CN218203289U - Coloring comfortable polyester fabric - Google Patents

Coloring comfortable polyester fabric Download PDF

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Publication number
CN218203289U
CN218203289U CN202222518917.3U CN202222518917U CN218203289U CN 218203289 U CN218203289 U CN 218203289U CN 202222518917 U CN202222518917 U CN 202222518917U CN 218203289 U CN218203289 U CN 218203289U
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modal
micro
over
layer
warp
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CN202222518917.3U
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Chinese (zh)
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凌振
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Suzhou Xinyunteng Textile Co ltd
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Suzhou Xinyunteng Textile Co ltd
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Abstract

The utility model discloses a coloured comfortable dacron cloth relates to the fabrics technique, and it is relatively poor to aim at solving the dyeability of dacron itself, is difficult to comparatively light on the dacron cloth to dye and print the color that people wanted, and its technical scheme main points are: the improved micro-pore structure comprises a surface layer, wherein a plurality of modal parts and micro-pores distributed in an array mode exist on the surface layer, the sectional area of the modal parts is larger than that of the micro-pores, a plurality of micro-fibers are fixedly connected to two layers of the surface layer in the thickness direction and cover the micro-pores, and the micro-fibers are made of modal fibers. The utility model discloses can dye the fixation through the surface course that has the modal material to can make the little fine hair on the surface course come to cover dacron fibre wherein one, make the surface course look like to be the look and keep unanimous, the modal material makes people can have comparatively comfortable sense of touch when the touch simultaneously.

Description

Coloring comfortable polyester fabric
Technical Field
The utility model relates to a fabrics technique, more specifically says, it relates to coloured comfortable dacron cloth.
Background
Dacron is a current flat fabric, and its popular application makes it applicable to the fields of clothing, home textile and the like, and in order to have a good aesthetic degree, people usually dye the Dacron fabric, so that the Dacron fabric has a certain color.
However, since terylene has poor dyeing property, terylene cannot easily print colors desired by people, and thus terylene needs much effort and time to print and dye when obtaining a finished product, which greatly reduces the production speed of terylene.
Therefore, a new solution is needed to solve this problem.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the problems of the prior art, the purpose of the utility model is to provide a comfortable coloured polyester fabric can dye and fix colour through the surface course that has the modal material, and can make the little fine hair on the surface course cover one of them dacron fibre, make the surface course look like to be the colour and keep unanimous, and the modal material makes people can have comparatively comfortable sense of touch when touching simultaneously.
The above technical purpose of the present invention can be achieved by the following technical solutions: the coloring comfortable polyester fabric comprises a surface layer, wherein a plurality of modal parts and micro-holes are distributed in an array mode on the surface layer, the sectional area of the modal parts is larger than that of the micro-holes, a plurality of micro-velvet are fixedly connected to the two layers of the surface layer in the thickness direction, the micro-velvet shields the micro-holes, and the micro-velvet is made of modal materials.
The utility model discloses further set up to: the surface layer is a satin weave which consists of four warp surface weaves of two upper and two lower parts and two warp surface weaves of three upper and two lower parts.
The utility model discloses further set up to: the weave points of the first warp in the satin weave are two upper and two lower, the weave points of the second warp in the satin weave are two lower and two upper, the weave points of the third warp in the satin weave are one upper, one lower, one upper and one lower, the weave points of the fourth warp in the satin weave are one-down one-up, the weave points of the fifth warp in the satin weave are one-up one-down two-up, and the weave points of the sixth warp in the satin weave are two-up one-down one-up.
The utility model discloses further set up to: the surface layer is woven by composite yarns, and the radii of the composite yarns are arranged along the length direction of the composite yarns in an alternating mode.
The utility model discloses further set up to: the composite yarn comprises a core layer, a water absorption layer positioned on an outer ring of the core layer and an outer layer positioned on the outermost side of the core layer, wherein the outer layer is formed by spirally winding a Modal yarn and a polyester fiber on the outer side of the water absorption layer in the same direction, the count of the Modal yarn is smaller than that of the polyester fiber I, the Modal yarn is a Modal short fiber yarn, micro-pile is formed by sanding the Modal yarn, the Modal part is formed by weaving the position of the Modal yarn in the composite yarn, and the micro-hole part is formed by weaving the position of the polyester fiber in the composite yarn.
The utility model discloses further set up to: the core layer is formed by twisting polyester fiber II and spandex fiber.
The utility model discloses further set up to: the water absorbing layer is formed by interweaving two cotton fibers at the outer side of the core layer in a mutually spiral mode.
To sum up, the utility model discloses following beneficial effect has:
the utility model discloses can dye the fixation through the surface course that has the modal material to can make little fine hair on the surface course come to hide dacron fibre wherein one, make the surface course look be the look keep unanimous, the modal material makes people can have comparatively comfortable sense of touch when the touch simultaneously.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a knitting drawing of the middle layer of the present invention;
fig. 3 is a schematic structural view of the composite yarn of the present invention.
In the figure: 1. a surface layer; 2. a core layer; 3. a second polyester fiber; 4. spandex fibers; 5. a water-absorbing layer; 6. cotton fibers; 7. an outer layer; 8. modal yarn; 9. and (5) polyester fiber I.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings and examples.
Example (b):
the colored comfortable terylene cloth comprises a surface layer 1, wherein a plurality of modal parts and micro holes distributed in an array are arranged on the surface layer 1, the sectional area of the modal parts is larger than that of the micro holes, a plurality of micro velvet are fixedly connected to the two layers of the surface layer 1 in the thickness direction, the micro velvet shields the micro holes, and the micro velvet is made of a modal material.
The surface layer 1 is woven by composite yarns.
As shown in fig. 3, the composite yarn comprises a core layer 2, a water absorption layer 5 positioned on the outer ring of the core layer, and an outer layer 7 on the outermost side, wherein the outer layer 7 is formed by spirally winding a modal yarn 8 and a polyester fiber I9 on the outer side of the water absorption layer 5 in the same direction, the number of the modal yarn 8 is smaller than that of the polyester fiber I9, therefore, the radius of the composite yarn is alternately changed along the length direction, the water absorption layer 5 is formed by spirally interweaving two cotton fibers 6 with each other on the outer side of the core layer 2, and the core layer 2 is formed by twisting the polyester fiber II 3 and the spandex fiber 4.
The modal yarn 8 is modal spun yarn, micro-velvet is formed by sanding the modal yarn 8, a modal part is formed by weaving the position of the modal yarn 8 in the composite yarn, and a micropore part is formed by weaving the position of the terylene fiber I9 in the composite yarn.
As shown in fig. 2, the surface layer 1 is a satin weave composed of four two-over-two-under warp surface weaves and two three-over-two-under warp surface weaves, the weave point of the first warp in the satin weave is two-over-two-under, the weave point of the second warp in the satin weave is two-over-two-under, the weave point of the third warp in the satin weave is one-over-one-under, the weave point of the fourth warp in the satin weave is one-over-one-under, the weave point of the fifth warp in the satin weave is one-over-one-under-two-over, and the weave point of the sixth warp in the satin weave is two-over-one-under-one-over.
When people need this fabric, at first accomplish the twisting of two 3 polyester fiber and spandex fibre 4 through the machine of twisting, obtain sandwich layer 2 for this fabric has better elasticity, then interweave cotton fiber 6 each other spiral in the outside of sandwich layer 2 through the technology of walking spindle spinning, obtain the layer 5 that absorbs water, when carrying out printing and dyeing, the layer 5 that absorbs water can be through the stronger hydroscopicity that cotton fiber 6 has, thereby adsorb the dyestuff, thereby make surface course 1 fully absorb water.
Then, the Modal yarn 8 and the polyester fiber I9 are spirally wound on the outer side of the water absorbing layer 5 in the same direction, the Modal yarn 8 has good dyeing performance, can obtain colors required by people after dyeing, is soft in texture and not easy to generate static electricity, and enables people to feel more comfortable when touching the surface layer 1.
Then, the composite yarn is woven according to a satin weave to obtain the surface layer 1, and then, the surface layer 1 is sanded through a sanding machine, so that modal short fibers in the modal yarn 8 can form micro-velvet, and the micro-velvet can shield the micropore part, so that uniform color generation can be represented on the surface layer 1.
It is above only the utility model discloses a preferred embodiment, the utility model discloses a scope of protection does not only confine above-mentioned embodiment, the all belongs to the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. It should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (7)

1. Coloring comfortable terylene cloth comprises a surface layer (1) and is characterized in that: the surface layer (1) is provided with a plurality of modal parts and micro-holes which are distributed in an array mode, the sectional area of the modal parts is larger than that of the micro-holes, a plurality of micro-velvet are fixedly connected to two layers in the thickness direction of the surface layer (1), the micro-velvet shields the micro-holes, and the micro-velvet is made of a modal material.
2. The colored comfort polyester fabric according to claim 1, wherein: the surface layer (1) is a satin weave which consists of four two-over-two-under warp surface weaves and two three-over-two-under warp surface weaves.
3. The colored comfort polyester fabric according to claim 2, wherein: the weave points of the first warp in the satin weave are two-over-two-down, the weave points of the second warp in the satin weave are two-over-two-over, the weave points of the third warp in the satin weave are one-over-one-under-one-over-one-under, the weave points of the fourth warp in the satin weave are one-under-one-over-one-under-one-over, the weave points of the fifth warp in the satin weave are one-over-one-under-two, and the weave points of the sixth warp in the satin weave are two-over-one-under-one-over.
4. The colored comfort polyester fabric according to claim 1, wherein: the surface layer (1) is woven by composite yarns, and the radiuses of the composite yarns are arranged along the length direction of the composite yarns in an alternating mode.
5. The colored comfort polyester fabric according to claim 4, wherein: the composite yarn comprises a core layer (2), a water absorption layer (5) located on the outer ring of the core layer and an outer layer (7) located on the outermost side of the water absorption layer, wherein the outer layer (7) is formed by spirally winding a Modal yarn (8) and a polyester fiber (9) in the same direction on the outer side of the water absorption layer (5), the number of the Modal yarn (8) is smaller than the number of the polyester fiber (9), the Modal yarn (8) is a Modal short fiber yarn, micro-pile is formed by sanding the Modal yarn (8), the Modal part is formed by weaving the position of the Modal yarn (8) in the composite yarn, and the micro-hole part is formed by weaving the position of the polyester fiber (9) in the composite yarn.
6. The colored comfort polyester fabric according to claim 5, wherein: the core layer (2) is formed by twisting a polyester fiber II (3) and a spandex fiber (4).
7. The colored comfort polyester fabric of claim 5, wherein: the water absorbing layer (5) is formed by mutually and spirally interweaving two cotton fibers (6) on the outer side of the core layer (2).
CN202222518917.3U 2022-09-22 2022-09-22 Coloring comfortable polyester fabric Active CN218203289U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222518917.3U CN218203289U (en) 2022-09-22 2022-09-22 Coloring comfortable polyester fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222518917.3U CN218203289U (en) 2022-09-22 2022-09-22 Coloring comfortable polyester fabric

Publications (1)

Publication Number Publication Date
CN218203289U true CN218203289U (en) 2023-01-03

Family

ID=84638343

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222518917.3U Active CN218203289U (en) 2022-09-22 2022-09-22 Coloring comfortable polyester fabric

Country Status (1)

Country Link
CN (1) CN218203289U (en)

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