CN221028905U - Composite stiff and smooth fabric - Google Patents

Composite stiff and smooth fabric Download PDF

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Publication number
CN221028905U
CN221028905U CN202323066301.8U CN202323066301U CN221028905U CN 221028905 U CN221028905 U CN 221028905U CN 202323066301 U CN202323066301 U CN 202323066301U CN 221028905 U CN221028905 U CN 221028905U
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China
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warp
weft
yarns
reinforcing core
edge
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CN202323066301.8U
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Chinese (zh)
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张嘉斌
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Zhejiang Jiayi New Material Co ltd
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Zhejiang Jiayi New Material Co ltd
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Abstract

The utility model discloses a composite stiff and smooth fabric, which has the technical scheme that a reinforcing core I is added in the traditional warp, and is made of polyester, nylon or glass fiber materials, wherein the fiber materials have strong flexibility, the fabric can be effectively prevented from wrinkling or curling, warp-direction weaving yarns are made of the traditional fiber materials, the reinforcing core I and the warp-direction weaving yarns are twisted together in a twisting mode, and the reinforcing core I and the warp-direction weaving yarns can be firmly connected together, so that the warp-direction stiffness of the composite fabric can be enhanced by utilizing the reinforcing core I.

Description

Composite stiff and smooth fabric
Technical Field
The utility model relates to the field of composite fabrics, in particular to a composite stiff and smooth fabric.
Background
The composite fabric is a fabric formed by combining two or more different types of fibers or materials, and the combination can be realized by different processes and technologies;
Application number: CN202021908697.X discloses a buffering mildew-proof composite fabric, which is provided with a buffer layer, wherein the buffer layer has good buffering rebound resilience, so that the step of adhering sponge to a frame is omitted, and the manufacturing process is more efficient; the first waterproof layer and the second waterproof layer are respectively arranged on two sides of the buffer layer, and the first waterproof layer and the second waterproof layer can form a barrier to external water and moisture on two sides of the buffer layer so as to prevent the buffer layer from absorbing water and being affected with damp;
however, the composite fabric in the above-mentioned comparative patent may be wrinkled due to external force after being put into use, so that the patterns of articles such as clothes made of the composite fabric are not stiff and smooth, and the edges and corners of the fabric may be curled after being washed, thus the beauty of the fabric is easily affected.
Disclosure of utility model
In order to overcome the defects in the prior art, the utility model aims to provide a composite stiff and smooth fabric, wherein a reinforcing core I is added in the traditional warp, the reinforcing core I is made of polyester, nylon or glass fiber materials, the fiber materials have strong flexibility, the fabric can be effectively prevented from wrinkling or curling, warp-direction weaving yarns are made of the traditional fiber materials, the reinforcing core I and the warp-direction weaving yarns are twisted together in a twisting mode, and the reinforcing core I and a plurality of warp-direction weaving yarns can be firmly connected together, so that the warp stiffness of the composite fabric can be enhanced by utilizing the reinforcing core I.
The technical aim of the utility model is realized by the following technical scheme:
the composite stiff and smooth fabric comprises warps and wefts, edge stiff and smooth components are connected to the outside of the warps and the wefts, and protective components are arranged at the upper end and the lower end of the warps and the wefts.
The warp comprises a first reinforcing core, a plurality of warp woven yarns are distributed outside the first reinforcing core, the warp woven yarns are distributed at equal intervals, and the first reinforcing core and the warp woven yarns are twisted together;
The first reinforcing core is made of polyester, nylon or glass fiber materials, the fiber materials have strong flexibility, the fabric can be effectively prevented from wrinkling or curling, the warp-direction weaving yarns are made of the traditional fiber materials, the first reinforcing core and the warp-direction weaving yarns are twisted together in a twisting mode, the first reinforcing core and the plurality of warp-direction weaving yarns can be firmly connected together, and therefore the warp stiffness of the composite fabric can be enhanced by the first reinforcing core.
The edge stiffening assembly includes a reinforcing edge stitched to the exterior of the warp and weft.
By arranging the edge stiff and smooth component, the stiffness of the edge of the composite fabric can be enhanced, and the edge of the composite fabric is prevented from curling.
Further, the weft comprises a second reinforcing core, and a plurality of weft weaving lines are distributed outside the second reinforcing core.
Further, the weft-wise weaving lines are equidistantly distributed, and the second reinforcing core and the weft-wise weaving lines are twisted together.
The reinforcing core II is added into the traditional weft, the reinforcing core II is also made of polyester, nylon or glass fiber materials, the weft weaving lines are also made of traditional fiber materials, the reinforcing core II and the weft weaving lines are twisted together in a twisting mode, and the reinforcing core II and the weft weaving lines can be firmly connected together, so that the weft stiffness of the composite fabric can be enhanced by the reinforcing core II.
Further, a plurality of warps and a plurality of wefts are distributed in a staggered mode, and the warps and the wefts are woven together.
Further, the edge stiffening assembly further comprises a plurality of warp yarns, the warp yarns are fixedly connected to the inside of the reinforcing edge, and the inside of the reinforcing edge is fixedly connected with a plurality of weft yarns.
Further, the warp yarns and the weft yarns are staggered, and the warp yarns and the weft yarns are fixedly connected.
Further, the protection component comprises a first flame-retardant coating, wherein the first flame-retardant coating is coated on the upper surfaces of the warp and the weft, and the lower surfaces of the warp and the weft are coated with a second flame-retardant coating.
Further, the protection component further comprises a waterproof coating I, the waterproof coating I is coated at the upper end of the flame-retardant coating I, and the waterproof coating II is coated at the lower end of the flame-retardant coating II.
In summary, the utility model has the following beneficial effects:
1. The first reinforcing core is made of polyester, nylon or glass fiber materials, the fiber materials have strong flexibility, the fabric can be effectively prevented from wrinkling or curling, the warp-direction weaving yarns are made of the traditional fiber materials, the first reinforcing core and the warp-direction weaving yarns are twisted together in a twisting mode, the first reinforcing core and the plurality of warp-direction weaving yarns can be firmly connected together, and therefore the warp stiffness of the composite fabric can be enhanced by the first reinforcing core;
2. The edge stiffness of the composite fabric can be enhanced by arranging the edge stiffness component, so that the edge of the composite fabric is prevented from curling;
3. The reinforcing core II is added into the traditional weft, the reinforcing core II is also made of polyester, nylon or glass fiber materials, the weft weaving lines are also made of traditional fiber materials, the reinforcing core II and the weft weaving lines are twisted together in a twisting mode, and the reinforcing core II and the weft weaving lines can be firmly connected together, so that the weft stiffness of the composite fabric can be enhanced by the reinforcing core II.
Drawings
FIG. 1 is a schematic view of the overall structure in the present embodiment;
FIG. 2 is a schematic view of the warp section in the present embodiment;
FIG. 3 is a schematic view of the structure of the weft section in this embodiment;
FIG. 4 is a schematic top view of the edge stiffener assembly according to the present embodiment;
fig. 5 is a schematic view of the structure of the cross section in this embodiment.
In the figure, 1, warp; 101. a first reinforcing core; 102. warp-wise woven yarns; 2. a weft thread; 201. a second reinforcing core; 202. weft-wise weaving lines; 3. an edge stiffening assembly; 301. reinforcing edges; 302. warp yarns; 303. weft threads; 4. a protective assembly; 401. a first flame retardant coating; 402. a second flame retardant coating; 403. a waterproof coating I; 404. and a waterproof coating II.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings.
Wherein like parts are designated by like reference numerals. It should be noted that the words "front", "back", "left", "right", "upper" and "lower" used in the following description refer to directions in the drawings, and the words "bottom" and "top", "inner" and "outer" refer to directions toward or away from, respectively, the geometric center of a particular component.
Referring to fig. 1, a composite stiff and smooth fabric in a preferred embodiment of the present utility model includes warp 1 and weft 2, edge stiff and smooth components 3 are connected to the outer portions of the warp 1 and the weft 2, and protective components 4 are disposed at the upper and lower ends of the warp 1 and the weft 2.
Referring to fig. 2, the warp 1 includes a first reinforcing core 101, a plurality of warp yarns 102 are distributed outside the first reinforcing core 101, the plurality of warp yarns 102 are equidistantly arranged, and the first reinforcing core 101 and the plurality of warp yarns 102 are twisted together;
by adding the first reinforcing core 101 to the conventional warp 1, the first reinforcing core 101 is made of polyester, nylon or glass fiber materials, the fiber materials have strong flexibility, the fabric can be effectively prevented from wrinkling or curling, the warp-direction weaving yarns 102 are made of conventional fiber materials, the first reinforcing core 101 and the warp-direction weaving yarns 102 are twisted together in a twisting manner, and the first reinforcing core 101 and the plurality of warp-direction weaving yarns 102 can be firmly connected together, so that the first reinforcing core 101 can be utilized to enhance the warp stiffness of the composite fabric.
Referring to fig. 1 and 4, the edge stiffener assembly 3 includes a reinforcing edge 301, the reinforcing edge 301 being stitched to the outside of the warp 1 and weft 2.
By arranging the edge straightening component 3, the straightening property of the edge of the composite fabric can be enhanced, and the edge of the composite fabric is prevented from curling.
Referring to fig. 3, the weft 2 includes a second reinforcing core 201, and a plurality of weft yarns 202 are distributed outside the second reinforcing core 201.
Referring to fig. 3, the plurality of weft threads 202 are equidistantly arranged, and the second reinforcing core 201 is twisted with the plurality of weft threads 202.
By adding the second reinforcing core 201 to the conventional weft 2, the second reinforcing core 201 is also made of polyester, nylon or glass fiber materials, the weft woven threads 202 are also made of conventional fiber materials, the second reinforcing core 201 and the weft woven threads 202 are twisted together in a twisting manner, and the second reinforcing core 201 and the weft woven threads 202 can be firmly connected together, so that the weft stiffness of the composite fabric can be enhanced by using the second reinforcing core 201.
Referring to fig. 1, a plurality of warps 1 are staggered with a plurality of wefts 2, and the plurality of warps 1 and the plurality of wefts 2 are woven together.
Referring to FIG. 4, the edge stiffener assembly 3 further includes a plurality of warp yarns 302, the plurality of warp yarns 302 being fixedly connected to the interior of the reinforcing edge 301, the interior of the reinforcing edge 301 being fixedly connected to a plurality of weft yarns 303.
Referring to FIG. 4, a plurality of warp yarns 302 are staggered from a plurality of weft yarns 303, and the plurality of warp yarns 302 are fixedly connected to the plurality of weft yarns 303.
Through setting up a plurality of warp yarns 302 and a plurality of weft yarns 303, a plurality of warp yarns 302 and a plurality of weft yarns 303 also adopt polyester, nylon or glass fiber material to make, strengthen limit 301 cladding is sewed up in the outside of warp 1 and weft 2, strengthen limit 301 and be traditional surface fabric, increased the bearing capacity to the edge of the surface fabric that warp 1, weft 2 were woven and are woven with a plurality of weft yarns 303 vertically and horizontally staggered together, can further improve warp 1, the deformation preventing ability of the edge of the surface fabric that weft 2 was woven and are woven, prevent that warp 1, weft 2 from weaving the edge of the surface fabric and taking place to warp.
Referring to fig. 5, the protective assembly 4 includes a first flame retardant coating 401, the first flame retardant coating 401 is coated on the upper surfaces of the warp 1 and weft 2, and the lower surfaces of the warp 1 and weft 2 are coated with a second flame retardant coating 402.
The first flame-retardant coating 401 and the second flame-retardant coating 402 are coated on the upper surface and the lower surface of the warp 1 and the weft 2, so that the flame retardant performance of the composite fabric can be effectively improved.
Referring to fig. 5, the protection component 4 further includes a first waterproof coating 403, the first waterproof coating 403 is coated on the upper end of the first flame retardant coating 401, and a second waterproof coating 404 is coated on the lower end of the second flame retardant coating 402.
By coating the waterproof coating layer I403 and the waterproof coating layer II 404, the waterproof performance of the composite fabric can be improved.
The specific implementation process comprises the following steps: the reinforcing core I101 is added into the traditional warp 1, the reinforcing core I101 is made of polyester, nylon or glass fiber materials, the fiber materials have strong flexibility, the fabric can be effectively prevented from being wrinkled or curled, the warp-wise woven yarns 102 are made of the traditional fiber materials, and the reinforcing core I101 and the warp-wise woven yarns 102 are twisted together in a twisting mode;
Adding a second reinforcing core 201 into the traditional weft 2, wherein the second reinforcing core 201 is also made of polyester, nylon or glass fiber materials, the weft weaving line 202 is also made of traditional fiber materials, and the second reinforcing core 201 and the weft weaving line 202 are stranded together in a stranding mode;
The warp yarns 302 and the weft yarns 303 are also made of polyester, nylon or glass fiber materials, the reinforcing edge 301 is wrapped and sewed outside the warp 1 and the weft 2, the reinforcing edge 301 is made of traditional fabric, the supporting capacity of the edges of the fabric woven by the warp 1 and the weft 2 is increased, and the warp yarns 302 and the weft yarns 303 are crisscrossed and woven together;
In addition, the first flame-retardant coating 401 and the second flame-retardant coating 402 are coated on the upper surface and the lower surface of the warp 1 and the weft 2, so that the flame retardant property of the composite fabric can be effectively improved, the first waterproof coating 403 and the second waterproof coating 404 are coated, and the waterproof property of the composite fabric is improved.
The foregoing has shown and described the basic principles and main features of the present utility model and the advantages of the present utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (8)

1. The composite stiff and smooth fabric is characterized in that: the warp (1) and the weft (2) are connected with edge stiff and smooth components (3) at the outer parts of the warp (1) and the weft (2), and protective components (4) are arranged at the upper end and the lower end of the warp (1) and the weft (2);
The warp (1) comprises a first reinforcing core (101), a plurality of warp-wise weaving yarns (102) are distributed outside the first reinforcing core (101), the warp-wise weaving yarns (102) are distributed at equal intervals, and the first reinforcing core (101) and the warp-wise weaving yarns (102) are twisted together;
The edge stiffening assembly (3) comprises a reinforcing edge (301), wherein the reinforcing edge (301) is sewn on the outer part of the warp (1) and the weft (2).
2. The composite stiff and smooth fabric of claim 1, wherein: the weft (2) comprises a second reinforcing core (201), and a plurality of weft weaving threads (202) are distributed outside the second reinforcing core (201).
3. The composite stiff and smooth fabric of claim 2, wherein: the plurality of weft-wise weaving lines (202) are equidistantly arranged, and the second reinforcing core (201) and the plurality of weft-wise weaving lines (202) are stranded together.
4. The composite stiff and smooth fabric of claim 1, wherein: the warp yarns (1) and the weft yarns (2) are distributed in a staggered mode, and the warp yarns (1) and the weft yarns (2) are woven together.
5. The composite stiff and smooth fabric of claim 1, wherein: the edge stiff and smooth assembly (3) further comprises a plurality of warp yarns (302), the warp yarns (302) are fixedly connected to the inside of the reinforced edge (301), and a plurality of weft yarns (303) are fixedly connected to the inside of the reinforced edge (301).
6. The composite stiff and smooth fabric of claim 5, wherein: the warp yarns (302) and the weft yarns (303) are distributed in a staggered mode, and the warp yarns (302) are fixedly connected with the weft yarns (303).
7. The composite stiff and smooth fabric of claim 1, wherein: the protection component (4) comprises a first flame-retardant coating (401), wherein the first flame-retardant coating (401) is coated on the upper surfaces of the warp (1) and the weft (2), and the lower surfaces of the warp (1) and the weft (2) are coated with a second flame-retardant coating (402).
8. The composite stiff and smooth fabric of claim 7, wherein: the protection component (4) further comprises a waterproof coating I (403), the waterproof coating I (403) is coated on the upper end of the flame-retardant coating I (401), and the lower end of the flame-retardant coating II (402) is coated with a waterproof coating II (404).
CN202323066301.8U 2023-11-14 2023-11-14 Composite stiff and smooth fabric Active CN221028905U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323066301.8U CN221028905U (en) 2023-11-14 2023-11-14 Composite stiff and smooth fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323066301.8U CN221028905U (en) 2023-11-14 2023-11-14 Composite stiff and smooth fabric

Publications (1)

Publication Number Publication Date
CN221028905U true CN221028905U (en) 2024-05-28

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323066301.8U Active CN221028905U (en) 2023-11-14 2023-11-14 Composite stiff and smooth fabric

Country Status (1)

Country Link
CN (1) CN221028905U (en)

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