Metal wire special fabric and production method thereof

By using a double-layer fabric structure and water-soluble vinylon filament hollow yarn technology, the problems of easy wear, poor breathability and complicated production of metal wire fabrics have been solved, achieving improvements in durability, breathability and ease of use.

CN121718993APending Publication Date: 2026-03-24XINJIANG DOUGLAS TEXTILE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-29
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing metal wire fabrics are prone to wear and breakage during use or washing, have poor breathability, have complex and costly production processes, and require an additional coating process to prevent the metal wires from contacting the skin.

Method used

It adopts a double-layer fabric structure, with the upper layer being hollow yarn fabric and the lower layer being metal wire core-spun yarn fabric. They are connected by pure cotton yarn inlay and water-soluble vinylon filaments are used to form a hollow structure. Combined with warping, sizing, weaving, bleaching and other processes, it replaces the traditional twisting and plying process.

Benefits of technology

It effectively prevents metal threads from leaking out, improves breathability and comfort, reduces the probability of wear and breakage, simplifies the production process, reduces costs, and enhances the durability and ease of use of the fabric.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of textile, and particularly relates to a special metal wire fabric and a production method thereof.The special metal wire fabric comprises a fabric body, the fabric body is a double-layer fabric composed of an upper layer and a lower layer, the upper layer and the lower layer are connected through pure cotton yarn as inserted lines, the upper layer is hollow yarn fabric, and the lower layer is hollow yarn fabric. The upper layer is made of hollow yarn fabric, the hollow yarn fabric is formed by dissolving covering yarn into core yarn, the lower layer is made of hollow yarn and metal wire covering yarn interwoven fabric, the specification of metal wires is 68D, and the metal wires are stainless steel wires with the diameter of 0.035 mm. The metal wires can be thoroughly prevented from leaking out of the fabric, meanwhile, the metal wires can be prevented from making direct contact with the skin without additional film covering, the skin pricking discomfort is eliminated, and the production process is simplified.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of textiles, in particular to a metal wire special fabric and a production method thereof. BACKGROUND

[0002] With the progress of society, the application of fabrics is developing more and more widely, and various special fabrics are diverse, adapting to different fields of application. Metal wire fabric is the most popular functional fabric with natural memory wrinkles and anti-static properties. It is made by weaving stainless steel wire into the fabric. The metal wire fabric not only has a metallic luster, but also has the function of electric conduction and shielding. It is widely used in scientific research, military high-tech, electronics, medical industry and other fields, with high added value.

[0003] At present, the metal wire fabric on the market is made by "doubling and plying" the metal wire with cotton yarn to form a strand, and then weaving the strand as weft. However, the metal wire fabric produced by this traditional process has many limitations: the metal wire is easy to wear and break during use or washing, resulting in broken ends on the fabric surface, which causes discomfort when the skin comes into contact with it; the gap in the plying structure is easy to make the metal wire leak out of the cotton yarn, which not only damages the appearance integrity of the fabric, but also greatly reduces the air permeability, making it significantly worse than pure cotton fabric. At the same time, it is necessary to avoid vigorous rubbing or wringing during washing, which limits the convenience of use. In addition, the traditional process is complex, which increases the production cost of the fabric, and in some scenarios, an additional film coating process is required to prevent direct contact between the metal wire and the skin, further adding production steps and costs. SUMMARY

[0004] To solve the above technical problems, the present application provides the following technical solutions:

[0005] A metal wire special fabric, comprising a fabric body, the fabric body is a double-layer fabric composed of an upper layer and a lower layer, and the upper layer and the lower layer are connected by pure cotton yarn as an inlaid wire, the upper layer is a hollow yarn fabric, and the hollow yarn fabric is composed of a core-spun yarn after the core yarn is dissolved, the lower layer is a hollow yarn and metal wire core-spun yarn interwoven fabric, and the specification of the metal wire is 68D, and the diameter of the metal wire is 0.035mm stainless steel wire.

[0006] As a preferred scheme of the metal wire special fabric, the hollow yarn fabric is a core-spun yarn formed by one or more fibers covering water-soluble vinylon filaments, and the core-spun yarn is subjected to warping, sizing, weaving, singeing, boiling and bleaching, and then the water-soluble vinylon filaments are completely dissolved after the vinylon filaments are removed, forming a hollow structure, and the water-soluble vinylon filaments have a water-soluble temperature of 90℃.

[0007] As a preferred scheme of the metal wire special fabric, the core yarn is a natural color flax viscose colored broken filament hollow yarn, and the natural color flax viscose colored broken filament core yarn is prepared by installing a filament storage rack and a filament unwinding device on a flax roving machine, and twisting and winding the colored viscose filament and the natural color flax roving sliver together to form the natural color flax roving wrapped with the colored viscose filament, and then boiling and making the core yarn on a flax spinning machine.

[0008] As a preferred scheme of the metal wire special fabric, the core yarn is a natural color flax viscose colored broken filament hollow yarn, and the natural color flax viscose colored broken filament core yarn is prepared by installing a filament storage rack and a filament unwinding device on a flax roving machine, and twisting and winding the colored viscose filament and the natural color flax roving sliver together to form the natural color flax roving wrapped with the colored viscose filament, and then boiling and making the core yarn on a flax spinning machine.

[0009] As a preferred scheme of the metal wire special fabric, the core yarn is a natural color flax viscose colored broken filament hollow yarn, and the natural color flax viscose colored broken filament core yarn is prepared by installing a filament storage rack and a filament unwinding device on a flax roving machine, and twisting and winding the colored viscose filament and the natural color flax roving sliver together to form the natural color flax roving wrapped with the colored viscose filament, and then boiling and making the core yarn on a flax spinning machine.

[0010] A production method of a metal wire special fabric, comprising the following specific steps:

[0011] Step one: preparing yarns for the metal wire special fabric: obtaining warp yarns, weft yarns A, weft yarns B and weft yarns C by a spinning machine, wherein the temperature for sizing is set to be within 80℃;

[0012] Step two: preparing the special fabric containing metal wires: beaming and sizing the warp yarns, and weaving into a double-layer fabric according to the arrangement of weft yarns 5 (2A:1B);1C.

[0013] Step three: finishing: soaking, singeing, boiling and bleaching, devitrifying and dyeing the fabric, wherein the temperature for soaking is set to be 40-60℃, the soaking time is set to be 20-30min, and the boiling temperature for devitrifying is set to be 100 degrees, and the time is set to be 30 minutes.

[0014] As a preferred scheme of the production method of the metal wire special fabric, wherein: the warp yarn is 21s+50D water-soluble vinylon filament core-spun yarn, the weft yarn A is 21s+50D water-soluble vinylon filament core-spun yarn, the weft yarn B is 21S+68D metal wire, and the weft yarn C is 60S cotton yarn.

[0015] As a preferred scheme of the production method of the metal wire special fabric, wherein: the 21s+50D water-soluble vinylon filament core-spun yarn is mixed with two or more fibers, and the fibers include cotton, wool, hemp, and chemical fibers.

[0016] As a preferred scheme of the production method of the metal wire special fabric, wherein: the soaking solution raw material includes, by weight, 0.5-1.0 parts of fatty alcohol polyoxyethylene ether, 0.3-0.5 parts of sodium carbonate, 0.1-0.2 parts of benzotriazole, 0.05-0.1 parts of disodium ethylenediaminetetraacetate, 0.2-0.3 parts of sodium alkyl sulfonate, 0.08-0.15 parts of polyhexamethylene guanidine hydrochloride, 0.1-0.2 parts of dimethicone, and 10-20 parts of water.

[0017] Further, as a preferred scheme of the metal wire special fabric, wherein: the hollow yarn is composed of original color flax viscose colored broken filament hollow yarn, the yarn belongs to fancy hollow yarn, and the fabric belongs to fancy fabric and does not need to be dyed.

[0018] Compared with the prior art, the metal wire special fabric has the following advantages:

[0019] The metal wire special fabric is designed and optimized in multiple dimensions, effectively compensating for the defects of traditional metal wire fabrics. The "metal wire core-spun yarn" structure (metal wire as core yarn, outer layer wrapped with cotton fibers) is used to replace the traditional plying process, which can completely prevent the metal wire from leaking out of the fabric, and without additional film coating, the metal wire can be prevented from directly contacting the skin, eliminating the discomfort of skin pricking, and simplifying the production process. At the same time, the "double-layer fabric" design (the upper layer is a fabric without metal wire, and the lower layer is a fabric with metal wire, connected by pure cotton yarn), can significantly improve the air permeability of the fabric, and improve the comfort when wearing or using, while retaining the original functions of metal wire fabric (such as electric shielding and metal luster). In addition, combined with the "hollow yarn" process, not only effectively enhances the softness and heat insulation performance of the fabric, but also alleviates the problem of hard hand feeling of traditional metal wire fabric, and through the synergistic effect of core-spun yarn and double-layer structure, the wear and tear probability of metal wire in use is reduced, and the overall durability of the fabric is improved. At the same time, the optimized production process reduces the complex links of the traditional plying process, which helps to control the production cost, and the fabric has better adaptability to washing methods, without strict restrictions on operations such as rubbing and wringing, further improving the convenience of daily use. DETAILED DESCRIPTION

[0020] To make the objectives, technical solutions, and advantages of the present invention clearer, the embodiments of the present invention will be described in further detail below.

[0021] Example 1:

[0022] This invention provides a method for producing a special fabric with metal wires, so as to obtain a special fabric with metal wires from cotton fibers;

[0023] Specifications: 21sX(21S+21s+68D metal wire+60S) 120 x 100

[0024] Fabric composition: 94% cotton, 6% metallic wire; weave: plain weave.

[0025] The specific steps are as follows:

[0026] Step 1: Prepare the yarn for the metal wire special fabric;

[0027] The specific process of step one is as follows: using 50D water-soluble vinylon filament as core yarn on the spinning machine to produce cotton water-soluble vinylon filament core-spun yarn, 21s+50D water-soluble vinylon filament.

[0028] 68D metallic wire is used as the core yarn to produce core-spun yarn 21S+68D metallic wire;

[0029] Step 2: Preparation of special metal wire fabric, including warping, sizing, and weaving;

[0030] Using 21s+50D water-soluble vinylon filament as warp yarn, warping, sizing, and weaving are carried out with the sizing bath temperature controlled below 80 degrees Celsius. Weft yarns: A: 21S+water-soluble vinylon filament, B: 21S+68D cotton metallic core-spun yarn, C: 60S cotton yarn. Weft yarn arrangement: 5(2A1B):1C.

[0031] Step 3: Soak, singe, boil, bleach, remove fibers, dye and finish the woven metallic wire fabric;

[0032] The greige fabric is boiled and de-woven at 100 degrees Celsius for 30 minutes. The water-soluble vinylon filaments melt and disappear after washing. 21S+50D water-soluble vinylon filament was transformed into 21S hollow cotton yarn, which was then dyed and finished to obtain the desired fabric 21sX(21S+21s+68D metallic yarn+60S)120x100. The upper layer of the fabric is pure cotton hollow cotton, and the lower layer is hollow cotton yarn and cotton metallic yarn core-spun yarn. The two layers of fabric are connected by 60S cotton yarn inlays. The raw materials of the soaking solution, by weight, include: 0.5 parts fatty alcohol polyoxyethylene ether, 0.3 parts sodium carbonate, 0.1 parts benzotriazole, 0.05 parts disodium ethylenediaminetetraacetate, 0.2 parts sodium secondary alkyl sulfonate, 0.08 parts polyhexamethylene guanidine hydrochloride, 0.1 parts polydimethylsiloxane, and 10 parts water. The soaking temperature is set at 40℃ and the soaking time is set at 20 minutes.

[0033] Example 2:

[0034] This invention provides a method for producing a special metallic wire fabric, resulting in a hemp-cotton metallic wire fabric; specifications: 21s x (21s + 21s + 68D metallic wire + 60s) 120 x 100 mm.

[0035] Fabric composition: 28% hemp, 66% cotton, 6% metallic yarn;

[0036] The specific steps are as follows:

[0037] Step 1: Prepare the yarn for the metal wire special fabric;

[0038] The specific process of step one is as follows: On a cotton spinning frame, 50D water-soluble vinylon filament is used as the core yarn to produce hemp-cotton water-soluble vinylon filament core-spun yarn. The hemp-cotton 21s+50D water-soluble vinylon filament is obtained by producing core-spun yarn on a spinning frame with 30% hemp and 70% cotton roving. The core yarn is 50D water-soluble vinylon filament.

[0039] 68D metallic wire is used as the core yarn in the production of core-spun cotton 21S+68D metallic wire on a spinning machine;

[0040] Step 2: Preparation of special metal wire fabric, including warping, sizing, and weaving;

[0041] Using 21s hemp cotton + 50D water-soluble vinylon filament as warp yarn, the warping, sizing, and weaving processes are carried out with the sizing bath temperature controlled below 80 degrees Celsius. The weft yarns are: hemp cotton A: 21S + water-soluble vinylon filament, B: cotton metal core-spun yarn 21S + 68D metal yarn, and C: 60S cotton yarn. The weft yarn arrangement is 5 (2A1 B): 1C.

[0042] Step 3: Soak, singe, boil, bleach, remove fibers, dye and finish the woven metallic wire fabric;

[0043] The greige fabric undergoes scouring and weft removal at 100 degrees Celsius for 30 minutes, during which the water-soluble vinylon filaments melt and disappear after washing. The 21S+50D water-soluble vinylon filaments of hemp cotton are transformed into 21S hollow hemp cotton yarn, which is then dyed and finished to obtain the desired fabric 21sX(21S+21s+68D metallic yarn+60S)120x100. The upper layer of the fabric is hollow hemp cotton fabric, and the lower layer is hollow hemp cotton yarn and cotton metallic yarn core-spun yarn fabric. The two layers are connected by 60S cotton yarn inlays. The hemp cotton hollow fabric has antibacterial properties; the soaking solution contains, by weight, 0.6 parts fatty alcohol polyoxyethylene ether, 0.35 parts sodium carbonate, 0.125 parts benzotriazole, 0.06 parts disodium ethylenediaminetetraacetate, 0.225 parts sodium secondary alkyl sulfonate, 0.10 parts polyhexamethylene guanidine hydrochloride, 0.125 parts polydimethylsiloxane, and 12.5 parts water; the soaking temperature is set at 45℃ and the soaking time is set at 22.5 minutes.

[0044] Example 3:

[0045] Warp yarn: 32s viscose-polyester 65 / 35 hollow yarn; weft yarn A: 32S viscose-polyester weft yarn B; weft yarn C: 32s + 68D metallic yarn; 60S cotton yarn.

[0046] Specifications; 32S viscose polyester yarn X (32S viscose polyester yarn + cotton metallic core-spun yarn 32S + 68D + cotton yarn 60S);

[0047] Fabric composition: 58% viscose, 14% polyester, 18% cotton, 10% metallic yarn;

[0048] The specific steps are as follows:

[0049] Step 1: Prepare the yarn for the metal wire special fabric;

[0050] The specific process of step one is as follows: On a cotton spinning frame, 50D water-soluble vinylon filament is used as the core yarn to produce viscose-polyester water-soluble vinylon filament core-spun yarn. The viscose-polyester 32s+40D water-soluble vinylon filament is obtained by producing core-spun yarn on a spinning frame with 65% viscose and 35% polyester roving. The core yarn is 40D water-soluble vinylon filament.

[0051] 68D metallic wire is used as the core yarn in the production of core-spun cotton 32S+68D metallic wire on a spinning machine;

[0052] Step 2: Preparation of special metal wire fabric, including warping, sizing, and weaving;

[0053] The warp yarn is made of 32S+400D water-soluble vinylon filament of viscose polyester. The warping, sizing, and weaving processes are carried out with the sizing bath temperature controlled below 80 degrees Celsius. The weft yarns are: A: 32S+40D water-soluble vinylon filament of viscose polyester, B: 32S+68D core-spun cotton metallic yarn, and C: 60S cotton yarn. The weft yarn arrangement is 5 (2A1 B):1C.

[0054] Step 3: Soak, singe, boil, bleach, remove fibers, dye and finish the woven metallic wire fabric;

[0055] The fabric is soaked, singed, boiled, and de-woven. The boiling temperature is 100 degrees Celsius for 30 minutes. The water-soluble vinylon filaments melt and disappear after washing. 32S viscose-polyester yarn + 40D water-soluble vinylon filament was transformed into 32S hollow viscose-polyester yarn. After dyeing and finishing, the desired fabric 32sX(32S+32s+68D metallic yarn+60S)120x100 was obtained. The upper layer of the fabric is a hollow viscose-polyester fabric, and the lower layer is a core-spun yarn fabric of hollow viscose-polyester yarn and cotton metallic yarn. The two layers of fabric are connected by 60S cotton yarn inlays. The raw materials of the soaking solution include, by weight: 0.75 parts fatty alcohol polyoxyethylene ether, 0.4 parts sodium carbonate, 0.15 parts benzotriazole, 0.075 parts disodium ethylenediaminetetraacetate, 0.25 parts sodium secondary alkyl sulfonate, 0.115 parts polyhexamethylene guanidine hydrochloride, 0.15 parts polydimethylsiloxane, and 15 parts water. The soaking temperature is set at 50℃ and the soaking time is set at 25 minutes.

[0056] Example 4:

[0057] Warp yarn: 15S pure linen wet-spun core-spun yarn + 50D water-soluble vinylon filament; Weft yarn: A: 15S pure linen wet-spun core-spun yarn + 50D water-soluble vinylon filament; B: 15S linen metallic yarn core-spun yarn + 68D metallic yarn; C: 40S pure cotton yarn; Weft yarn arrangement: 5(2A1B):1C.

[0058] Fabric specifications: 15s x (A: 15s + B: 15s + 68D metallic yarn + C: 40S) 88 x 72;

[0059] Fabric composition: 94.8% linen, 2.5% cotton, and 2.7% metallic yarn;

[0060] The specific steps are as follows:

[0061] Step 1: Prepare the yarn for the metal wire special fabric;

[0062] Core-spun yarn, 15S+50D water-soluble vinylon filament and 15S+68D metallic yarn core-spun yarn of flax metallic yarn are produced on a flax wet spinning machine.

[0063] Step 2: Preparation of special metal wire fabric, including warping, sizing, and weaving;

[0064] Wet-spun 15S+50D water-soluble vinylon filament linen yarn was used as warp yarn. Warping, sizing, and weaving were carried out with the sizing bath temperature controlled below 80 degrees Celsius. Weft yarns: A: 15S+68D flax metallic core-spun yarn, B: 32S+68D cotton metallic core-spun yarn, C: 40S cotton yarn. Weft yarn arrangement: 5(2A1B):1C.

[0065] Step 3: Soak, singe, boil, bleach, remove fibers, dye and finish the woven metallic wire fabric;

[0066] The greige fabric undergoes soaking, singeing, scouring, and weft removal. The scouring temperature is 100 degrees Celsius for 30 minutes, during which the water-soluble vinylon filaments melt and disappear after washing. The 15S + 50D water-soluble vinylon filaments of linen are transformed into 15S hollow linen yarn, which is then dyed and finished to obtain the desired double-layer fabric 15sX(15S + 15s + 68D metallic yarn + 40S) 88x 72. The upper layer of the fabric is pure hollow linen fabric, and the lower layer is a blend of hollow linen yarn and linen metallic yarn core-spun yarn. The upper and lower layers are connected by 40S pure cotton yarn with inlay; the raw materials of the soaking solution include, by weight: 1.0 part of fatty alcohol polyoxyethylene ether, 0.5 parts of sodium carbonate, 0.2 parts of benzotriazole, 0.1 parts of disodium ethylenediaminetetraacetate, 0.3 parts of sodium secondary alkyl sulfonate, 0.15 parts of polyhexamethylene guanidine hydrochloride, 0.2 parts of polydimethylsiloxane, and 20 parts of water; and the soaking temperature is set at 60℃ and the soaking time is set at 30 minutes.

[0067] Example 5:

[0068] Warp yarn: 21S + 50D water-soluble vinylon filament wet-spun colored broken filament core-spun yarn of natural linen viscose; Weft yarn: A. 21S + 50D water-soluble vinylon filament wet-spun colored broken filament core-spun yarn of natural linen viscose; B. 21S + 68D metallic yarn of natural linen metallic yarn (the metallic yarn is obtained by twisting); C. 40S pure cotton yarn.

[0069] Fabric specifications: 21s x (21s + 21s + 68D metallic yarn + 40S) 90 x 72;

[0070] Fabric composition: 82% linen, 12.5% ​​viscose, 2% cotton, 3.5% metallic yarn;

[0071] The specific steps are as follows:

[0072] Step 1: Prepare the yarn for the metal wire special fabric;

[0073] On a flax roving frame, undyed flax viscose-wrapped yarn is produced; on a flax spinning frame, 21S+50D water-soluble vinylon filament wrapped yarn is produced; and on a twisting machine, 21S undyed flax and 68D metallic strand yarn are produced.

[0074] Step 2: Preparation of special metal wire fabric, including warping, sizing, and weaving;

[0075] Wet-spun undyed flax viscose colored broken yarn 21S+50D water-soluble vinylon filament is used as warp yarn. Warping, sizing, and weaving are carried out with the sizing bath temperature controlled below 80 degrees Celsius. Weft yarn A: undyed flax viscose colored broken yarn B: flax metallic yarn wrapped with 21S+68D metallic yarn C: 40S cotton yarn. Weft yarn arrangement: 5(2A1B):1C.

[0076] Step 3: Soak, singe, boil, bleach, remove fibers, dye and finish the woven metallic wire fabric.

[0077] The fabrics prepared in Examples 1-5 above were compared, and the following data were obtained:

[0078]

[0079]

[0080] Although the present invention has been described above with reference to embodiments, various modifications can be made and components can be replaced with equivalents without departing from the scope of the invention. In particular, as long as there is no structural conflict, the features in the disclosed embodiments can be combined with each other in any manner. The lack of an exhaustive description of these combinations in this specification is merely for the sake of brevity and resource conservation. Therefore, the present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A special metal wire fabric, comprising a fabric body, characterized in that, The fabric body is a double-layered fabric consisting of an upper layer and a lower layer, with pure cotton yarn connecting the upper and lower layers as inlays. The upper layer is a hollow yarn fabric, which is formed by dissolving the core yarn of the core-spun yarn. The lower layer is an interwoven fabric of hollow yarn and metal wire core-spun yarn, with the metal wire being 68D stainless steel wire with a diameter of 0.035mm.

2. The special metal wire fabric according to claim 1, characterized in that, The hollow yarn fabric is obtained by warping, sizing, weaving, singeing, bleaching, and defibering of a core-spun yarn formed by coating water-soluble vinylon filaments with one or more fibers, so that the water-soluble vinylon filaments are completely dissolved after defibering to form a hollow structure. The water-soluble vinylon filaments have a water solubility temperature of 90°C.

3. The special metal wire fabric according to claim 2, characterized in that, The core-spun yarn is a core-spun yarn made from undyed flax and viscose broken filaments. The viscose is made from colored viscose filaments that have been drawn and broken on a spinning machine. The viscose filaments are colored 50D, and the spinning machine is a core-spun yarn made from 21S+50D water-soluble vinylon filaments. The resulting hollow yarn is an undyed flax and viscose broken filament hollow yarn.

4. The special metal wire fabric according to claim 2, characterized in that, The core-spun yarn is a graphene-pineapple linen-cotton blended hollow yarn, and the fine yarn is a graphene-pineapple linen-cotton blended 21S+50D water-soluble vinylon filament core-spun yarn. The composition of the graphene-cotton blended core-spun yarn is: graphene 25.05%, pineapple linen 8.35%, cotton 50.1%, and water-soluble vinylon filament 16.5%.

5. The special metal wire fabric according to claim 3, characterized in that, The manufacturing process of the original color flax viscose broken filament core-spun yarn is as follows: The flax roving frame is modified to install a filament storage rack and a filament unwinding device. The filaments enter the front nip of the front roller through the unwinding guide rod and guide wheel, and are positioned on the left side of the flax sliver. Colored viscose filaments are selected and twisted together with the original color flax roving sliver to form a core-spun yarn. The filaments are wound around the flax roving to form an original color flax roving wrapped with colored viscose filaments. After scouring, the yarn is made into core-spun yarn on the flax spinning frame. The core yarn is soluble vinylon filament. Because the viscose filaments have very low strength in the wet state, they are broken during the yarn drawing process, so the surface of the yarn forms a discontinuous colored broken filament yarn feature.

6. A method for producing a special metal wire fabric, characterized in that, The specific steps are as follows: Step 1: Preparation of yarns for metal wire special fabrics: warp yarns, weft yarns A, B, and C are produced by a spinning machine, wherein the temperature during sizing is set to within 80℃; Step 2: Preparation of special fabric containing metal wires: Warp and sizing the warp yarns, and arrange the weft yarns in a 5 (2A:1B) pattern; 1C is woven into a double-layer fabric; Step 3: Finishing: Soak, singe, bleach, de-fiber, and dye the fabric. The soaking temperature is set at 40-60℃ and the soaking time is set at 20-30 minutes. The de-fiber scouring temperature is set at 100 degrees and the time is set at 30 minutes.

7. The method for producing a special metal wire fabric according to claim 6, characterized in that, The warp yarn is 21s+50D water-soluble vinylon core-spun yarn, the weft yarn A is 21s+50D water-soluble vinylon core-spun yarn, the weft yarn B is 21S+68D metallic yarn, and the weft yarn C is 60S cotton yarn.

8. The method for producing a special metal wire fabric according to claim 7, characterized in that, The warp yarn is a 21s+50D water-soluble vinylon core-spun yarn, which is made of a mixture of two or more fibers, including cotton, wool, linen, and chemical fibers.

9. The method for producing a special metal wire fabric according to claim 6, characterized in that, The raw materials of the soaking solution, by weight, include: 0.5-1.0 parts of fatty alcohol polyoxyethylene ether, 0.3-0.5 parts of sodium carbonate, 0.1-0.2 parts of benzotriazole, 0.05-0.1 parts of disodium ethylenediaminetetraacetate, 0.2-0.3 parts of sodium secondary alkyl sulfonate, 0.08-0.15 parts of polyhexamethylene guanidine hydrochloride, 0.1-0.2 parts of polydimethylsiloxane, and 10-20 parts of water.