CN216765184U - Woven herringbone tissue of fishbone - Google Patents
Woven herringbone tissue of fishbone Download PDFInfo
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- CN216765184U CN216765184U CN202123326523.XU CN202123326523U CN216765184U CN 216765184 U CN216765184 U CN 216765184U CN 202123326523 U CN202123326523 U CN 202123326523U CN 216765184 U CN216765184 U CN 216765184U
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Abstract
The utility model discloses a herringbone tissue of a woven fishbone, which comprises: warp float length tissue, weft float length tissue, warp tissue points and weft tissue points; the two warp float length tissues are connected through weft tissue points to form a warp float length tissue unit; the two weft floating long tissues are connected through warp tissue points to form a weft floating long tissue unit; the warp float long weave units and the weft float long weave units are arranged in an inclined and alternate mode. The utility model forms a pattern by the warp float-long weave and the weft float-long weave, and the pattern forms a weave structure with stronger stereoscopic impression on the knitting weave.
Description
Technical Field
The utility model belongs to the technical field of spinning, and particularly relates to a herringbone tissue of a woven fishbone.
Background
The cashmere fabric has the characteristics of comfortable wearing, strong heat retention, plump suede, soft hand feeling and soft luster, and the patterns of the cashmere fabric are usually embodied by printing and dyeing, so that the stereoscopic impression is lost.
In recent years, people gradually relax their clothing style, and clothing and dress products are more and more personalized. How to embody the wild and random style on the fabric with exquisite body feeling without losing the noble and elegant quality of the cashmere fabric is the development direction of the cashmere fabric in the future.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a woven fishbone herringbone structure, wherein a pattern is formed by a warp float long structure and a weft float long structure, and the pattern forms a tissue structure with stronger stereoscopic impression on a knitting structure.
The technical scheme is as follows:
a woven fishbone herringbone comprising: warp float length tissue, weft float length tissue, warp tissue points and weft tissue points; the two warp float length tissues are connected through weft tissue points to form a warp float length tissue unit; the two weft floating long tissues are connected through warp tissue points to form a weft floating long tissue unit; the warp float long weave units and the weft float long weave units are arranged in an inclined and alternate mode.
Furthermore, the warp float length tissue units arranged in a row and the weft float length tissue units arranged in a row are longitudinally arranged at intervals.
Furthermore, the number of the tissue points of the warp float length tissue is N, wherein N is more than or equal to 3; in the warp float length tissue unit, two warp float length tissues are obliquely arranged by N +1 warp float lengths according to the rule of the number of flies.
Furthermore, the number of the weft float length tissue points of the weft float length tissue is N, wherein N is more than or equal to 3; in the weft floating length organization unit, two weft floating structures are obliquely arranged by N +1 weft floating lengths according to the rule of the flying number 1.
Compared with the prior art, the utility model has the following advantages:
the herringbone tissue of the woven fishbone of the utility model forms a pattern by the warp float length tissue and the weft float length tissue, and the pattern forms a tissue structure with stronger stereoscopic impression on the knitting tissue. The tissue is used for the woolen cashmere scarf, so that the stereoscopic impression and the thickness of the scarf are enhanced, and the value of a product is improved.
Drawings
FIG. 1 is a schematic structural view of the woven herringbone tissue of the fishbone in the utility model.
Detailed Description
The following description sufficiently illustrates specific embodiments of the utility model to enable those skilled in the art to practice and reproduce it.
As shown in figure 1, the structure of the woven herringbone tissue of the fishbone in the utility model is schematically shown.
A woven fishbone herringbone comprising: a warp float long tissue 1, a weft float long tissue 2, warp tissue points 3 and weft tissue points 4; the two warp floating long tissues 1 are connected through weft tissue points 4 to form a warp floating long tissue unit; the two weft floating long tissues 2 are connected through warp tissue points 3 to form a weft floating long tissue unit; the warp float long weave units and the weft float long weave units are arranged in an inclined and alternate mode.
The warp structure points 3 and the weft structure points 4 play a consolidation role.
The number of the tissue points of the warp float length tissue 1 is N, and N is more than or equal to 3; in the warp float length tissue unit, two warp float length tissues 1 are obliquely arranged by N +1 warp float lengths according to the rule of the flying number 1.
The number of the weft floating length tissue points of the weft floating length tissue 2 is N, and N is more than or equal to 3; in the weft float length organization unit, two weft float organizations 2 are obliquely arranged by N +1 weft float lengths according to the rule of the flying number 1.
In order to embody the three-dimensional sense of design elements and change, cashmere roving is adopted, the yarn count is 32-24 metric double yarns, the number of the combined yarns is 2, and single yarn: 420-510T/M and double yarns 220-260T/M, and the product specification is as follows: the length is 120-160 CM, width is 20-70 CM, weight is 200-220G/square meter, and the product is woven by rapier loom.
The number of longitude and latitude of one tissue cycle is 8 respectively.
Channel-outgrowth tissue 1: the number of the tissue points of the warp float length is 3, two groups of warp float length tissues 1 are arranged upwards by 4 warp float lengths according to the rule of the flying number 1, and the two groups of warp float lengths are connected by weft tissue points, so that a warp float length tissue unit part is formed.
Weft float long weave 2: the number of the tissue points of the weft floating length is 3, two groups of weft floating length tissues 2 are upwards arranged by 4 weft floating lengths according to the law of the flying number 1, and the two groups of weft floating lengths are connected by warp tissue points, so that a weft floating length tissue unit part is formed.
The included angle of the inclined directions of the warp floating long tissue units and the weft floating long tissue units is 90 degrees, and the arrangement direction of the tissue points is vertical. The warp float length tissue units and the weft float length tissue units are alternately arranged in the inclined direction to form a woven fishbone herringbone tissue.
The cashmere slubbing product with the woven fishbone herringbone tissue has stronger stereoscopic impression, soft hand feeling and plump suede after the process finishing such as fulling and the like. The herringbone tissue of the fishbone endows the product with unique appearance.
The terminology used herein is for the purpose of description and illustration, rather than of limitation. As the present invention may be embodied in several forms without departing from the spirit or essential characteristics thereof, it should also be understood that the above-described embodiments are not limited by any of the details of the foregoing description, but rather should be construed broadly within its spirit and scope as defined in the appended claims, and therefore all changes and modifications that fall within the meets and bounds of the claims, or equivalences of such meets and bounds are therefore intended to be embraced by the appended claims.
Claims (4)
1. A woven fishbone herringbone tissue, comprising: warp float length tissue, weft float length tissue, warp tissue points and weft tissue points; the two warp float length tissues are connected through weft tissue points to form a warp float length tissue unit; the two weft floating long tissues are connected through warp tissue points to form a weft floating long tissue unit; the warp float long weave units and the weft float long weave units are arranged in an inclined and alternate mode.
2. A woven fish bone herringbone pattern as defined in claim 1 wherein the row of warp float cells is longitudinally spaced from the row of weft float cells.
3. The woven fish bone herringbone tissue of claim 1, wherein the number of the tissue points subjected to the floating length of the floating length tissue is N, and N is more than or equal to 3; in the warp float length tissue unit, two warp float length tissues are obliquely arranged by N +1 warp float lengths according to the rule of the number of flies.
4. The woven fish bone herringbone structure of claim 1, wherein the number of the structure points of the weft float length structure is N, and N is more than or equal to 3; in the weft floating length organization unit, two weft floating structures are obliquely arranged by N +1 weft floating lengths according to the rule of the flying number 1.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123326523.XU CN216765184U (en) | 2021-12-27 | 2021-12-27 | Woven herringbone tissue of fishbone |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123326523.XU CN216765184U (en) | 2021-12-27 | 2021-12-27 | Woven herringbone tissue of fishbone |
Publications (1)
Publication Number | Publication Date |
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CN216765184U true CN216765184U (en) | 2022-06-17 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202123326523.XU Active CN216765184U (en) | 2021-12-27 | 2021-12-27 | Woven herringbone tissue of fishbone |
Country Status (1)
Country | Link |
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CN (1) | CN216765184U (en) |
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2021
- 2021-12-27 CN CN202123326523.XU patent/CN216765184U/en active Active
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