Fabric and clothes

By employing a warp and weft satin weave structure in the synthetic fiber textile layer and wrapping it with a silk layer, the problems of insufficient breathability and antistatic properties of synthetic fiber fabrics are solved, thereby improving the structural stability and wearing comfort of the fabric.

CN224044782UActive Publication Date: 2026-03-27BIYUE (BEIJING) TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing synthetic fiber textile fabrics lack sufficient breathability and antistatic properties, affecting wearing comfort.

Method used

The textile layer is woven with warp and weft yarns to form a warp-faced satin weave structure, and a silk layer is wrapped around the overlap. The silk layer forms moisture-permeable pores to improve breathability and static control.

Benefits of technology

It improves the fabric's structural stability, breathability, and static electricity control, thus enhancing wearing comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a fabric and clothes, the fabric comprises a textile layer and a silk layer, the textile layer comprises warp yarns and weft yarns, the warp yarns and the weft yarns are woven into a warp face satin weave structure, and the elasticity of the weft yarns is greater than that of the warp yarns; every two adjacent warp yarns and every two adjacent weft yarns are in lap joint to form four lap joint parts, each lap joint part is wrapped by the silk layer, and a moisture permeable hole penetrating through the fabric is defined in a quadrilateral area formed by connecting lines of the four lap joint parts. According to the technology, the fabric formed by weaving the warp yarns and the weft yarns has better shape-preserving property and elasticity and has impression similar to real silk satin; the structure stability of the fabric can be improved by using the silk layer to wrap the lap joint part; the air permeability of the fabric can be improved through moisture-permeable pores formed by the silk layer and the hydrophilicity of silk; the silk has good hygroscopicity, and the silk layer can absorb moisture from the surrounding environment, so that the surface of the fabric keeps a certain humidity, charge dissipation is better facilitated, static accumulation is reduced, and the static control capability of the fabric is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of textiles, in particular to a fabric and clothes. BACKGROUND

[0002] In today's society, with the continuous improvement of people's living standards and the high demand for the quality of life, clothing, as an indispensable part of daily life, its comfort, functionality and aesthetics have become the focus of consumers.

[0003] Some related technologies use synthetic fibers to weave into fabrics that look like real silk satin. However, due to the limitations of the properties of synthetic fibers, these fabrics still have obvious deficiencies in air permeability and anti-static compared to real silk satin, which will affect the wearing comfort of clothes made of the fabric. CONTENT OF THE UTILITY MODEL

[0004] The present application provides a fabric and clothes, aiming to improve the air permeability of the fabric, enhance the static control ability of the fabric, and improve the wearing comfort of clothes made of the fabric.

[0005] In a first aspect, the present application provides a fabric, comprising a textile layer and a silk layer; wherein:

[0006] The textile layer comprises warp yarns and weft yarns, the warp yarns and the weft yarns are woven into a warp face satin structure, and the elasticity of the weft yarns is greater than that of the warp yarns;

[0007] Two adjacent warp yarns and two adjacent weft yarns form four lap joints, and the silk layer wraps each lap joint and forms a moisture-permeable pore through the fabric in the quadrilateral area connected by the four lap joints.

[0008] In the above technical solution, the elasticity of the weft yarns is greater than that of the warp yarns, so that the fabric woven by the warp yarns and the weft yarns has good shape retention and elasticity; the warp yarns and the weft yarns are woven into a warp face satin structure, so that the fabric has a similar appearance to real silk satin; the silk layer wraps each lap joint formed by the warp yarns and the weft yarns, which can improve the structural stability of the lap joint formed by the warp yarns and the weft yarns, reduce the risk of fabric loosening or deformation caused by the movement of the warp yarns and the weft yarns, and improve the structural stability of the fabric; the moisture-permeable pore formed by the silk layer and the hydrophilic property of the silk can both improve the air permeability of the fabric; the silk has good moisture absorption, and the silk layer can absorb moisture from the surrounding environment, so that the surface of the fabric maintains a certain humidity, thereby better helping the charge to dissipate, reducing the accumulation of static electricity, and improving the static control ability of the fabric.

[0009] In one possible implementation, the warp yarns are first polyester yarns, and the weft yarns are core-spun yarns.

[0010] The core yarn comprises a spandex yarn and a second polyester yarn, and the second polyester yarn is wrapped outside the spandex yarn.

[0011] In a possible implementation, the second polyester yarn is coarser than the spandex yarn.

[0012] In a possible implementation, the spandex yarn is 20D spandex, and the second polyester yarn is 50D / 72F polyester.

[0013] In a possible implementation, the first polyester yarn is 50D / 36F polyester.

[0014] In a possible implementation, the first polyester yarn is a triangular bright polyester yarn, and the second polyester yarn is a semi-bright polyester yarn.

[0015] In a possible implementation, the first polyester yarn is a fully drawn yarn, and the second polyester yarn is a drawn textured yarn.

[0016] In a possible implementation, the warp yarns and the weft yarns are woven into a five-end warp sateen structure.

[0017] In a second aspect, the application also provides a garment, which comprises the fabric as described in any of the above.

[0018] In the fabric, the elasticity of the weft yarns is greater than that of the warp yarns, so that the fabric formed by the warp yarns and the weft yarns has good shape retention and elasticity; the warp yarns and the weft yarns are woven into a warp face sateen structure, so that the fabric has an appearance similar to that of a silk sateen; the silk layer is used to wrap the lap joint formed by each warp yarn and weft yarn, which can improve the structural stability of the lap joint formed by the warp yarns and the weft yarns, reduce the risk of loosening or deformation of the fabric caused by the movement of the warp yarns and the weft yarns, and improve the structural stability of the fabric; the moisture-permeable pores formed by the silk layer and the hydrophilic nature of the silk can both improve the air permeability of the fabric; the silk has good moisture absorption, and the silk layer can absorb moisture from the surrounding environment, so that the surface of the fabric maintains a certain humidity, thereby better helping the charge to dissipate, reducing the accumulation of static electricity, and improving the static control capability of the fabric. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following will briefly introduce the drawings needed to be used in the embodiments. The drawings incorporated into the specification and form a part of the specification, which show the embodiments consistent with the present disclosure, and are used to explain the technical solutions of the present disclosure together with the specification. It should be understood that the following drawings only show some of the embodiments of the present disclosure, and therefore should not be considered as a limitation to the scope, and other related drawings can also be obtained by those of ordinary skill in the art without creative labor.

[0020] Figure 1 The overall cross-section schematic diagram of the fabric in the embodiments of the present application is shown in the figure.

[0021] Figure 2 The cross-section schematic diagram of the lap joint part in the embodiments of the present application is shown in the figure. DETAILED DESCRIPTION

[0022] In order to make the purposes, technical solutions and advantages of the present application more clear, the following will further describe the present application in detail with reference to the drawings.

[0023] It should be noted that, unless otherwise defined, the technical terms or scientific terms used in one or more embodiments of the present disclosure should be understood as the general meaning understood by those skilled in the art to which the present disclosure belongs. The terms "first", "second" and the like used in one or more embodiments of the present disclosure do not represent any order, number or importance, but are only used to distinguish different components. "Include" or "contain" and the like mean that the elements or objects before the word cover the elements or objects listed after the word and their equivalents, without excluding other elements or objects. "Connected" or "connected" and the like are not limited to physical or mechanical connection, but can include electrical connection, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to represent relative positional relationship, when the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0024] In order to facilitate the understanding of the fabric provided in the embodiments of the present application, the application scenario thereof will be first described. The fabric provided in the embodiments of the present application can be applied to clothes, and can be used as the close-fitting cloth of clothes.

[0025] In today's society, with the continuous improvement of people's living standards and the high demand for life quality, clothing, as an indispensable part of daily life, its comfort, functionality and aesthetics have become the focus of consumers.

[0026] Some related technologies use synthetic fibers to weave into a fabric that looks like real silk satin, but due to the limitations of the nature of synthetic fibers, these fabrics still have obvious deficiencies in air permeability and anti-static compared with real silk satin, which will affect the wearing comfort of the clothes made of the fabric. For example, in a dry environment, such fabrics can easily cause the wearer to feel hot and sweaty and static adsorption when moving indoors and outdoors.

[0027] Based on this, the present application provides a fabric, aiming to improve the static control ability of the fabric and the wearing comfort of the clothes made of the fabric. The fabric provided by the present application will be specifically introduced below in combination with the drawings.

[0028] Referring to Figure 1 and Figure 2 , Figure 1 is a schematic view of the overall cross section of the fabric in the embodiments of the present application, Figure 2 is a schematic view of the cross section of the lap joint in the embodiments of the present application.

[0029] The fabric provided by the embodiments of the present application includes a textile layer 1 and a silk layer 2. The textile layer 1 can be woven from synthetic fibers. The textile layer 1 can provide better shape retention and elasticity, while the silk layer 2 can serve as a functional layer to improve the air permeability and static control ability of the fabric.

[0030] Specifically, the textile layer 1 includes warp yarns 11 and weft yarns 12, the elasticity of the weft yarns 12 is greater than that of the warp yarns 11, and the warp yarns 11 and the weft yarns 12 are woven into a warp-faced satin weave structure. In the textile industry, warp-faced satin weave structure is a common weaving method in silk and some other high-end fabrics. Even if the warp yarns 11 and the weft yarns 12 are both made of synthetic fibers, by weaving the warp yarns 11 and the weft yarns 12 into a warp-faced satin weave structure, the fabric surface can also have a luster and appearance similar to real silk. In addition, the warp-faced satin weave structure also makes the textile layer 1 as a whole relatively soft, and because the warp yarns in the warp-faced satin weave structure have a long float, the textile layer 1 has high strength in the warp direction, so that the textile layer 1 has good shape retention.

[0031] It should be understood that the elasticity of the weft yarn 12 is greater than that of the warp yarn 11, and the elasticity here can be measured by various parameters of the yarn. For example, generally, a yarn with better elasticity has a higher breaking elongation rate, a higher elastic recovery rate, and a lower initial modulus. When specifically selecting the warp yarn 11 and the weft yarn 12, the warp yarn 11 and the weft yarn 12 can be of the same material or different materials. When the warp yarn 11 and the weft yarn 12 are of the same material, the elasticity of the weft yarn 12 can be controlled to be greater than that of the warp yarn 11 by controlling the draw ratio, twist, or regulating the spinning speed of the warp yarn 11 and the weft yarn 12. When the warp yarn 11 and the weft yarn 12 are of different materials, in addition to regulating the above spinning process, the properties of the materials themselves will also affect the elasticity of the yarn. For example, generally, the elasticity of spandex is greater than that of polyester, so a core-spun yarn with spandex as the core can be used to make the weft yarn 12, and polyester can be used to make the warp yarn 11.

[0032] After the fabric is made into clothing, the warp yarn 11 will generally extend along the height direction of the human body, while the weft yarn 12 will generally extend along the width direction of the human body. When weaving the textile layer 1, making the elasticity of the weft yarn 12 greater than that of the warp yarn 11, on the one hand, in the height direction of the human body, the warp yarn 11 with poor elasticity can make the fabric have better support, and the fabric is not easy to deform with the movement of the human body, making the fabric more crisp; on the other hand, for clothing wearing, the body shapes of different people vary greatly in the width direction. For example, there may be large differences in the chest circumference, waist circumference, hip circumference, etc. of different individuals, and when people wear clothes and move, the clothes are more likely to be pulled in the width direction. Therefore, the weft yarn 12 with better elasticity can improve the movement of the fabric in the width direction of the human body, so that the fabric can more easily adapt to the body shapes of different people, making the clothes more fitting, and can also reduce the restraint on the human body during activities and improve the wearing comfort of the fabric.

[0033] By covering the above-mentioned textile layer 1 with a silk layer 2, the air permeability of the fabric and the antistatic performance of the fabric can be improved. Specifically, when the warp yarn 11 and the weft yarn 12 are woven into the textile layer 1, two adjacent warp yarns 11 and two adjacent weft yarns 12 are overlapped with each other to form four overlapping parts. Two adjacent warp yarns 11 and two adjacent weft yarns are arranged in a "well" shape, and the four overlapping parts are distributed at the four corners of the "mouth" shape in the middle of the "well" shape.

[0034] The silk layer 2 wraps each of the overlap portions. Specifically, the silk layer wrapping any overlap portion can be regarded as a segment of a "cross" shaped tube, with the warp yarn 11 and the weft yarn 12 being located in the horizontal tube and the vertical tube of the "cross" shaped tube, respectively. That is, a layer of silk layer 2 film is coated on each of the overlap portions as a whole. By coating the silk layer 2 on each of the overlap portions, the silk layer 2 can assist in fixing the warp yarn 11 and the weft yarn 12 to each other, thereby improving the relative position stability between the warp yarn 11 and the weft yarn 12, reducing the risk of loosening and deformation of the textile layer caused by mutual movement of the warp yarn 11 and the weft yarn 12, and thereby improving the structural stability of the fabric.

[0035] As an example, when the silk layer 2 is specifically coated on the textile layer 1, a suitable silk protein can be selected to prepare a liquid silk protein finishing agent, which is then finished on the textile layer 1 through a series of processes, and then dried and fixed. The coated silk layer 2 can be transparent, which has little effect on the texture and light perception of the textile layer 1 while improving the function of the fabric.

[0036] The silk layer 2 is essentially a layer of silk protein, which has good water absorption and can absorb water from the environment, thereby improving the overall water absorption capacity of the fabric. The increased water absorption of the fabric will increase the electrical conductivity of the fabric, thereby reducing the generation of static electricity. Moreover, the silk layer 2 is arranged by silk fibers, so that the surface of the silk layer 2 is not flat at the microscopic level, which can increase the contact area between the silk layer 2 and the air, thereby improving the water absorption and evaporation rate of the silk layer 2. When wearing the fabric, if the wearer sweats, the silk layer 2 can also utilize its hydrophilic properties to absorb sweat and conduct it to the surface of the fabric for evaporation, thereby improving the air permeability of the fabric and further improving the wearing comfort of the fabric. The silk fiber itself also has good heat conduction performance and is an intrinsic cool fiber, which can quickly conduct heat on the skin, so that the fabric has a cool effect.

[0037] The silk layer 2 surrounds the moisture-permeable pores 3 that penetrate the fabric in the quadrilateral area of the four overlap portion connecting lines. Here, the quadrilateral of the four overlap portion connecting lines is the above-mentioned "mouth" shape. Specifically, when the silk layer 2 coats each of the overlap portions, the portions of the silk layer 2 coating each of the overlap portions are connected to each other. Specifically, for two adjacent overlap portions, there is a common warp yarn 11 or a common weft yarn 12 between them. This common warp yarn 11 or weft yarn 12 forms a "edge line" of the "mouth" shape, and the two ends of the edge line are the two adjacent overlap portions. On the "edge line" connected between any two adjacent overlap portions, the silk layer 2 coating the overlap portions at the two ends of the edge line are connected to each other, that is, the silk layer 2 coating all the overlap portions is connected as a whole.

[0038] When four overlapping parts arranged in a square shape are formed by the overlapping of two adjacent warp yarns and two adjacent weft yarns, the four side lines of the "square" shape are all covered by the silk layer 2, and moisture-permeable pores 3 penetrating the fabric are formed in the center of the "square" shape. As an example, when the silk layer 2 is covered on the textile layer by preparing a liquid silk protein finishing agent, moisture-permeable pores 3 will naturally form at the intersection of the warp yarn 11 and the weft yarn 12 of the textile layer 1, and these moisture-permeable pores 3 are retained when the liquid silk protein finishing agent solidifies.

[0039] These moisture-permeable pores 3 are arranged throughout the silk layer 2. The moisture-permeable pores 3 can increase the surface area of the silk layer 2 in contact with the outside world, thereby accelerating the rate of water absorption and evaporation of the silk layer 2, and further enhancing the breathability of the fabric.

[0040] It should be noted that the main component of the silk layer 2 is silk protein, and silk protein is composed of amino acids. The molecular structure characteristics of amino acids make the silk layer 2 have good softness and comfort, which can make the fabric more skin-friendly; at the same time, the PH value of amino acids is acidic. By covering the silk layer 2 on the surface of the textile layer 1, the growth and reproduction of bacteria can also be inhibited, making the fabric have good antibacterial properties.

[0041] In summary, for the above-mentioned fabric, the elasticity of the weft yarn 12 is greater than that of the warp yarn 11, making the fabric formed by the weaving of the warp yarn 11 and the weft yarn 12 have good shape retention and elasticity; the warp yarn 11 and the weft yarn 12 are woven into a warp-faced satin structure, making the fabric have the appearance similar to real silk satin; using the silk layer 2 to wrap the overlapping parts formed by the overlapping of each warp yarn 11 and weft yarn 12 can, on the one hand, improve the structural stability of the overlapping parts formed by the overlapping of the warp yarn 11 and the weft yarn 12, reduce the risk of the fabric loosening or deforming due to the mutual movement of the warp yarn 11 and the weft yarn 12, and improve the structural stability of the fabric; the moisture-permeable pores 3 formed by the silk layer 2 and the hydrophilic property of silk can both improve the breathability of the fabric; silk has good hygroscopicity, and the silk layer 2 can absorb moisture from the surrounding environment, making the surface of the fabric maintain a certain humidity, thereby better helping the charge to dissipate, reducing the accumulation of static electricity, and improving the static electricity control ability of the fabric.

[0042] As an optional implementation, the silk layer 2 covers both sides of the textile layer 1. Among them, the silk layer 2 on the side of the textile layer 1 close to the skin can directly contact the skin, so that it can directly absorb moisture from the skin surface when the human body sweats, improving the perspiration effect of the fabric; on the other hand, the silk layer 2 is mainly composed of silk protein, which is more skin-friendly. The side of the textile layer 1 close to the skin is provided with the silk layer 2, which can make the fabric more skin-friendly, thereby improving the wearing comfort of the fabric. The silk layer 2 on the side of the textile layer 1 away from the skin can accelerate the absorption of moisture from the textile layer 1 and the inner silk layer 2 and evaporate into the external environment, thereby further improving the air permeability of the fabric; on the other hand, it can also make the fabric more real silk, further improving the overall appearance of the fabric.

[0043] It should be understood that when the silk layer 2 covers both sides of the textile layer 1, the thickness of the textile layer 1 on both sides of the textile layer 1 can be the same or different, which is not restricted here.

[0044] As an optional implementation, the warp yarn 11 woven into the textile layer 1 is a first polyester yarn, and the weft yarn 12 woven into the textile layer 1 is a core-spun yarn. Among them, the core-spun yarn specifically includes a spandex yarn and a second polyester yarn, and the second polyester yarn is wrapped outside the spandex yarn. Specifically, the wrapping method between the second polyester yarn and the spandex yarn can include but is not limited to single-layer core spinning, multi-layer core spinning, cross core spinning, and spiral core spinning, etc.

[0045] The outer yarn of the weft yarn 12 and the warp yarn 11 are all polyester yarns. Polyester has the characteristics of high strength, good wear resistance, and good wrinkle resistance, so the cloth made of polyester has the advantages of high strength, wear resistance, and wrinkle resistance. The core of the weft yarn 12 adopts spandex yarn, which has good elasticity. The use of spandex and the second polyester yarn to make core-spun yarn can make the elasticity of the weft yarn 12 greater, meeting the requirement that the elasticity of the weft yarn 12 is greater than that of the warp yarn 11. At the same time, the high strength and high wear resistance of polyester can be used to protect spandex to slow down the wear and aging of spandex.

[0046] As an optional implementation, when the core-spun yarn is specifically manufactured, the second polyester yarn can be thicker than the spandex yarn. By setting the second polyester yarn to be thicker than the spandex yarn, the second polyester yarn can cover the spandex yarn without a large winding density, which is conducive to the elasticity of the spandex yarn; at the same time, the second polyester yarn can tightly cover the spandex yarn, thereby better protecting the spandex yarn; and the outer layer of the core-spun yarn can be fully covered by the second polyester yarn, making the surface of the core-spun yarn more uniform and smooth, which helps to improve the touch quality of the fabric and the overall aesthetics of the fabric.

[0047] As an optional implementation, when the core-spun yarn is specifically manufactured, the spandex yarn can be 20D spandex, and the second polyester yarn can be 50D / 72F polyester. Here, "D" represents "Denier", and "F" represents "Filament". The second polyester yarn selected here is thicker than the spandex yarn, which can better protect the spandex yarn. At the same time, since the second polyester yarn needs to cover the spandex yarn, the number of filaments of the second polyester yarn is set to 72. Such a polyester yarn has more filaments, greater yarn strength, and a smoother and more delicate state, which facilitates better winding and wrapping of the spandex yarn and can further improve the tactile and visual perception of the textile layer 1 after weaving.

[0048] As an optional implementation, the first polyester yarn is 50D / 36F polyester. Specifically, the first polyester yarn is 50D, which is a relatively thin fiber, and the textile layer 1 is relatively light and soft after weaving, while providing appropriate strength. At the same time, the first polyester yarn has 36 filaments, which can provide appropriate strength and a certain degree of delicacy while preventing the weft yarn 12 from being too delicate, which is beneficial to maintaining a certain sense of drape in the direction of the warp yarn 11.

[0049] As an optional implementation, the first polyester yarn is a triangular bright polyester yarn, and the second polyester yarn is a semi-bright polyester yarn. The cross-section of the triangular bright polyester yarn is triangular, so the fibers in the cross-section can reflect bright luster under light. The semi-bright polyester yarn is treated by a specific light extinction process, so that it can present a diffuse reflection state under light. By setting the first polyester yarn as a triangular bright polyester yarn and the second polyester yarn as a semi-bright polyester yarn, the fabric can present a certain luster under light, and will not produce too hard reflection, and the overall luster is similar to that of pearl, which further improves the visual perception of the fabric.

[0050] As an optional implementation, the first polyester yarn is a fully drawn yarn (FDY), and the second polyester yarn is a drawn textured yarn (DTY). The fully drawn yarn refers to a polymer melt being spun into a yarn through a spinneret, and then being stretched to achieve a final linear density and strength. The drawn textured yarn is further processed on the basis of the fully drawn yarn, for example, using the fully drawn yarn as a core yarn, and performing stretching and texturing processing through a false twist machine. In the texturing process, the yarn is heated and twisted, and then rapidly cooled to fix its shape. The fully drawn yarn has high strength, and the surface of the fully drawn yarn is smooth, which helps to improve the strength of the fabric and improve the touch and appearance of the fabric. The drawn textured yarn has good elasticity, and the gloss of the drawn textured yarn is weaker than that of the fully drawn yarn. The drawn textured yarn and the fully drawn yarn are woven together, which can improve the elasticity of the fabric in the weft yarn 12 extension direction, and can soften the light of the fabric, thereby improving the wearing comfort and beauty of the fabric.

[0051] As an optional implementation, the warp yarn 11 and the weft yarn 12 are woven into a warp-faced satin structure, and specifically can be woven into a five-end warp satin structure. The five-end warp satin is also called five-end satin, which is a specific weave of fabric. In the five-end warp satin process, each weaving cycle includes 5 warp yarns and 5 weft yarns. In each cycle, each weft yarn is sequentially floated on the surface of the weaving layer 1 by using a jacquard process. The weaving layer 1 woven in this way has a smooth surface and obvious gloss, and has a dazzling satin effect, which further improves the touch and appearance of the fabric.

[0052] In a specific example, the fabric produced by using the technical solution of the present application has a yarn composition ratio of 96% polyester and 4% spandex in the weaving layer 1. After covering the silk layer, the various indexes of the fabric are tested, and some technical indexes of the fabric can be as shown in Table 1:

[0053] Table 1 Some technical indexes of the fabric provided by the present application

[0054]

[0055]

[0056] As can be seen from the comparison of the partial test results in Table 1 and the technical requirements, the fabric provided by the present application has good air permeability, good cool feeling, good skin friendliness, excellent antibacterial performance, and good antistatic performance.

[0057] The embodiments of the present application also provide a garment, which includes any of the fabrics described above. Specifically, the garment can be entirely cut and spliced from the fabric described above, or can be cut and spliced from part of the fabric described above and part of other fabric.

[0058] The fabric of the clothes adopts the weft yarn 12 with greater elasticity than the warp yarn 11, so that the fabric formed by weaving the warp yarn 11 and the weft yarn 12 has better shape retention and elasticity; the warp yarn 11 and the weft yarn 12 are woven into a warp face satin structure, so that the fabric has a similar silk satin appearance; the overlap part formed by overlapping each warp yarn 11 and weft yarn 12 is wrapped with the silk layer 2, which can improve the structural stability of the overlap part formed by overlapping the warp yarn 11 and the weft yarn 12, reduce the risk of fabric loosening or deformation caused by the mutual movement of the warp yarn 11 and the weft yarn 12, and improve the structural stability of the fabric; the moisture-permeable pores 3 formed by the silk layer 2 and the hydrophilic nature of the silk can both improve the air permeability of the fabric; the silk has good moisture absorption, and the silk layer 2 can absorb moisture from the surrounding environment, so that the surface of the fabric maintains a certain humidity, thereby better helping the charge to dissipate, reducing the accumulation of static electricity, and improving the static control ability of the fabric.

[0059] One or more embodiments of the present specification are intended to cover all such alternatives, modifications and variations that fall within the broad scope of the appended claims. Therefore, any omission, modification, equivalent replacement, improvement, etc. made in the spirit and principle of one or more embodiments of the present specification should be included in the protection scope of the present disclosure.

[0060] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical scope disclosed in the present application, which should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A fabric, characterized by, The application relates to a fabric and a garment. The fabric comprises a textile layer and a silk layer, wherein: The textile layer comprises warp yarns and weft yarns, the warp yarns and the weft yarns are woven into a warp face satin structure, and the elasticity of the weft yarns is greater than that of the warp yarns; Two adjacent warp yarns and two adjacent weft yarns are overlapped to form four overlapping parts, the silk layer wraps each overlapping part, and a through-moisture hole is formed in a quadrilateral area formed by connecting the four overlapping parts.

2. The facing material of claim 1, wherein, The warp yarns are first polyester yarns, and the weft yarns are core-spun yarns. The core-spun yarns comprise spandex yarns and second polyester yarns, and the second polyester yarns are wrapped outside the spandex yarns.

3. The facing material of claim 2, wherein, The second polyester yarns are thicker than the spandex yarns.

4. The facing material of claim 3, wherein, The spandex yarns are 20D spandex, and the second polyester yarns are 50D / 72F polyester.

5. The facing material of claim 2, wherein, The first polyester yarns are 50D / 36F polyester.

6. The facing material of claim 2, wherein, The first polyester yarns are triangular bright polyester yarns, and the second polyester yarns are semi-bright polyester yarns.

7. The facing material of claim 2, wherein, The first polyester yarns are fully drawn yarns, and the second polyester yarns are drawn textured yarns.

8. The fabric according to any one of claims 1 to 7, characterized in that, The warp yarns and the weft yarns are woven into a five-warp satin structure.

9. A garment, characterized by The garment comprises the fabric according to any one of claims 1-8.