. For example, anti-slip dots provide a dispersed and gentle anti-slip effect, suitable for areas requiring high comfort and breathability; vertical or horizontal strips provide directional anti-slip support, effectively resisting slippage in a specific direction; while anti-slip surfaces provide maximized continuous anti-slip performance, suitable for areas requiring strong fixation and stability. This diverse anti-slip area structure not only precisely meets the needs of different anti-slip intensities but also optimizes the functionality and aesthetics of the fabric without sacrificing its overall moisture-wicking, quick-drying, breathability, and wearing comfort, thereby significantly improving product applicability and user experience.
[0054] The moisture-wicking, quick-drying, and breathable area is formed by weaving two consecutive stitches in the weft direction and one stitch in the warp direction to create several moisture-wicking and breathable mesh points. The length and width of these moisture-wicking and breathable mesh points are both ≤1MM, forming tiny and dense breathable holes.
[0055] Alternatively, the moisture-wicking and breathable area can be formed by weaving more than 2 stitches in the weft direction or more than 1 row in the warp direction to create several vertical or horizontal strips of moisture-wicking and breathable mesh. The width of these vertical or horizontal strips is ≤1mm, and the length is 1mm≤5mm. The larger size of the breathable holes can further improve breathability and achieve faster drying.
[0056] Alternatively, the moisture-wicking and breathable area can be formed by several moisture-wicking and breathable mesh surfaces woven with more than 2 stitches in the weft direction and more than 1 stitch in the warp direction. The width of the moisture-wicking and breathable mesh surface is ≥1MM and the length is ≥5MM. The moisture-wicking and breathable area is relatively large, making it suitable for use in scenarios with larger mesh surfaces.
[0057] The moisture-wicking and breathable areas and the anti-slip areas are formed in the same way. Because the yarn used in the moisture-wicking and breathable areas is hydrophilic, it creates a capillary effect that wicks sweat from the skin to the garment surface. The garment surface then evaporates the moisture through the flowing air, keeping the skin dry and comfortable. While the moisture-wicking and breathable areas achieve moisture evaporation through the capillary effect of hydrophilic yarn, they are also breathable. Therefore, the moisture-wicking and breathable mesh dots, vertical stripes, or horizontal stripes in the moisture-wicking and breathable areas create pores for ventilation. The raised dots, vertical stripes, or horizontal stripes on the anti-slip surface increase roughness. Thus, both can be woven in the same way.
[0058] Production Example 1
[0059] As attached Figure 1-3 As shown, prepare according to the following steps:
[0060] 1. Raw material selection: Three types of yarns, Y1, Y2 and Y3, are used for weaving. Y1 is 20D / 24F semi-dull nylon DTY, Y2 is 20D spandex and Y3 is 40D spandex.
[0061] 2. Machine selection: Use a 36-needle 34-inch weft knitting single-sided machine.
[0062] 3: See the appendix for details on the pin header and diamond-shaped configuration. Figure 2 and 3 .
[0063] 4. Finishing: After pre-dyeing and finishing, the final product is 145CM x 95G / M2.
[0064] Production Example 2
[0065] As attached Figure 4-6As shown in the figure, it is prepared according to the following steps:
[0066] 1: Raw material selection: It is woven with three kinds of yarns, Y1, Y2, and Y3. The Y1 is 20D / 24F semi-dull polyamide DTY, Y2 is 20D spandex, and Y3 is 40D spandex.
[0067] 2: Machine selection: A 32-needle 34-inch weft knitting double-sided four-track machine is selected for knitting.
[0068] 3: The needle arrangement and diamond configuration are specifically shown in the appendix Figure 5 and 6 .
[0069] 4: Post-treatment: After pre-setting - dyeing - post-setting, the final product is 105CM x 150G / M2.
[0070] Production Example 3
[0071] As shown in the appendix Figure 7-9 It is prepared according to the following steps:
[0072] 1: Raw material selection: It is woven with three kinds of yarns, Y1, Y2, and Y3. The Y1 is 15D / 24F semi-dull polyamide DTY, Y2 is 20D spandex, and Y3 is 140D spandex.
[0073] 2: Machine selection: A 40-needle 34-inch weft knitting double-sided two-track machine is selected for knitting.
[0074] 3: The needle arrangement and diamond configuration are specifically shown in the appendix Figure 8 and 9 .
[0075] Next, the fabrics prepared from the three production examples are tested, as shown in the following table:
[0076]
[0077] According to the test results of Case 1, Case 2, and Case 3 in Table 1, it can be seen that:
[0078] 1: The air permeability of single-sided fabric > double-sided fabric > three-layer composite fabric.
[0079] 2: The thinner and lighter the fabric, the better the air permeability and the better the moisture absorption and quick drying performance, but being thin and light does not affect its anti-slip performance. [[ID=z54]]
[0080] 3: The anti-slip coefficient will increase with the increase of the spandex content, but the increase of the spandex content will affect the moisture absorption and quick drying performance of the fabric. Therefore, the anti-slip area S1 formed by the elastic yarn spandex on the skin-friendly surface and the moisture absorption and quick drying area S2 formed by the non-elastic yarn on the skin-friendly surface need to satisfy 30% ≤ S1 < 100% and 20% < S2 ≤ 70% to achieve the best anti-slip and moisture absorption and quick drying functions.
[0081] It should be noted that the above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A weft-knitted multifunctional anti-slip, breathable, and comfortable fabric, comprising a fabric body, characterized in that, The fabric body is woven from at least three types of yarns: non-elastic yarn Y1, elastic yarn Y2, and elastic yarn Y3, using loop weaving, tucking, or float weaving to form anti-slip areas and moisture-wicking, quick-drying, and breathable areas. On the same side of the fabric body, the area of the anti-slip area S1 is set to be 30% ≤ S1 < 100% of the fabric body area, and the area of the moisture-wicking, quick-drying, and breathable area S2 is set to be 20% of the fabric body area. <S2≤70%。 2. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 1, characterized in that, The fabric body is a single-sided fabric with a single-layer structure. Part of the fabric body is an anti-slip area, and the remaining area is a moisture-wicking, quick-drying, and breathable area.
3. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 1, characterized in that, The fabric body is a double-sided fabric with a double-layer structure. One layer is a moisture-wicking and quick-drying breathable layer, and the other layer is an anti-slip, moisture-wicking and quick-drying breathable layer. The entire area of the moisture-wicking and quick-drying breathable layer is a moisture-wicking and quick-drying breathable area, and the anti-slip, moisture-wicking and quick-drying breathable layer is composed of an anti-slip area and a moisture-wicking and quick-drying breathable area.
4. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 1, characterized in that, The fabric body is a composite fabric with at least three layers, one outer layer being a moisture-wicking and quick-drying breathable layer, another outer layer being an anti-slip moisture-wicking and quick-drying breathable layer, and the middle layer being a moisture-wicking layer. The moisture-wicking layer is used to connect the moisture-wicking and quick-drying breathable layer and the anti-slip moisture-wicking and quick-drying breathable layer. The entire area of the moisture-wicking and quick-drying breathable layer is a moisture-wicking and quick-drying breathable area, and the anti-slip moisture-wicking and quick-drying breathable layer is composed of an anti-slip area and a moisture-wicking and quick-drying breathable area.
5. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 1, characterized in that, The anti-slip area consists of several anti-slip points; or it consists of several anti-slip vertical or horizontal strips; or it consists of several anti-slip surfaces.
6. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 5, characterized in that, The anti-slip point is formed by knitting two consecutive stitches in the weft direction and one stitch in the warp direction. The length and width of the anti-slip point are both ≤1MM. The anti-slip vertical or horizontal stripes are formed by continuous weft > 2 stitches or continuous warp > 1 row of knitting. The width of the anti-slip vertical or horizontal stripes is ≤ 1 mm, and the length is 1 mm ≤ 5 mm. The anti-slip surface is formed by continuous weft knitting of more than 2 stitches and continuous warp knitting of more than 1 row. The width of the anti-slip surface is ≥1MM and the length is ≥5MM.
7. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 1, characterized in that, The moisture-wicking and quick-drying breathable area is formed by two continuous weft stitches and one warp stitch to create several moisture-wicking and breathable mesh points. The length and width of each moisture-wicking and breathable mesh point are ≤1MM. Alternatively, the moisture-wicking, quick-drying, and breathable area is formed by weaving more than 2 stitches in the weft direction or more than 1 row in the warp direction to create several vertical or horizontal strips of moisture-wicking, quick-drying, and breathable mesh. The width of these vertical or horizontal strips is ≤1mm, and the length is 1mm ≤ 5mm. Alternatively, the moisture-wicking, quick-drying, and breathable area is formed by several moisture-wicking, quick-drying, and breathable mesh surfaces woven with more than 2 continuous weft stitches and more than 1 continuous warp stitch, with the width of the moisture-wicking, quick-drying, and breathable mesh surface being ≥1MM and the length being ≥5MM.
8. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 4, characterized in that, The moisture-wicking layer is formed by weaving elastic yarn and non-elastic yarn, or by weaving elastic yarn alone, or by weaving non-elastic yarn alone.
9. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 8, characterized in that, The non-elastic yarn is nylon, polyester, or a composite yarn of nylon and polyester, and has a linear density of 10D to 200D, preferably 20D to 100D. The linear density of the elastic yarn is 10D to 150D, preferably 15D to 70D.
10. The weft-knitted multifunctional anti-slip, breathable, and comfortable fabric according to claim 1, characterized in that, The area of the anti-slip zone on the fabric body may be the same as or different from the area of the moisture-wicking, quick-drying, and breathable zone.