CN214168266U - Multi-component fiber colored spun fabric - Google Patents

Multi-component fiber colored spun fabric Download PDF

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Publication number
CN214168266U
CN214168266U CN202023117912.7U CN202023117912U CN214168266U CN 214168266 U CN214168266 U CN 214168266U CN 202023117912 U CN202023117912 U CN 202023117912U CN 214168266 U CN214168266 U CN 214168266U
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fabric
yarn
color
fibers
fiber
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CN202023117912.7U
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Chinese (zh)
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陈国仲
蓝刘娟
许利民
李洪
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Lilang China Co Ltd
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Lilang China Co Ltd
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Abstract

The utility model relates to a surface fabric field, a surface fabric is spun to multicomponent fibre colour, surface fabric are made into by composite yarn, a serial communication port, composite yarn includes the colour of two kinds of different colours at least and spins the fibre. The blending ratio of the fibers with different hues can be adjusted to reach the preset color of the fabric according to the requirement of the fabric; when the fibers are in similar hues, the effect of controlling the color depth of the fabric can be achieved by adjusting the fiber ratios of different colors; the fabric is woven through the colored spun yarns, the colored spun yarns have better color fastness, and the problems of color difference such as medium and cylinder difference and the like of the fabric in batch dyeing are also solved. The fabric can be matched with different-color spinning fibers to form blended yarns according to the requirements of clothes, and is suitable for jeans, casual pants and other articles.

Description

Multi-component fiber colored spun fabric
Technical Field
The utility model relates to a surface fabric field, concretely relates to surface fabric is spun to multicomponent fibre look.
Background
The multi-component fiber fabric is a garment fabric or a decorative fabric which is formed by mixing fibers with different types, physical properties, functions, forms and the like and shows functions, styles and fabric textures which a single fiber material does not have. Multicomponent fiber fabrics are also referred to broadly as composite fiber materials. In terms of morphology, there are combinations between fiber morphologies (filament-to-filament, filament-to-staple, staple-to-staple), and also combinations of fiber morphologies with non-fiber morphologies (e.g., films, coated films).
The fabric is formed by combining various fibers in manners of blending, interweaving, plying, covering, cladding, twisting, interweaving and the like, and has many advantages, such as: each fiber gets the strong points and makes up the weak points on the physical properties, and the performance of the fabric is improved; the durability of the fabric is improved; the texture and the appearance of the fabric are improved; the fabric is beneficial to obtaining multicolor color effect; the spinning quality is improved, and defects generated in spinning, weaving, printing and dyeing of part of single fibers are reduced; the cost of partial fabrics is reduced; the method is favorable for making quick response to the market, replaces color spinning and yarn-dyed processing with processing modes such as blended fabric dyeing and the like, and is favorable for shortening the delivery date of products.
The colored spun yarn is also called colored fiber spun yarn, the fiber raw material used before spinning is dyed or is colored by stock solution, and the fabric woven by the colored spun yarn does not need to be dyed any more, thereby shortening the processing procedure, reducing the environmental pollution and meeting the requirements of environmental protection.
When the fibers with the same dyeing process are blended, the fibers are difficult to be made into multicolor effect by yarn dyeing or piece dyeing of fabrics, and the colors of the fabrics are limited.
SUMMERY OF THE UTILITY MODEL
According to the technical problem above, the utility model provides a surface fabric is spun to multicomponent fibre colour, accessible adjustment different hue fibre's blending ratio reaches the predetermined colour of surface fabric.
The multi-component fiber color spinning fabric is woven by composite yarns, and is characterized in that the composite yarns at least comprise two color spinning fibers with different colors.
Preferably, the colored spun fibers are all in the same or similar color shade, and the effect of controlling the color depth of the fabric can be achieved by adjusting the fiber ratio of different colors.
Preferably, the composite yarn is a core spun yarn.
Preferably, the composite yarn is a blended yarn.
Preferably, the core yarn of the core-spun yarn is spandex, and the sheath yarn comprises cotton fiber and viscose fiber.
Preferably, the blended yarn includes cotton fibers and viscose fibers.
Preferably, the cotton fiber is dyed black, and the viscose fiber is dyed black and gray.
Preferably, the fabric weave is broken twill.
Based on above technical scheme, the beneficial effects of the utility model reside in that:
1. the composite yarn at least comprises two kinds of colored spun fibers with different colors, and the blending ratio of the fibers with different colors can be adjusted to reach the preset color of the fabric according to the requirement of the fabric; when the fibers are in similar hues, the effect of controlling the color depth of the fabric can be achieved by adjusting the fiber ratios of different colors.
2. The fabric is woven through the colored spun yarns, the colored spun yarns have better color fastness, and the problems of color difference such as medium and cylinder difference and the like of the fabric in batch dyeing are also solved.
3. When the fabric is woven by adopting cotton/viscose blended spandex-covered yarns, the spandex is core yarn, so that the problem that pure cotton or cotton/viscose fabric is easy to wrinkle can be effectively solved by using the skeleton effect of the fabric, and the four-side elastic effect is provided for the fabric.
4. The fabric is produced by dyeing the fibers in color, the defect that the same type of fibers or dyed similar fibers (such as cotton fibers and viscose fibers which are both reactive dyeing) cannot be made into a double-color effect by yarn dyeing or fabric piece dyeing can be overcome, and the fibers can be dyed according to a set blending ratio and then blended to obtain a preset color sample.
Drawings
The present invention is illustrated by way of example and is not limited by the accompanying figures, in which like references indicate similar or analogous elements throughout, and in which:
FIG. 1 is a structural view of a core yarn in example 1;
FIG. 2 is a weave diagram of the fabric of example 1;
FIG. 3 is a structural view of the composite yarn of example 2.
Detailed Description
The present invention is further explained below with reference to specific examples, which are intended to better illustrate the technical solutions of the present invention for the sake of understanding, but are not intended to limit the possible embodiments of the present invention.
Example 1
FIG. 1 is a structural view of a core yarn in example 1; FIG. 2 is a weave diagram of the fabric of example 1.
As shown in figure 3, the multi-component fiber colored spun fabric adopts a broken twill weave, warp and weft yarns of the fabric are cotton/viscose blended spandex covered yarns, and the specification of the fabric is 16 yarns which are blended and covered with 20D spandex yarns according to a cotton 60/viscose 40 ratio.
If 1 shows, the spandex (1) is core yarn, the spandex (1) is coated after the cotton fiber (2) and the viscose fiber (3) are blended, the cotton fiber (2) is black, and the viscose fiber (3) is gray; the blending process is debugged according to the preset color sample to achieve the required effect, for example, blending is carried out according to the proportion of 60 cotton/40 viscose, the fabric cloth surface woven by the manufactured colored spun yarn has a two-color effect, and the black color has a graying effect. Meanwhile, spandex is adopted as the core yarn in the blended yarn, the spandex has good elasticity, and plays a skeleton role in the warp and weft yarns, so that the fabric is endowed with a four-side elastic effect.
The cotton fiber and the viscose fiber are dyed by reactive dyeing, and the process is similar; the cotton-viscose blended yarn can not be made into a double-color effect through yarn dyeing or fabric piece dyeing, and the scheme can dye the fiber according to a set blending ratio through fiber dyeing and then blend and match a preset color sample.
The cotton-to-viscose ratio of the blended yarn may be 70/30 or the like, depending on the color of the cloth.
The fabric manufactured by the embodiment can be used for jean series products.
In the above-mentioned embodiments, the sheath yarn is made of cotton/viscose, and the color is not limited to the technical scheme, and the sheath yarn may be made of other multi-components, such as cotton/viscose/nitrile, viscose/nylon, etc.; the color combination can also adjust the dyed yarns and the blending ratio thereof according to the requirements of the fabric so as to achieve the required effect.
Example 2
A multi-component fiber colored spun fabric is formed by interweaving warp yarns and weft yarns, wherein the warp yarns adopt two nylon monofilaments selected from a 30S viscose bag 20D, and are subjected to doubling twisting twice, wherein viscose (21) is S-twisted with one nylon monofilament (22) and Z-twisted with the other nylon monofilament (23); the weft yarns adopt polyester stretch yarns; two nylon yarns in the warp are different in color, specifically, one nylon yarn can be dark black, and the other nylon yarn can be light gray, after blending, the fabric can show a double-color effect, and the black color has a gray effect. And the difference of the shrinkage rate of the viscose and the nylon is as follows: the viscose shrinks and becomes large when meeting water, and the nylon shrinks and becomes small when meeting water, so that the fabric has slight wrinkling effect.
The fabric manufactured by the embodiment can be suitable for leisure pants and other articles.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and all equivalent changes made by the present invention should be covered by the protection scope of the present invention.

Claims (5)

1. A multi-component fiber color spinning fabric is woven by composite yarns, and the composite yarns at least comprise two color spinning fibers with different colors; the method is characterized in that: the composite yarn is a core-spun yarn, the core yarn of the core-spun yarn is spandex, and the sheath yarn is cotton/viscose blended spandex-coated yarn of cotton fiber and viscose fiber.
2. The multi-component fiber colored textile fabric of claim 1, wherein: the fabric weave is broken twill.
3. The multi-component fiber colored textile fabric of claim 1, wherein: the spandex yarn of the cotton/viscose blended covered spandex yarn is 20D.
4. The multi-component fiber colored textile fabric of claim 1, wherein: the cotton fiber is black, and the viscose fiber is gray.
5. The multi-component fiber colored textile fabric of claim 1, wherein: the number ratio of the cotton fibers to the viscose fibers in the cotton/viscose blended spandex-covered yarn is 60:40 or 70: 30.
CN202023117912.7U 2020-12-23 2020-12-23 Multi-component fiber colored spun fabric Active CN214168266U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023117912.7U CN214168266U (en) 2020-12-23 2020-12-23 Multi-component fiber colored spun fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023117912.7U CN214168266U (en) 2020-12-23 2020-12-23 Multi-component fiber colored spun fabric

Publications (1)

Publication Number Publication Date
CN214168266U true CN214168266U (en) 2021-09-10

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023117912.7U Active CN214168266U (en) 2020-12-23 2020-12-23 Multi-component fiber colored spun fabric

Country Status (1)

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CN (1) CN214168266U (en)

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