Moisture-absorbing and breathable spinning fabric

By introducing multi-layer structures and specific weaving methods into the spun fabric, the problem of the spun fabric not being able to absorb moisture and breathe after wearing is solved, improving breathability and wrinkle resistance, and enhancing the comfort and durability of the garment.

CN223791131UActive Publication Date: 2026-01-13ZHONGSHAN GUOTAI DYEING & FINISHING CO LTD
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Patent Information

Application Number
CN202423292950.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-13
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing yarn fabrics do not easily absorb moisture and breathe after being worn, leading to problems such as stuffiness and sweat accumulation.

Method used

It adopts a multi-layer structure design, including an isolation and anti-sticking layer, a moisture-wicking and breathable layer, and a wrinkle-resistant and abrasion-resistant layer. It utilizes silicone isolation protrusions, a weaving method of wool and cotton-linen yarns, and polyester wrinkle-resistant fabric to enhance breathability and wrinkle resistance.

Benefits of technology

It achieves good moisture absorption, breathability, and wrinkle resistance in the spun fabric when worn, reducing stuffiness and improving the comfort and durability of clothing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a moisture-absorbing breathable spinning fabric, which relates to the technical field of spinning fabrics and comprises a spinning fabric body, an isolating anti-sticking layer, a first moisture-absorbing breathable layer, a spinning connecting layer, a second moisture-absorbing breathable layer and a crease-resistant wear-resistant layer. According to the moisture-absorbing and breathable spinning fabric, through the isolation protrusions and the first through grooves arranged in the spinning fabric and the first moisture-absorbing and breathable layer woven by the wool woven threads and the cotton and linen woven threads, the good breathable effect can be achieved, and the material of the second moisture-absorbing and breathable layer is the same as that of the first moisture-absorbing and breathable layer; the spinning fabric has good moisture absorption and ventilation effects during use, the crease-resistant and wear-resistant layer arranged at the top end of the spinning fabric body reinforces manufactured clothes, and the first crease-resistant fabric and the second crease-resistant fabric arranged in the crease-resistant and wear-resistant layer can improve the crease-resistant effect of the spinning fabric during use. And through the heating fibers, clothes made of the fabric have good crease-resistant and warm-keeping effects.
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Description

Technical Field

[0001] This utility model relates to the field of spinning fabric technology, specifically to a moisture-wicking and breathable spinning fabric. Background Technology

[0002] Spinned fabric is a continuous fine filament made by combing and spinning fibers. It can be pure yarn, which is made from a single fiber material, or blended yarn, which is made from a mixture of multiple fibers. It is the basic material for various textiles such as clothing and bedding. As the basic material of textiles, the quality of spun fabric directly affects the texture and performance of the final textile.

[0003] However, most spun fabrics are made by mixed weaving, which makes them quite tight after being made into clothing. This prevents the internal heat from escaping, making the clothes stuffy and sweaty. As a result, clothes made from spun fabrics are not good at absorbing moisture and breathing, and thus have poor performance after being worn. Utility Model Content

[0004] The purpose of this invention is to provide a moisture-wicking and breathable spun fabric to solve the problem mentioned in the background art that spun fabrics are not easy to absorb moisture and breathe after being worn.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a moisture-wicking and breathable spun fabric, comprising a spun fabric body, an isolation and anti-sticking layer, a first moisture-wicking and breathable layer, a spinning connecting layer, a second moisture-wicking and breathable layer, and a wrinkle-resistant and abrasion-resistant layer. The isolation and anti-sticking layer is disposed inside the spun fabric body. A first moisture-wicking and breathable layer is disposed on one side of the isolation and anti-sticking layer. A spinning connecting layer is disposed on the side of the first moisture-wicking and breathable layer away from the isolation and anti-sticking layer. A second moisture-wicking and breathable layer is disposed on the side of the spinning connecting layer away from the first moisture-wicking and breathable layer. A wrinkle-resistant and abrasion-resistant layer is disposed on the side of the second moisture-wicking and breathable layer away from the spinning connecting layer. The isolation and anti-sticking layer includes a comfortable fabric, isolation protrusions, and a first through-groove. The comfortable fabric is disposed inside the isolation and anti-sticking layer.

[0006] Preferably, the comfort fabric is made of silk, and the bottom of the comfort fabric is provided with evenly distributed isolation protrusions, the isolation protrusions are made of silicone, and the interior of the comfort fabric is provided with evenly distributed first through grooves.

[0007] Preferably, the interior of the first moisture-absorbing and breathable layer is provided with uniformly distributed wool knitting yarn, and one side of the wool knitting yarn is wrapped with uniformly distributed cotton and linen knitting yarn, and the wool knitting yarn and the cotton and linen knitting yarn are knitted in a plain weave.

[0008] Preferably, the spinning connecting layer has uniformly distributed warp yarns inside, and weft yarns are wound around the surface of the warp yarns, with the weft yarns and warp yarns being twill woven together.

[0009] Preferably, the interior of the wrinkle-resistant and abrasion-resistant layer is provided with a first wrinkle-resistant fabric, the first wrinkle-resistant fabric being made of polyester.

[0010] Preferably, a first anti-wrinkle fabric is provided on one side of the first anti-wrinkle fabric, and a second through groove is provided between the first anti-wrinkle fabric and the first anti-wrinkle fabric.

[0011] Preferably, uniformly distributed heating fibers are provided between the first wrinkle-resistant fabric and the heating fibers are made of acrylic fiber.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: The moisture-wicking and breathable yarn fabric has a good breathability effect due to the isolation protrusions, the first through groove, and the first moisture-wicking and breathable layer woven from wool and cotton-linen yarns inside the yarn fabric. The second moisture-wicking and breathable layer is made of the same material as the first moisture-wicking and breathable layer, which makes the yarn fabric have a good moisture-wicking and breathable effect when in use. The anti-wrinkle and wear-resistant layer set at the top of the yarn fabric body reinforces the finished garment. The first anti-wrinkle fabric and the first anti-wrinkle fabric set inside the anti-wrinkle and wear-resistant layer can increase the anti-wrinkle effect of the yarn fabric when in use. Furthermore, the heat-generating fibers enable the finished garment to have a good anti-wrinkle and warmth retention effect.

[0013] 1. This moisture-wicking and breathable yarn fabric, when made into clothing, is usually not easy to absorb moisture and breathe, making it inconvenient to use. The isolation protrusions set at the bottom of the comfort fabric can create gaps with the skin, which is conducive to air circulation and avoids stuffiness after wearing. In addition, the first channel opened inside the comfort fabric can exchange heat. At the same time, the first moisture-wicking and breathable layer woven by wool and cotton linen yarns through a twill weave can absorb the sweat produced. Thus, the clothing made of the yarn fabric has a better moisture-wicking effect when worn, and the yarn fabric has a better moisture-wicking and breathable effect when used.

[0014] 2. This moisture-wicking and breathable yarn fabric is prone to wrinkling after garment processing, making it inconvenient to wear. The first wrinkle-resistant fabric and the second wrinkle-resistant fabric within the wrinkle-resistant and abrasion-resistant layer are made of polyester, which enhances the wrinkle-resistant effect of the yarn fabric during use. Furthermore, the heat-generating fibers within the first wrinkle-resistant fabric and the second wrinkle-resistant fabric are made of acrylic fibers, giving the yarn fabric good wrinkle resistance and warmth retention after garment production. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the yarn fabric body of this utility model;

[0016] Figure 2 This is a three-dimensional structural diagram of the spinning connecting layer of this utility model;

[0017] Figure 3 This is a schematic diagram of the first moisture-absorbing and breathable layer structure of this utility model;

[0018] Figure 4 This is a three-dimensional structural diagram of the isolation and anti-adhesion layer of this utility model;

[0019] Figure 5 This is a three-dimensional structural diagram of the anti-wrinkle and wear-resistant layer of this utility model.

[0020] In the diagram: 1. Yarn fabric body; 101. Isolation and anti-sticking layer; 102. First moisture-wicking and breathable layer; 103. Yarn connecting layer; 104. Second moisture-wicking and breathable layer; 105. Wrinkle-resistant and abrasion-resistant layer; 1011. Comfort fabric; 1012. Isolation protrusion; 1013. First channel; 1021. Wool braided yarn; 1022. Cotton and linen braided yarn; 1031. Warp yarn; 1032. Weft yarn; 1051. First wrinkle-resistant fabric; 1052. First wrinkle-resistant fabric; 1053. Second channel; 1054. Heat-generating fiber. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figures 1-4This utility model provides a technical solution: a moisture-wicking and breathable spun fabric, comprising a spun fabric body 1, an isolation and anti-sticking layer 101, a first moisture-wicking and breathable layer 102, a spinning connecting layer 103, a second moisture-wicking and breathable layer 104, and a wrinkle-resistant and abrasion-resistant layer 105. The isolation and anti-sticking layer 101 is disposed inside the spun fabric body 1. The first moisture-wicking and breathable layer 102 is disposed on one side of the isolation and anti-sticking layer 101. The spinning connecting layer 103 is disposed on the side of the first moisture-wicking and breathable layer 102 away from the isolation and anti-sticking layer 101. The second moisture-wicking and breathable layer 104 is disposed on the side of the spinning connecting layer 103 away from the first moisture-wicking and breathable layer 102. The wrinkle-resistant and abrasion-resistant layer 105 is disposed on the side of the second moisture-wicking and breathable layer 104 away from the spinning connecting layer 103. The isolation and anti-sticking layer 101 internally includes a comfortable fabric 1011, isolation protrusions 1012, and a first through-hole 1013. The interior of the isolation and anti-stick layer 101 is provided with a comfortable fabric 1011, which is made of silk. The bottom end of the comfortable fabric 1011 is provided with evenly distributed isolation protrusions 1012, which are made of silicone. The interior of the comfortable fabric 1011 has evenly distributed first through grooves 1013. The interior of the first moisture-absorbing and breathable layer 102 is provided with evenly distributed wool knitting yarns 1021. One side of the wool knitting yarns 1021 is wrapped with evenly distributed cotton and linen knitting yarns 1022. The wool knitting yarns 1021 and the cotton and linen knitting yarns 1022 are woven in a plain weave. The interior of the spinning connecting layer 103 is provided with evenly distributed warp yarns 1031. The surface of the warp yarns 1031 is wrapped with weft yarns 1032. The weft yarns 1032 and the warp yarns 1031 are woven in a twill weave.

[0023] In practice,

[0024] See Figures 1-4 It is known that when spun fabric is made into clothing, it is usually not easy to absorb moisture and breathe, making it inconvenient to use. However, by weaving the warp yarns 1031 and weft yarns 1032 with a plain weave, breathable gaps can be created between the warp yarns 1031 and weft yarns 1032, avoiding the problem of poor breathability caused by a tight weave. At the same time, the isolation protrusions 1012 at the bottom of the comfort fabric 1011 can create gaps between the fabric and the skin, which is conducive to air circulation and avoids stuffiness after wearing. Furthermore, the first channel 1013 inside the comfort fabric 1011 can exchange heat, and the first moisture-absorbing and breathable layer 102, woven with wool knitting yarn 1021 and cotton-linen knitting yarn 1022 using a twill weave, can absorb sweat. Thus, the clothing made from spun fabric has a better moisture absorption effect when worn, and the spun fabric has a better moisture absorption and breathability effect when used.

[0025] The anti-wrinkle and wear-resistant layer 105 has a first anti-wrinkle fabric 1051 inside, which is made of polyester. A first anti-wrinkle fabric 1052 is provided on one side of the first anti-wrinkle fabric 1051. A second through groove 1053 is provided between the first anti-wrinkle fabric 1052 and the first anti-wrinkle fabric 1051. A uniformly distributed heating fiber 1054 is provided between the first anti-wrinkle fabric 1051 and the first anti-wrinkle fabric 1052. The heating fiber 1054 is made of acrylic fiber.

[0026] In practice,

[0027] See Figure 1 and Figure 5 It is known that when spun fabrics are used, they are prone to wrinkling after processing into clothing, making them inconvenient to wear. The anti-wrinkle and abrasion-resistant layer 105 provided at the top of the spun fabric body 1 can be used to reinforce the finished clothing. At the same time, the first anti-wrinkle fabric 1051 and the first anti-wrinkle fabric 1052 provided inside the anti-wrinkle and abrasion-resistant layer 105 are made of polyester, which can increase the anti-wrinkle effect of the spun fabric when it is used. Furthermore, the heat-generating fiber 1054 provided inside the first anti-wrinkle fabric 1051 and the first anti-wrinkle fabric 1052 is made of acrylic fiber, which gives the spun fabric a good anti-wrinkle and warmth retention effect after it is made into clothing.

[0028] In summary, the spun fabric is made by processing fibers into continuous fine filaments through processes such as combing and spinning. The isolation protrusions 1012 at the bottom of the comfort fabric 1011 create gaps between the fabric and the skin, which facilitates air circulation and prevents stuffiness after wearing. Furthermore, the first channel 1013 inside the comfort fabric 1011 allows for heat exchange, while the first moisture-absorbing and breathable layer 102, woven from wool yarn 1021 and cotton-linen yarn 1022 using a twill weave, absorbs sweat. As a result, the garment made from the spun fabric has good moisture absorption and breathability when worn. The contents not described in detail in this description are prior art known to those skilled in the art.

[0029] Although the present invention has been described in detail with reference to the foregoing 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. 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 moisture-wicking and breathable spun fabric, comprising a spun fabric body (1), an isolation and anti-sticking layer (101), a first moisture-wicking and breathable layer (102), a spinning connecting layer (103), a second moisture-wicking and breathable layer (104), and a wrinkle-resistant and abrasion-resistant layer (105), characterized in that: The inner part of the spun fabric body (1) is provided with an isolation and anti-stick layer (101). A first moisture-absorbing and breathable layer (102) is provided on one side of the isolation and anti-stick layer (101). A spinning connecting layer (103) is provided on the side of the first moisture-absorbing and breathable layer (102) away from the isolation and anti-stick layer (101). A second moisture-absorbing and breathable layer (104) is provided on the side of the spinning connecting layer (103) away from the first moisture-absorbing and breathable layer (102). A wrinkle-resistant and abrasion-resistant layer (105) is provided on the side of the second moisture-absorbing and breathable layer (104) away from the spinning connecting layer (103). The inner part of the isolation and anti-stick layer (101) includes a comfortable fabric (1011), an isolation protrusion (1012), and a first through groove (1013). The inner part of the isolation and anti-stick layer (101) is provided with a comfortable fabric (1011).

2. The moisture-wicking and breathable yarn fabric according to claim 1, characterized in that: The comfort fabric (1011) is made of silk, and the bottom end of the comfort fabric (1011) is provided with evenly distributed isolation protrusions (1012), the isolation protrusions (1012) are made of silicone, and the interior of the comfort fabric (1011) is provided with evenly distributed first through grooves (1013).

3. The moisture-wicking and breathable yarn fabric according to claim 1, characterized in that: The first moisture-absorbing and breathable layer (102) has uniformly distributed wool braided yarn (1021) inside, and a uniformly distributed cotton and linen braided yarn (1022) is wrapped around one side of the wool braided yarn (1021). The wool braided yarn (1021) and the cotton and linen braided yarn (1022) are plain weave.

4. The moisture-wicking and breathable yarn fabric according to claim 1, characterized in that: The spinning connecting layer (103) is provided with uniformly distributed warp yarns (1031) inside, and weft yarns (1032) are wound on the surface of the warp yarns (1031). The weft yarns (1032) and the warp yarns (1031) are twill woven together.

5. The moisture-wicking and breathable yarn fabric according to claim 1, characterized in that: The wrinkle-resistant and wear-resistant layer (105) is provided with a first wrinkle-resistant fabric (1051) inside, and the first wrinkle-resistant fabric (1051) is made of polyester.

6. The moisture-wicking and breathable yarn fabric according to claim 5, characterized in that: A first wrinkle-resistant fabric (1052) is provided on one side of the first wrinkle-resistant fabric (1051), and a second through groove (1053) is provided between the first wrinkle-resistant fabric (1052) and the first wrinkle-resistant fabric (1051).

7. The moisture-wicking and breathable yarn fabric according to claim 6, characterized in that: A uniformly distributed heat-generating fiber (1054) is provided between the first wrinkle-resistant fabric (1051) and the first wrinkle-resistant fabric (1052), and the heat-generating fiber (1054) is made of acrylic fiber.