CN211595922U - Weaving rib fabric - Google Patents

Weaving rib fabric Download PDF

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Publication number
CN211595922U
CN211595922U CN201921915240.9U CN201921915240U CN211595922U CN 211595922 U CN211595922 U CN 211595922U CN 201921915240 U CN201921915240 U CN 201921915240U CN 211595922 U CN211595922 U CN 211595922U
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China
Prior art keywords
warp
weft
group
warps
yarns
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CN201921915240.9U
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Chinese (zh)
Inventor
李君�
李海龙
黄云英
祝丽
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SUZHOU SHENGLONG SILK EMBROIDERY CO Ltd
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SUZHOU SHENGLONG SILK EMBROIDERY CO Ltd
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Priority to CN201921915240.9U priority Critical patent/CN211595922U/en
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Abstract

The utility model discloses a weave luo mian material, it relates to textile product's technical field, if warp or weft are too loose, then the surface fabric falls off easily to aim at solving current surface fabric, causes the problem of the damage of surface fabric, and its technical scheme main points are including first warp, second warp and first weft, second warp twines on first weft, two at least are a set of for first weft, at least one of second warp is a set of, first warp every strides a set of first weft and just passes from a set of second warp's below. Through first warp with second warp and the firmness that first woof twined the improvement surface fabric together, reached and avoided warp or first woof too loose, prevented that the surface fabric from falling the effect of line.

Description

Weaving rib fabric
Technical Field
The utility model belongs to the technical field of the technique of textile product and specifically relates to a weave net surface fabric.
Background
Along with the increasing quality of life of people, the requirements of people on the quality of clothes are also higher and higher. The most direct requirement is for the fabric of clothes, and the existing silk fabrics can be roughly classified into silks, nets, silks, satins, silks, silk fabrics, brocade, silk fabrics and the like. The gauze is silk fabric with strip-shaped leno weave and the surface of the fabric has empty holes. The tradition variety of Hangzhou luo is a transverse luo, the appearance is expressed in light and thin texture, the silk thread is fine, the warp threads are twisted into a pepper hole shape, the texture is compact and firm, the yarn holes are ventilated and cool, the tradition variety of Hangzhou luo is comfortable and cool to wear, and the tradition variety of Hangzhou luo is suitable for manufacturing summer clothes, embroidery blanks and ornaments and is a pure silk fabric.
In the existing textile products, the common fabric is generally formed by winding and weaving warp threads 1 and weft threads 2, as shown in fig. 1, a plurality of weft threads 2 are arranged in parallel, wherein one warp thread 1 firstly passes through the lower part of a first weft thread 2, then strides over the upper part of a second weft thread 2, and passes through the lower part of a third weft thread 2, so as to circulate; the adjacent warp threads 1 are wound around the weft threads 2 in the opposite manner, crossing over the first weft thread 2 and then under the second weft thread 2, and then crossing over the third weft thread 2 and circulating in this way.
The density of the fabric has certain requirements, wherein the weft 2 is horizontally arranged and can be freely moved in the vertical direction, the warp 1 is vertically arranged and can be freely moved in the horizontal direction, and if the warp 1 or the weft 2 is too loose, larger holes can be formed, so that the thread on the fabric is easily torn off, and the fabric is damaged.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a weave net surface fabric, it has the warp of avoiding or first weft too loose, prevents the advantage that the surface fabric from falling off the line.
In order to achieve the above purpose, the utility model provides a following technical scheme:
a knitted leno fabric is characterized in that: the warp yarn comprises first warp yarns, second warp yarns and first weft yarns, wherein the second warp yarns are wound on the first weft yarns, at least one first weft yarn is in one group, at least one second warp yarn is in one group, each first warp yarn corresponds to one group of second warp yarns and all first weft yarns, and each first warp yarn crosses over one group of first weft yarns from the lower part of the corresponding group of second warp yarns to the other side of the group of second warp yarns and then continues to cross over the next group of first weft yarns.
Through adopting above-mentioned technical scheme, first warp twines second warp and first woof together, improves the stability of the relative position of first woof, second warp and first warp itself, avoids falling the line. Meanwhile, the fabric is ensured to have certain looseness, and the air permeability of the fabric is ensured.
Furthermore, one first weft is a group, one second warp is a group, and the second warp is arranged below the first weft.
Through adopting above-mentioned technical scheme, twine second warp and first woof together through first warp, ensure the relative stability between second warp and the first woof.
Furthermore, the two first wefts form a group, the two second warps form a group, the first warp in each group firstly crosses over the first weft in the group of first wefts and then passes under the second weft in the group of first wefts, and the two adjacent second warps in each group are wound on the first wefts in an opposite mode.
Through adopting above-mentioned technical scheme, each is woven regional through two first wefts of two second warp cooperations and is woven and form, improves warp and weft's position relative stability.
Further, the three first weft yarns form one group, the two second warp yarns form one group, the first warp yarn in each group firstly crosses over the first weft yarn in one group of first weft yarns, then passes through the lower part of the second weft yarn in the group of first weft yarns and then crosses over the third weft yarn in the group of first weft yarns, and the two adjacent warp yarns in each group are wound on the first weft yarns in each group in an opposite mode.
Through adopting above-mentioned technical scheme, every is woven regional and is woven through three first weft of two second warp cooperations and form, further improves warp and weft's position relative stability.
Furthermore, two adjacent first warps and two adjacent second warps are symmetrically arranged.
By adopting the technical scheme, the gaps between the warps are ensured, and the air permeability of the fabric is improved.
Furthermore, two adjacent first warps and two adjacent groups of second warps are arranged along the length direction of the first wefts in the same mode.
Through adopting above-mentioned technical scheme for laminating is inseparabler between the warp, improves relative stability.
Further, the first warp and the second warp are real silk, and the first weft is bamboo fiber.
By adopting the technical scheme, compared with real silk, the bamboo fiber is firmer and cooler, so that the fabric is firmer, softer and cooler.
Furthermore, the surfaces of the first warp threads, the second warp threads and the first weft threads are coated with polyurethane coatings.
By adopting the technical scheme, the braided wire after being coated has plump hand feeling and elasticity.
To sum up, the utility model discloses a beneficial technological effect does:
1. the first warps are arranged, so that the effect of ensuring the relative stability of the positions of the second warps and the first wefts is achieved;
2. due to the arrangement of the bamboo fibers, the effects of improving the firmness and the cooling property of the fabric are achieved;
3. through two adjacent sets of first warp, the symmetrical setting of second warp to produce the effect that improves the surface fabric gas permeability.
Drawings
FIG. 1 is a schematic view of a conventional knitted structure of a leno fabric;
FIG. 2 is a schematic view of a symmetrical weave structure of example 1;
FIG. 3 is a schematic view of a translational weaving structure of embodiment 1;
FIG. 4 is a schematic view of a symmetrical weave structure of example 2;
FIG. 5 is a schematic view of a translating knitting structure of embodiment 2;
FIG. 6 is a schematic view of a symmetrical weave structure of example 3;
fig. 7 is a schematic view of a translational weaving structure of embodiment 3.
In the figure, 1, warp; 2. a weft; 11. a first warp thread; 12. a second warp thread; 21. the first weft.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example 1:
referring to fig. 2, for the present invention discloses a woven leno fabric, which comprises first warp threads 11, second warp threads 12 and first weft threads 21. One first weft 21 is a group, one second warp 12 is a group, and each first warp 11 corresponds to one group of second warps 12 and all first wefts 21. In this embodiment, the second warps 12 are disposed below the first wefts, and each first warp 11 crosses over one group of the first wefts 21 to pass below the corresponding group of the second warps 12. The second warp threads 12 are twisted with the first weft threads 21 by the first warp threads 11 to ensure relative stability between the second warp threads 12 and the first weft threads 21. Two adjacent first warps 11 and two groups of second warps 12 are symmetrically arranged, so that a gap is reserved between the second warps 12 and the second warps 12, and the air permeability of the fabric is improved.
Referring to fig. 3, two adjacent first warps 11 and second warps 12 are arranged along the length direction of the first weft 21 in the same manner, so that the first warps 11 and the second warps 12 are attached more tightly, and the relative stability between the first warps 11, the second warps 12 and the first weft 21 is improved.
Example 2:
referring to fig. 4, for the present invention discloses a woven leno fabric, which comprises first warp threads 11, second warp threads 12 and first weft threads 21. The first weft 21 is a set of two, the second warp 12 is a set of two, and each first warp 11 corresponds to a set of the second warp 12 and all the first weft 21. The first warp yarns 11 pass under the corresponding set of second warp yarns 12 each time they cross one set of first weft yarns 21. In this embodiment, each group of the first second warp yarns 12 firstly crosses the first weft yarn 21 and then crosses below the second first weft yarn 21, and the adjacent second warp yarns 12 are wound around the first weft yarn 21 in an opposite manner, that is, firstly crosses below the first weft yarn 21 and then crosses above the second first weft yarn 21. Each weaving area is formed by weaving two second warps 12 and two first wefts 21 in a matching mode, and the position relative stability of the second warps 12 and the first wefts 21 is improved. Two adjacent first warps 11 and two sets of second warps 12 are arranged symmetrically, so that gaps are reserved between the warps, and the air permeability of the fabric is improved.
Referring to fig. 5, two adjacent first warps 11 and two groups of second warps 12 are arranged along the length direction of the first weft 21 in the same manner, so that the first warps 11 and the second warps 12 are more closely attached to each other, and the relative stability between the first warps 11, the second warps 12 and the first weft 21 is improved.
Example 3:
referring to fig. 6, for the present invention discloses a woven leno fabric, which comprises first warp threads 11, second warp threads 12 and first weft threads 21. The first weft 21 is a group of three, the second warp 12 is a group of two, and each first warp 11 corresponds to a group of the second warp 12 and all the first weft 21. In this embodiment, the first second warp yarn 12 firstly crosses the first weft yarn 21, then passes under the second first weft yarn 21, and then crosses the third first weft yarn 21, and the adjacent second warp yarns 12 are wound around the first weft yarn 21 in an opposite manner, that is, firstly passes under the first weft yarn 21, then crosses over the second first weft yarn 21, and then passes under the third first weft yarn 21. The first warp yarn 11 passes under the set of second warp yarns 12 each time it crosses a set of first weft yarns 21. Each weaving area is formed by weaving three second warps 12 and two first wefts 21 in a matching mode, and the position relative stability of the second warps 12 and the first wefts 21 is improved. Two adjacent first warps 11 and two sets of second warps 12 are arranged symmetrically, so that gaps are reserved between the warps, and the air permeability of the fabric is improved.
Referring to fig. 7, two adjacent first warps 11 and two groups of second warps 12 are arranged along the first wefts 21 in the same manner, so that the first warps 11 and the second warps 12 are more tightly attached to each other, and the relative stability among the first warps 11, the second warps 12 and the first wefts 21 is improved.
In the above embodiments, the first warp 11 and the second warp 12 are both silk, and the first weft 21 is bamboo fiber. Compared with real silk, the bamboo fiber is firmer and cooler, so that the fabric is firmer, softer and cooler. The surfaces of the first warp 11, the second warp 12 and the first weft 21 are coated with polyurethane coatings, so that the coated braided wire has a plump hand feeling and elasticity.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. A knitted leno fabric is characterized in that: the warp yarn comprises first warp yarns (11), second warp yarns (12) and first weft yarns (21), wherein the second warp yarns (12) are wound on the first weft yarns (21), at least one of the first weft yarns (21) is a group, at least one of the second warp yarns (12) is a group, each first warp yarn (11) corresponds to one group of the second warp yarns (12) and all the first weft yarns (21), and each first warp yarn (11) crosses over one group of the first weft yarns (21) and then passes through the other side of the group of the second warp yarns (12) from the lower side of the corresponding group of the second warp yarns (12) and then continues to cross over the other side of the next group of the first weft yarns (21).
2. A knitted leno fabric according to claim 1, characterised in that: one first weft (21) is a group, one second warp (12) is a group, and the second warp (12) is arranged below the first weft (21).
3. A knitted leno fabric according to claim 1, characterised in that: the two first wefts (21) form a group, the two second warps (12) form a group, the first warp (12) in each group firstly crosses over the first weft (21) in the group of first wefts (21) and then passes through the lower part of the second weft (21) in the group of first wefts (21), and the two adjacent second warps (12) in each group are wound on each group of first wefts (21) in an opposite mode.
4. A knitted leno fabric according to claim 1, characterised in that: the first weft (21) is divided into a group of three, the second warp (12) is divided into a group of two, the first warp (12) in each group crosses over the first weft (21) in the group of first wefts (21), then passes under the second weft (21) in the group of first wefts (21), and then crosses over the third weft (21) in the group of first wefts (21), and the two adjacent warps (12) in each group are wound on the first wefts (21) in an opposite mode.
5. A knitted leno fabric according to claim 1, characterised in that: two adjacent first warps (11) and two adjacent groups of second warps (12) are symmetrically arranged.
6. A knitted leno fabric according to claim 1, characterised in that: two adjacent first warps (11) and two adjacent groups of second warps (12) are arranged along the length direction of the first wefts (21) according to the same mode.
7. A knitted compass fabric as claimed in any one of claims 1 to 6, wherein: the first warp (11) and the second warp (12) are both real silk, and the first weft (21) is bamboo fiber.
8. A knitted compass fabric as claimed in any one of claims 1 to 6, wherein: and polyurethane coatings are coated on the surfaces of the first warp (11), the second warp (12) and the first weft (21).
CN201921915240.9U 2019-11-07 2019-11-07 Weaving rib fabric Active CN211595922U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921915240.9U CN211595922U (en) 2019-11-07 2019-11-07 Weaving rib fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921915240.9U CN211595922U (en) 2019-11-07 2019-11-07 Weaving rib fabric

Publications (1)

Publication Number Publication Date
CN211595922U true CN211595922U (en) 2020-09-29

Family

ID=72587343

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921915240.9U Active CN211595922U (en) 2019-11-07 2019-11-07 Weaving rib fabric

Country Status (1)

Country Link
CN (1) CN211595922U (en)

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