Super-soft anti-wind mark fabric
By using an ultra-soft windproof fabric structure, and employing a double-layer weft knitted structure and microemulsion coating, the windproof printing problem of cotton fabrics after printing is solved, achieving soft and comfortable fabric performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGYIN HANXIN TEXTILE
- Filing Date
- 2025-04-02
- Publication Date
- 2026-04-28
AI Technical Summary
Existing cotton fabrics are prone to wind marks after printing, and it is difficult to solve this problem while maintaining the fabric's softness.
It adopts an ultra-soft windproof fabric structure, including an ultra-soft fabric layer, a first windproof layer and a second windproof layer. Through a weft-knitted double-layer structure and a specific yarn combination, combined with polyethylene and polyurethane microemulsion coating, it solves the windproof problem and improves softness.
It effectively prevents wind marks, while giving the fabric softness, breathability and moisture-wicking properties, thus improving the fabric quality.
Smart Images

Figure CN224173102U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a knitted fabric, and more particularly to a functional fabric with windproof and soft comfort properties, belonging to the field of textile preparation. Background Technology
[0002] As people's living standards improve, they no longer only pursue the beauty and elegance of fabrics. Most people's pursuit of textiles has begun to shift towards higher comfort and higher quality.
[0003] Cotton fabrics can be printed using either pigment printing or reactive dye printing. Compared to pigment printing, reactive dye printing offers advantages such as a softer hand feel, better hydrophilicity, and better rubbing fastness. However, some colors in reactive dye printing, especially blue-green tones, are prone to windmarking after printing. Windmarking refers to the phenomenon where, during the storage and processing of fabric, the color fades or turns white at folds, or dark gray streaks appear. Windmarking primarily occurs on the parts of cotton fabric exposed to air and affected by wind; hence, it is generally called windmarking. Windmarking is influenced by various factors and is difficult to predict. Once windmarking occurs, it is difficult to repair the fabric; usually, only re-ordering and remaking are possible, resulting in significant economic losses for the manufacturer.
[0004] How to solve the wind mark problem in the production process of cotton textiles while giving them softness is a direction that needs to be studied in the textile industry. Summary of the Invention
[0005] The technical problem to be solved by this utility model is to provide a multifunctional fabric with windproof and soft and comfortable properties, which is an improvement over the existing technology.
[0006] The technical solution adopted by this utility model to solve the above problems is as follows: an ultra-soft windproof fabric, comprising an ultra-soft fabric layer, a first windproof layer, and a second windproof layer. The ultra-soft fabric layer includes a first soft cotton layer and a second soft cotton layer. The second soft cotton layer has a first soft cotton layer at its upper end and a second windproof layer at its lower end. The first soft cotton layer has a first windproof layer at its upper end. The first soft cotton layer and the second soft cotton layer are woven together by a weft-knitted double-layer structure. The weft-knitted double-layer structure includes an eight-way loop system, wherein the first, third, fifth, and seventh loops are woven into the first yarn to form the first soft cotton layer; the second, fourth, sixth, and eighth loop systems are woven into the second yarn to form the second soft cotton layer.
[0007] Furthermore, the weft-knitted double-layer structure is woven by upper and lower knitting needles arranged in alignment, wherein:
[0008] Both the first and third loop systems involve knitting the first and second stitches of the upper section together in a loop, and then gathering the first stitch of the lower section in a loop.
[0009] Do not knit the second stitch;
[0010] The second, fourth, sixth, and eighth circular systems all involve leaving the first and second stitches of the upper section unknitted, while the lower section...
[0011] The first and second stitches are knitted in a circle;
[0012] Both the fifth and seventh circular knitting systems involve knitting the first and second stitches of the upper section in a circular motion, while the first stitch of the lower section is not knitted and the second stitch is knitted in a circular motion.
[0013] Furthermore, the first yarn comprises elastic yarns and cotton yarns twisted together.
[0014] Furthermore, the elastic yarn is a spandex filament with a fineness of 20D.
[0015] Furthermore, the fineness of the cotton yarn is 60S.
[0016] Furthermore, the second yarn is a core-spun yarn, wherein the yarn sheath is cotton fiber and the yarn core is Solucell filament.
[0017] Furthermore, the core-spun yarn has a fineness of 30S, and the Solucell filament has a fineness of 50D.
[0018] Furthermore, the length of the first yarn is 24cm / 100G.
[0019] Furthermore, the length of the second yarn is 22cm / 100G.
[0020] Furthermore, the first windproof layer is a polyethylene microemulsion coating.
[0021] Furthermore, the second windproof layer is a polyurethane microemulsion coating.
[0022] Furthermore, the fabric undergoes a pretreatment process to dissolve the yarn core in the second yarn, thereby giving the fabric soft, breathable, and moisture-wicking properties.
[0023] Compared with the prior art, the advantages of this utility model are:
[0024] (1) The super soft fabric layer of this utility model is woven from a weft knitted double-layer structure. It can not only realize the composite function of the fabric by utilizing the double-layer structure, but also realize the moisture-wicking and moisture-absorbing properties of the fabric by utilizing the combination of different moisture-absorbing properties of the yarn.
[0025] (2) The fabric of this utility model is provided with a first windproof layer and a second windproof layer, which can effectively solve the windproof problem after dyeing or printing cotton fabric and ensure the quality of the fabric surface.
[0026] (3) The super soft fabric layer of this utility model utilizes the elasticity of high elastic yarn and the softness of hollow core-spun yarn to give the fabric super soft properties. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the fabric structure of this utility model.
[0028] Figure 2 This utility model relates to the stitch arrangement diagram and triangular arrangement diagram of the weft-knitted double-layer structure of the fabric.
[0029] In the diagram, 1 is the ultra-soft fabric layer; 2 is the first windproof layer; 3 is the second windproof layer; 11 is the first soft cotton layer; and 12 is the second soft cotton layer. Detailed Implementation
[0030] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments. Example 1
[0031] like Figure 1-2 An ultra-soft windproof fabric includes an ultra-soft fabric layer 1, a first windproof layer 2, and a second windproof layer 3. The first windproof layer 2 is a polyethylene microemulsion coating, and the second windproof layer 3 is a polyurethane microemulsion coating. The ultra-soft fabric layer 1 includes a first soft cotton layer 11 and a second soft cotton layer 12. The first soft cotton layer 11 is disposed at the upper end of the second soft cotton layer 12, and the second windproof layer 3 is disposed at the lower end. The first windproof layer 2 is disposed at the upper end of the first soft cotton layer 11. The first soft cotton layer 11 and the second soft cotton layer 12 are woven together by a weft-knitted double-layer structure. The weft-knitted double-layer structure includes an eight-way loop system, wherein the first, third, fifth, and seventh ways are woven into the first yarn to form the first soft cotton layer 11, and the length of the first yarn is 24cm / 100G; the second, fourth, sixth, and eighth ways are woven into the second yarn to form the second soft cotton layer 12, and the length of the second yarn is 22cm / 100G. The weft-knitted double-layer structure is woven by upper and lower knitting needles arranged in alignment, wherein:
[0032] Both the first and third loop systems involve knitting the first and second stitches of the upper section together in a loop, and then gathering the first stitch of the lower section in a loop.
[0033] Do not knit the second stitch;
[0034] The second, fourth, sixth, and eighth circular systems all involve leaving the first and second stitches of the upper section unknitted, while the lower section...
[0035] The first and second stitches are knitted in a circle;
[0036] Both the fifth and seventh circular knitting systems involve knitting the first and second stitches of the upper section in a circular motion, while the first stitch of the lower section is not knitted and the second stitch is knitted in a circular motion.
[0037] The first yarn comprises intertwined elastic yarn and cotton yarn, wherein the elastic yarn is 20D spandex filament and the cotton yarn is 60S. The second yarn is a core-spun yarn, wherein the outer layer of the core-spun yarn is cotton fiber and the core is Solucell filament, the core-spun yarn is 30S and the Solucell filament is 50D.
[0038] The fabric undergoes a pretreatment process to dissolve the core of the second yarn, thereby giving the fabric soft, breathable, and moisture-wicking properties.
[0039] In addition to the above embodiments, this utility model also includes other embodiments. All technical solutions formed by equivalent transformation or equivalent substitution should fall within the protection scope of the claims of this invention.
Claims
1. A super-soft windproof fabric, characterized in that, Includes an ultra-soft fabric layer (1) and a first windproof layer (2). The second windproof layer (3) includes a first soft layer (11) and a second soft layer (12). The second soft layer (12) has the first soft layer (11) at its upper end and the second windproof layer (3) at its lower end. The first soft layer (11) has the first windproof layer (2) at its upper end. The first soft layer (11) and the second soft layer (12) are woven together by a weft-knitted double-layer structure. The weft-knitted double-layer structure includes an eight-way loop system, wherein the first, third, fifth, and seventh loops are woven into the first yarn to form the first soft layer (11). The second, fourth, sixth, and eighth loop systems are woven into the second yarn to form the second soft layer (12).
2. The ultra-soft windproof fabric according to claim 1, characterized in that, The weft-knitted double-layer structure is woven by upper and lower knitting needles arranged in alignment, wherein: Both the first and third loop systems involve knitting the first and second stitches of the upper section together in a loop, and then gathering the first stitch of the lower section in a loop. Do not knit the second stitch; The second, fourth, sixth, and eighth circular systems all involve leaving the first and second stitches of the upper section unknitted, while the lower section... The first and second stitches are knitted in a circle; Both the fifth and seventh circular knitting systems involve knitting the first and second stitches of the upper section in a circular motion, while the first stitch of the lower section is not knitted and the second stitch is knitted in a circular motion.
3. The ultra-soft windproof fabric according to claim 1, characterized in that, The first yarn comprises elastic yarns and cotton yarns twisted together.
4. The ultra-soft windproof fabric according to claim 1, characterized in that, The second yarn is a core-spun yarn, wherein the yarn sheath is cotton fiber and the yarn core is Solucell filament.
5. The ultra-soft windproof fabric according to claim 1, characterized in that, The first windproof layer (2) is a polyethylene microemulsion coating.
6. The ultra-soft windproof fabric according to claim 1, characterized in that, The second windproof layer (3) is a polyurethane microemulsion coating.