CN220079323U - Hank weaved mesh cloth with color-changing function - Google Patents

Hank weaved mesh cloth with color-changing function Download PDF

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Publication number
CN220079323U
CN220079323U CN202321416936.3U CN202321416936U CN220079323U CN 220079323 U CN220079323 U CN 220079323U CN 202321416936 U CN202321416936 U CN 202321416936U CN 220079323 U CN220079323 U CN 220079323U
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warp
hank
group
weft
color
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CN202321416936.3U
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周雄涛
郎涛
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Zhejiang Sun Textilene Co ltd
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Zhejiang Sun Textilene Co ltd
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Abstract

The utility model discloses a hank-woven mesh with a color-changing function, which comprises a mesh body with a color-changing function, wherein the mesh body comprises a first warp group, a second warp group and weft threads, the first warp group and the second warp group both comprise ground warp threads and hank warp threads, single ground warp threads and single hank warp threads are staggered and interweaved with each other to form interweaving points and holes, the first warp group and the second warp group are staggered, so that the interweaving points of the first warp group are opposite to the holes of the second warp group, the weft threads penetrate through the holes of each first warp group and each second warp group to form hank-woven with the ground warp threads and the hank warp threads, the weft threads are wave-shaped, the ground warp threads and the hank warp threads are TPEE core-spun yarns, the ground warp threads and the hank warp threads tightly clamp the weft threads to enable the hank-woven mesh to be firmer and more compact and not easy to deform, the single ground warp threads and the single hank warp threads are staggered and interweaved with each other, the structure is enabled to be more stereoscopic, and the support and stereoscopic feeling of the mesh body are improved.

Description

Hank weaved mesh cloth with color-changing function
Technical Field
The utility model relates to a mesh cloth, in particular to a hank-woven mesh cloth with a color-changing function.
Background
The mesh cloth is a fabric with meshes, has good air permeability, and has a smooth cloth body after being bleached and dyed, so that the mesh cloth is used as articles such as summer clothing, curtains, mosquito nets, leisure fabrics, shoe fabrics, dinner pads and the like.
For example, the plastic-coated glass fiber mesh cloth disclosed in patent CN2221037Y comprises warp and weft which are interwoven, wherein the thickness of the warp and the weft adopts 75-85 threads, and the number of the threads of the warp and the weft is unequal.
The existing mesh cloth has the problems that the warp and the weft are only simply interwoven up and down, so that the mesh cloth is low in strength, loose in weaving, easy to deform and soft, and the three-dimensional effect is poor when the mesh cloth is applied to articles such as shoe fabrics or dinner pads.
Disclosure of Invention
Based on the fact that the mesh cloth is loose, easy to deform and soft and has insufficient stereoscopic impression, the utility model provides the hank-woven mesh cloth with the color-changing function.
The technical scheme adopted for solving the technical problems is as follows: the utility model provides a hank is knitted screen cloth with function discolours, includes the changeable screen cloth main part of colour, its characterized in that, the screen cloth main part includes first warp group, second warp group and weft, and first warp group and second warp group all include ground warp and hank warp, and single ground warp and single hank warp are dislocation interweaved each other and are formed interweaving point and hole, first warp group and second warp group dislocation set to make the interweaving point of first warp group and the hole of second warp group opposite, the weft passes in each first warp group and each second warp group's hole, forms hank with ground warp and hank warp and weaves, the weft is the wave, ground warp and hank warp are TPEE covering yarn.
The further preferable technical scheme of the utility model is as follows: two wefts pass through the holes of each first warp yarn group and each second warp yarn group.
The further preferable technical scheme of the utility model is as follows: the two wefts are circularly twisted in a mode of passing through the same hole of the first warp yarn set and then respectively passing through two adjacent holes of the second warp yarn set.
The further preferable technical scheme of the utility model is as follows: four second warp yarn groups are arranged between two adjacent first warp yarn groups, and four first warp yarn groups are arranged between two adjacent second warp yarn groups.
The further preferable technical scheme of the utility model is as follows: the main body of the mesh cloth changes color with temperature.
The further preferable technical scheme of the utility model is as follows: the main body of the mesh cloth is sensitive to color change.
The further preferable technical scheme of the utility model is as follows: the weft is a flat yarn.
The further preferable technical scheme of the utility model is as follows: the weft is formed by blending TPE air textured yarns and thermochromic fibers.
The further preferable technical scheme of the utility model is as follows: the weft is formed by blending TPE air textured yarns and photochromic fibers.
The further preferable technical scheme of the utility model is as follows: the main body of the mesh cloth is coated with color-changing ink.
Compared with the prior art, the utility model has the advantages that the first warp group and the second warp group comprise ground warp and hank warp, the single ground warp and the single hank warp are staggered and interweaved with each other to form interweaving points and holes, the first warp group and the second warp group are staggered and interweaved with each other to enable the interweaving points of the first warp group to be opposite to the holes of the second warp group, the weft passes through the holes of the first warp group and the second warp group to form hank with the ground warp and the hank warp, the ground warp and the hank warp are TPEE core-spun yarns, the weft passes through the holes of the first warp group and the second warp group during connection, the ground warp and the hank warp tightly clamp the weft to enable the hank mesh to be firmer and more compact and not easy to deform, the structure of the first warp group and the second warp are all staggered and interweaved with each other to form by the single ground warp and the hank warp, the ground warp and the hank warp are TPmesh-spun yarns, the TPEE core-spun yarns have rubber elasticity and engineering plastic strength, the main body supporting property and the main body color of the TPEE core-spun yarns can be increased, and the main body color of the TPEE is changeable.
Drawings
The utility model will be described in further detail below in connection with the drawings and the preferred embodiments, but it will be appreciated by those skilled in the art that these drawings are drawn for the purpose of illustrating the preferred embodiments only and thus should not be taken as limiting the scope of the utility model. Moreover, unless specifically indicated otherwise, the drawings are merely schematic representations, not necessarily to scale, of the compositions or constructions of the described objects and may include exaggerated representations.
FIG. 1 is a schematic view of the overall structure of a mesh;
FIG. 2 is a top schematic view of a web;
FIG. 3 is a left side view of the web;
FIG. 4 is a schematic front side view of a web;
FIG. 5 is a schematic illustration of a blend cut of TPE air-textured yarn and thermochromic fiber;
fig. 6 is a schematic drawing of a cut-away schematic of a blend of TPE air-textured yarns and photochromic fibers.
In the figure: 1. a weft thread; 2. a hole; 3. a ground warp thread; 4. twisting warp; 5. a first warp yarn set; 6. a second warp yarn set; 7. interweaving points; 8. a thermochromic fiber; 9. TPE space-variant yarn; 10. a photosensitive color-changing fiber; 11. a mesh body.
Detailed Description
Preferred embodiments of the present utility model will be described in detail below with reference to the accompanying drawings. Those skilled in the art will appreciate that these descriptions are merely illustrative, exemplary, and should not be construed as limiting the scope of the utility model.
It should be noted that: like reference numerals denote like items in the following figures, and thus once an item is defined in one figure, it may not be further defined and explained in the following figures.
1-6, a hank is woven screen cloth with function of discolouring, including colour changeable screen cloth main part 11, screen cloth main part 11 includes first warp group 5, second warp group 6 and weft 1, and first warp group 5 and second warp group 6 all include ground warp 3 and hank warp 4, and single ground warp 3 and single hank warp 4 dislocation interweave each other and form foretell first warp group 5 and second warp group 6, and single ground warp 3 and single hank warp 4 dislocation interweave the back and form interweave point 7 and hole 2.
The first warp yarn groups 5 and the second warp yarn groups 6 are arranged in a staggered manner, so that the interweaving points 7 of the first warp yarn groups 5 are opposite to the holes 2 of the second warp yarn groups 6, preferably, four second warp yarn groups 6 are arranged between two adjacent first warp yarn groups 5, and four first warp yarn groups 5 are arranged between two adjacent second warp yarn groups 6.
As shown in fig. 2, the weft 1 passes through the holes 2 of each first warp yarn set 5 and each second warp yarn set 6, and forms a twist with the ground warp yarns 3 and the twisted warp yarns 4, and the weft 1 passing through the first warp yarn set 5 and the second warp yarn set 6 is wave-shaped due to the mutual dislocation of the first warp yarn set 5 and the second warp yarn set 6, so as to form lines on the net surface of the net cloth, and the net is more attractive.
Preferably, two wefts 1 are respectively penetrated through the holes 2 of each first warp yarn group 5 and each second warp yarn group 6, specifically, the two wefts 1 are circularly twisted in a mode of penetrating through the same hole 2 of the first warp yarn group 5 and then respectively penetrating through two adjacent holes 2 on the second warp yarn group 6.
That is, two wefts 1 sequentially pass through the same holes 2 of the four first warp yarn groups 5 at the same time, are separated from each other toward both sides after passing through the fourth first warp yarn group 5, and the two wefts 1 respectively pass through the holes 2 on both sides of the interweaving points 7 of the second warp yarn group 6 opposite to the holes 2 of the first warp yarn group 5, and repeat the above cycle after sequentially passing through the four second warp yarn groups 6.
The warp yarn groups are arranged at intervals, a space is reserved between every two adjacent warp yarn groups, and a plurality of meshes 2 are formed between every two adjacent wavy weft yarns 1.
The weft 1 passes through the holes 2 of each first warp yarn group 5 and each second warp yarn group 6 during connection, the ground warp yarns 3 and the twisted warp yarns 4 tightly clamp the weft yarns 1, so that the twisted mesh cloth is firmer, more compact and not easy to deform, and the first warp yarn groups 5 and the second warp yarn groups 6 are formed by mutually staggered interweaving the single ground warp yarn 3 and the single twisted warp yarn 4, so that the structure of the warp yarn is more stereoscopic.
In addition, the ground warp 3 and the twisted warp 4 are TPEE core-spun yarns, which have elasticity of rubber and strength of engineering plastics, and can also improve the support and three-dimensional sense of the mesh body 11.
Preferably, the weft 1 is a flat yarn. The flat yarn has stronger impact property visually, so that the mesh shape formed by the surrounding of the mesh cloth by the weft 1 is more obvious.
The mesh body 11 is changeable in color to increase its functionality.
Preferably, the mesh body 11 is thermochromic, and the color of the mesh body 11 can be changed according to the change of the external temperature.
As shown in fig. 5, the thermochromic fiber 8 can be blended into the main body 11 of the mesh through the yarn material, specifically, the weft 1 is formed by blending the TPE air textured yarn 9 and the thermochromic fiber 8, the TPE air textured yarn 9 has the advantages of good hand feeling, strong hair feeling and the like, the comfort of the mesh is better, and the weft 1 can be changed according to the change of the external temperature through the blending of the TPE air textured yarn 9 and the thermochromic fiber 8.
Alternatively, the main body 11 of the mesh cloth can be coated with color-changing ink, the color-changing ink is thermochromic ink, and the color is changed by sensing the external temperature change through the thermochromic ink.
In another scheme, the thermochromic microcapsules can be coated on the surfaces of yarn fibers to realize thermochromic of the mesh main body 11.
According to the color of the mesh body 11 is changeable, the mesh body 11 is changed in color by light, and the mesh body 11 has different colors under different wavelengths of light, so that different colors are displayed.
As shown in fig. 6, the photochromic energy of the main body 11 of the mesh is obtained by blending the photochromic fiber 10 into the yarn material, specifically, the weft 1 is formed by blending the TPE space-variant yarn 9 and the photochromic fiber 10, the TPE space-variant yarn 9 has the advantages of good hand feeling, strong hair feeling and the like, the comfort of the mesh is better, the weft 1 has different color tones and presents different colors under different light wavelengths by blending the TPE space-variant yarn 9 and the photochromic fiber 10.
Alternatively, the main body 11 of the mesh cloth can be coated with color-changing ink, the color-changing ink is photosensitive color-changing ink, and the color is changed by sensing external light change through the photosensitive color-changing ink.
Alternatively, the photochromic microcapsules can be coated on the surface of yarn fibers to realize the photochromic of the mesh main body 11.
The above description of the present utility model provides a twisted mesh fabric with color changing function, and specific examples are applied to illustrate the principle and embodiments of the present utility model, and the above examples are only used to help understand the present utility model and core ideas. It should be noted that it will be apparent to those skilled in the art that various modifications and adaptations of the utility model can be made without departing from the principles of the utility model and these modifications and adaptations are intended to be within the scope of the utility model as defined in the following claims.

Claims (10)

1. The utility model provides a hank is knitted screen cloth with function discolours, includes the changeable screen cloth main part of colour, its characterized in that, the screen cloth main part includes first warp group, second warp group and weft, and first warp group and second warp group all include ground warp and hank warp, and single ground warp and single hank warp are dislocation interweaved each other and are formed interweaving point and hole, first warp group and second warp group dislocation set to make the interweaving point of first warp group and the hole of second warp group opposite, the weft passes in each first warp group and each second warp group's hole, forms hank with ground warp and hank warp and weaves, the weft is the wave, ground warp and hank warp are TPEE covering yarn.
2. A hanked mesh cloth with color changing function according to claim 1, wherein two wefts pass through the holes of each first warp yarn group and each second warp yarn group.
3. A hank-woven mesh fabric with a color-changing function according to claim 2, wherein two wefts are circularly hanked by passing through the same hole of the first warp yarn set and then passing through two adjacent holes of the second warp yarn set respectively.
4. A hank woven mesh fabric with color changing function according to claim 1 or 2, wherein four second warp yarn groups are arranged between two adjacent first warp yarn groups, and four first warp yarn groups are arranged between two adjacent second warp yarn groups.
5. A wringing web fabric with a color changing function according to claim 1, wherein the web fabric body is thermochromic.
6. A wringing web as claimed in claim 1, wherein the web body is photochromically variable.
7. A hanked screen cloth with color changing function according to claim 1, wherein the weft is a flat yarn.
8. A twist woven scrim having color shifting functionality according to claim 5, wherein said weft is blended from TPE air textured yarns and thermochromic fibers.
9. A twist woven scrim having color shifting functionality according to claim 6, wherein said weft is blended from TPE air textured yarns and photochromic fibers.
10. A wringing mesh fabric with a color changing function according to claim 5 or 6, wherein the mesh fabric body is coated with a color changing ink.
CN202321416936.3U 2023-06-05 2023-06-05 Hank weaved mesh cloth with color-changing function Active CN220079323U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321416936.3U CN220079323U (en) 2023-06-05 2023-06-05 Hank weaved mesh cloth with color-changing function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321416936.3U CN220079323U (en) 2023-06-05 2023-06-05 Hank weaved mesh cloth with color-changing function

Publications (1)

Publication Number Publication Date
CN220079323U true CN220079323U (en) 2023-11-24

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ID=88827408

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321416936.3U Active CN220079323U (en) 2023-06-05 2023-06-05 Hank weaved mesh cloth with color-changing function

Country Status (1)

Country Link
CN (1) CN220079323U (en)

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