CN211641197U - Cotton-like velvet fabric - Google Patents

Cotton-like velvet fabric Download PDF

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Publication number
CN211641197U
CN211641197U CN202020099089.2U CN202020099089U CN211641197U CN 211641197 U CN211641197 U CN 211641197U CN 202020099089 U CN202020099089 U CN 202020099089U CN 211641197 U CN211641197 U CN 211641197U
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China
Prior art keywords
cotton
fibers
weft
layer
warp
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Expired - Fee Related
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CN202020099089.2U
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Chinese (zh)
Inventor
庄潭华
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Tongxiang Henghua Textile Co ltd
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Tongxiang Henghua Textile Co ltd
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Priority to CN202020099089.2U priority Critical patent/CN211641197U/en
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Abstract

The utility model relates to the field of textile fabrics, in particular to a cotton velvet imitation fabric, which comprises an antistatic reinforced layer, wherein the antistatic reinforced layer is a core layer, and a cotton velvet imitation composite layer is bonded on the antistatic reinforced layer; the antistatic reinforced layer comprises a plurality of layers of antistatic cotton fiber mixed weaving layers, and the antistatic cotton fiber mixed weaving layers are woven by second warp fibers and second weft fibers; the second warp fibers comprise warp cotton fiber units and warp conductive fibers; the second weft-wise fibers comprise weft-wise cotton fiber units and weft-wise conductive fibers; the cotton-like composite layer comprises a plurality of conductive fiber mixed weaving layers, and the conductive fiber mixed weaving layers are woven by first warp fibers and first weft fibers; the first warp fibers comprise 50D/144F superfine denier terylene stretch yarn units and first warp conductive fibers; the first weft-wise fibers comprise 50D/24F nylon filament units and first weft-wise conductive fibers. The utility model discloses good antistatic performance has. The problem of prior art antistatic performance weak is solved.

Description

Cotton-like velvet fabric
Technical Field
The utility model belongs to the technical field of textile fabric and specifically relates to an imitative cotton velvet fabric is related to.
Background
The cotton-like velvet is the polyester superfine fiber which is a new product with high quality, high performance, high technical content and high added value. The monofilament linear density of the polyester fiber is much lower than that of the conventional polyester fiber, so that the polyester fiber has excellent dress performance different from the conventional polyester fiber, such as moisture absorption, air permeability, soft hand feeling, fullness, high elasticity, fluffiness, elegant feeling and the like.
Notice No. CN206544364U discloses a wear-resisting imitative cotton velvet pad pasting knurling surface fabric, including imitative cotton layer, imitative cotton layer is that polyester fiber weaves with super imitative cotton fibrous blended yarn and forms, warp direction silk is 50D 72F superfine denier polyester bullet silk, latitudinal direction silk is 75D 24X 12F super imitative cotton polyester mixed filament yarn, imitative cotton layer upper surface complex has chamois leather fine denier layer, and the laminating has the wearing layer at imitative cotton layer lower surface, chamois leather fine denier layer interweaves with the weft that mulberry silk fibre made by warp that island type polyester superfine denier fibre made and forms, be provided with PVC knurling film on the chamois leather fine denier layer.
The above prior art solutions have the following drawbacks: the product prepared by the cotton-like velvet can generate static electricity in the using process, so that the product prepared by the prior technical scheme is lack of antistatic performance, and the application field of the cotton-like velvet is limited. In summary, the prior art has the problem of weak antistatic performance.
SUMMERY OF THE UTILITY MODEL
To the not enough of prior art existence, one of the purposes of the utility model is to provide a better imitative cotton velvet fabric of antistatic properties.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme: a kind of cotton velvet fabric, including antistatic enhancement layer, antistatic enhancement layer is the sandwich layer, the upper and lower surfaces of the antistatic enhancement layer are bonded with the cotton velvet composite bed of imitating; the antistatic reinforced layer comprises a plurality of layers of antistatic cotton fiber mixed weaving layers, and the antistatic cotton fiber mixed weaving layers are formed by weaving second warp fibers and second weft fibers; the second warp fibers comprise warp cotton fiber units and warp conductive fibers positioned between the warp cotton fiber units; the second weft-wise fibers comprise weft-wise cotton fiber units and weft-wise conductive fibers positioned among the weft-wise cotton fiber units; the cotton-like composite layer comprises a plurality of conductive fiber mixed weaving layers, and the conductive fiber mixed weaving layers are formed by weaving first warp fibers and first weft fibers; the first warp fibers comprise 50D/144F superfine denier polyester elastic yarn units and first conductive warp fibers positioned between the 50D/144F superfine denier polyester elastic yarn units; the first weft-wise fibers comprise 50D/24F nylon filament units and first weft-wise conductive fibers positioned between the 50D/24F nylon filament units.
By adopting the technical scheme, the electrical fiber mixed-woven layer formed by mixed weaving not only has the excellent performances of moisture absorption, air permeability, soft and plump hand feeling, elasticity, fluffiness and elegant feeling of the cotton-like wool, but also has the good antistatic performance of the conductive fiber; the antistatic cotton fiber who forms of weaving thoughtlessly weaves the gas permeability that the layer had existing cotton fiber and has good antistatic performance again, has realized the utility model discloses have good antistatic performance when the utensil has guaranteed that good performances such as moisture absorption, ventilative, soft handle have, enlarged the utility model discloses an application range makes the utility model discloses better market prospect has.
The present invention may be further configured in a preferred embodiment as: the antistatic reinforced layer also comprises a static removing fiber layer which is bonded between the antistatic cotton fiber mixed woven layers.
Through adopting above-mentioned technical scheme, remove static fibrous layer and further increased the utility model discloses an antistatic capacity guarantees that whole has good antistatic performance.
The present invention may be further configured in a preferred embodiment as: and an antibacterial layer is bonded between the static electricity removing fiber layers.
Through adopting above-mentioned technical scheme, antibiotic layer is in order to solve the ventilative easy moisture absorption of cotton fiber and breed the problem of bacterium easily, and the setting on antibiotic layer makes the utility model is more sanitary healthy in new use.
The present invention may be further configured in a preferred embodiment as: the cotton velvet imitating composite layer also comprises an anti-aging layer bonded between the conductive fiber mixed layers.
Through adopting above-mentioned technical scheme, the ageing resistance layer has promoted the ageing resistance ability of imitative cotton velvet composite bed, makes the utility model discloses it is more durable.
The present invention may be further configured in a preferred embodiment as: the cotton-like composite layer also comprises a flame-retardant layer bonded between the conductive fiber mixed layers.
Through adopting above-mentioned technical scheme, fire-retardant layer makes imitative cotton velvet composite bed have better fire behaviour, promotes the security performance of user or service area.
The present invention may be further configured in a preferred embodiment as: the number of the cotton fibers in the warp cotton fiber units is between four and eight; the number of the warp-direction conductive fibers positioned between the warp-direction cotton fiber units is one; the number of the cotton fibers in the weft cotton fiber units is between one and four; the number of the weft-wise conductive fibers among the weft-wise cotton fiber units is one.
Through adopting above-mentioned technical scheme, the antistatic cotton fiber who mixes the weaving layer that forms mixes has the gas permeability of cotton fiber and has good antistatic properties again, makes the utility model discloses a better antistatic properties has when having excellent gas permeability.
The present invention may be further configured in a preferred embodiment as: the number of the 50D/144F superfine denier polyester elastic yarns in the 50D/144F superfine denier polyester elastic yarn unit is between eight and twelve; the number of the first conductive fibers between 50D/144F in the superfine denier polyester stretch yarn unit is one; the number of the 50D/24F nylon filaments in the 50D/24F nylon filament unit is between one and four; the number of the first weft-wise conductive fibers positioned between the 50D/24F nylon filament units is one.
Through adopting above-mentioned technical scheme, the conductive fiber mixed weaving layer of preparation not only has moisture absorption, ventilative, the soft, abundant, the elasticity of feeling, fluffiness and elegant sense good performance of imitative cotton velvet itself, and conductive fiber's good antistatic properties makes in addition the utility model discloses the scope that can be utilized is wider, and market prospect is good.
The present invention may be further configured in a preferred embodiment as: the imitation cotton velvet composite layer is bonded with a leather wear-resistant layer.
Through adopting above-mentioned technical scheme, promote holistic wear resistance, make this the utility model discloses it is more durable.
To sum up, the utility model discloses a following beneficial technological effect:
through antistatic enhancement layer, imitative cotton velvet composite bed, antistatic cotton fiber mixed weaving layer and conductive fiber mixed weaving layer, the utility model discloses the utensil has good antistatic properties when having guaranteed good performances such as moisture absorption, ventilative, soft handle, has enlarged the utility model discloses an application range makes the utility model discloses better market prospect has.
Through the antibacterial layer, the utility model is more sanitary and healthy.
Through ageing resistant layer and fire-retardant layer, make the utility model discloses durable more and have the security performance of good fire behaviour promotion user or service area.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic diagram of a hybrid structure of an antistatic cotton fiber hybrid layer;
fig. 3 is a schematic diagram of a hybrid structure of a conductive fiber hybrid layer.
In the figure, 1, a composite layer imitating cotton velvet; 11. a conductive fiber hybrid layer; 111. a first warp fiber; 1111. a superfine denier polyester elastic yarn unit; 1112. a first conductive fiber; 112. a first weft fiber; 1121. a nylon filament unit; 1122. a first weft conductive fiber; 12. an anti-aging layer; 13. a flame retardant layer; 2. an antistatic reinforcing layer; 21. antistatic cotton fiber mixed layer; 211. a second warp fiber; 2111. warp-wise cotton fiber units; 2112. warp-wise conductive fibers; 212. a second weft fiber; 2121. weft cotton fiber units; 2122. weft-wise conductive fibers; 22. a destaticizing fiber layer; 23. an antimicrobial layer; 3. and a leather wear-resistant layer.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, the cotton velvet like fabric disclosed by the present invention comprises an antistatic reinforced layer 2, wherein the antistatic reinforced layer 2 is a core layer, and cotton velvet like composite layers 1 are bonded to the upper and lower surfaces of the antistatic reinforced layer 2; in order to enhance the wear-resisting property of the cotton wool-like composite layer 1, the leather wear-resisting layer 3 is bonded on the cotton wool-like composite layer 1, and the artificial leather with better wear resistance is selected as the leather wear-resisting layer 3.
Referring to fig. 1, the antistatic enhancement layer 2 comprises four antistatic cotton fiber mixed layers 21, and in order to ensure that the conductivity of the antistatic cotton fiber mixed layer 21 can effectively remove static electricity and ensure the sanitation and health of the fabric, a static electricity removing fiber layer 22, an antibacterial layer 23 and a static electricity removing fiber layer 22 are respectively bonded between the four antistatic cotton fiber mixed layers 21. The static removing fiber layer 22 is a fiber cloth woven by carbon black type conductive fibers, so that charges accumulated in the fabric can be effectively led out, and the static resistance of the fabric is improved. The antibacterial layer 23 is cotton fiber cloth woven by cotton fibers compounded with nano silver, so that bacteria and mould breeding in the fabric can be effectively eliminated, and the sanitary safety performance of the fabric is ensured.
Referring to fig. 2, the antistatic cotton fiber hybrid layer 21 includes second warp fibers 211 and second weft fibers 212, the second warp fibers 211 including warp cotton fiber units 2111 and warp conductive fibers 2112 between the warp cotton fiber units 2111; the second weft fibers 212 include weft cotton fiber elements 2121 and weft conductive fibers 2122 located between the weft cotton fiber elements 2121. The warp conductive fibers 2112 and the weft conductive fibers 2122 are all made of conductive polyaniline to form fiber yarns, and charges accumulated in the fabric can be effectively removed. The number of cotton fibers in warp cotton fiber unit 2111 is five; the number of the warp direction conductive fibers 2112 positioned between the warp direction cotton fiber units 2111 is one; the number of cotton fibers in the weft cotton fiber unit 2121 is one; the number of the weft conductive fibers 2122 between the weft cotton fiber units 2121 is one, so that the antistatic cotton fiber mixed-woven layer 21 formed by mixed-weaving has the air permeability of cotton fibers and good antistatic performance.
Referring to fig. 3, imitative cotton velvet composite bed 1 includes that three-layer conductive fiber mixes weaving layer 11, in order to guarantee imitative cotton velvet composite bed 1 life, adjacent conductive fiber mixes the bonding between weaving layer 11 and has anti-aging layer 12, and anti-aging layer 12 is by the polypropylene fiber textile fabric who has compounded ultraviolet absorber, can the effective absorption ultraviolet ray, the protection the utility model discloses an inner structure is not destroyed. In order to promote the utility model discloses the surface fabric uses safelyr, and adjacent conductive fiber thoughtlessly weaves the bonding between the layer 11 and has the fire-retardant layer 13 that is located anti-aging layer 12 lower part, and fire-retardant layer 13 is by the PPS fibre textile fabric who has compounded halogen element, can promote the flame retardant property of imitative cotton velvet composite bed 1, promotes the security performance of user or service area. The conductive fiber hybrid layer 11 comprises first warp fibers 111 and first weft fibers 112; the first warp fibers 111 comprise 50D/144F ultra fine denier polyester textured yarn units 1111 and first warp conductive fibers 1112 arranged between the 50D/144F ultra fine denier polyester textured yarn units 1111; the first weft-wise fibers 112 comprise 50D/24F nylon filament units 1121 and first weft-wise conductive fibers 1122 positioned between the 50D/24F nylon filament units 1121. The first warp conductive fibers 1112 and the first weft conductive fibers 1122 are made of conductive polyaniline to effectively remove static electricity from the fabric. The number of the 50D/144F superfine denier polyester elastic yarns in the 50D/144F superfine denier polyester elastic yarn unit 1111 is eight; the number of the first conductive fibers 1112 positioned between 50D/144F in the superfine denier polyester stretch yarn unit 1111 is one; the number of the 50D/24F nylon filaments in the 50D/24F nylon filament unit 1121 is one; the quantity that is located first latitudinal direction conductive fiber 1122 between 50D 24F's polyamide filament unit 1121 is one, and the conductive fiber mixed weaving layer 11 that forms of mixing weaving like this not only has moisture absorption, ventilative, soft handle, plump, rich in elasticity, fluffiness and elegant sense fine performance of imitative cotton linter itself, still has conductive fiber's good antistatic performance, makes the utility model discloses good moisture absorption, ventilative, soft handle, plump, rich in elasticity, fluffiness and elegant sense performance have good antistatic performance concurrently simultaneously.
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. The cotton-like velvet fabric is characterized in that: the antistatic reinforced layer comprises an antistatic reinforced layer (2), wherein the antistatic reinforced layer (2) is a core layer, and the upper surface and the lower surface of the antistatic reinforced layer (2) are adhered with a cotton-like composite layer (1); the antistatic reinforcing layer (2) comprises a plurality of layers of antistatic cotton fiber mixed weaving layers (21), and the antistatic cotton fiber mixed weaving layers (21) are formed by weaving second warp fibers (211) and second weft fibers (212); the second warp fibers (211) comprise warp cotton fiber units (2111) and warp conductive fibers (2112) located between the warp cotton fiber units (2111); the second weft-wise fibers (212) comprise weft-wise cotton fiber units (2121) and weft-wise conductive fibers (2122) positioned between the weft-wise cotton fiber units (2121); the cotton-like composite layer (1) comprises a plurality of conductive fiber mixed woven layers (11), wherein the conductive fiber mixed woven layers (11) are formed by weaving first warp fibers (111) and first weft fibers (112); the first warp fiber (111) comprises 50D/144F superfine denier terylene stretch yarn units (1111) and a first warp conductive fiber (1112) positioned between the 50D/144F superfine denier terylene stretch yarn units (1111); the first weft-wise fibers (112) comprise nylon filament units (1121) of 50D/24F and first weft-wise conductive fibers (1122) positioned between the nylon filament units (1121) of 50D/24F.
2. The cotton-like velvet fabric according to claim 1, which is characterized in that: the antistatic reinforcing layer (2) also comprises a static removing fiber layer (22) bonded between the antistatic cotton fiber mixed woven layers (21).
3. The cotton-like velvet fabric according to claim 2, which is characterized in that: and an antibacterial layer (23) is bonded between the static electricity removing fiber layers (22).
4. The cotton-like velvet fabric according to claim 1, which is characterized in that: the cotton velvet imitating composite layer (1) further comprises an anti-aging layer (12) bonded between the conductive fiber mixed weaving layers (11).
5. The cotton-like velvet fabric according to claim 4, wherein: the cotton-like composite layer (1) also comprises a flame-retardant layer (13) bonded between the conductive fiber mixed woven layers (11).
6. The cotton-like velvet fabric according to claim 1, which is characterized in that: the number of cotton fibers in the warp cotton fiber units (2111) is between four and eight; the number of the warp direction conductive fibers (2112) positioned between the warp direction cotton fiber units (2111) is one; the number of the cotton fibers in the weft cotton fiber unit (2121) is between one and four; the number of the weft-wise conductive fibers (2122) positioned between the weft-wise cotton fiber units (2121) is one.
7. The cotton-like velvet fabric according to claim 1, which is characterized in that: the number of the 50D/144F superfine denier polyester elastic yarns in the 50D/144F superfine denier polyester elastic yarn unit (1111) is between eight and twelve; the number of the first conductive fibers (1112) positioned between 50D/144F in the superfine denier polyester stretch yarn unit (1111) is one; the number of the 50D/24F nylon filaments in the 50D/24F nylon filament unit (1121) is between one and four; the number of the first weft-wise conductive fibers (1122) positioned between the nylon filament units (1121) of 50D/24F is one.
8. The cotton-like velvet fabric according to claim 1, which is characterized in that: the imitation cotton velvet composite layer (1) is bonded with a leather wear-resistant layer (3).
CN202020099089.2U 2020-01-16 2020-01-16 Cotton-like velvet fabric Expired - Fee Related CN211641197U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020099089.2U CN211641197U (en) 2020-01-16 2020-01-16 Cotton-like velvet fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020099089.2U CN211641197U (en) 2020-01-16 2020-01-16 Cotton-like velvet fabric

Publications (1)

Publication Number Publication Date
CN211641197U true CN211641197U (en) 2020-10-09

Family

ID=72706336

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020099089.2U Expired - Fee Related CN211641197U (en) 2020-01-16 2020-01-16 Cotton-like velvet fabric

Country Status (1)

Country Link
CN (1) CN211641197U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20201009

Termination date: 20220116

CF01 Termination of patent right due to non-payment of annual fee