CN216139550U - Light high-strength regenerated polyester fabric - Google Patents

Light high-strength regenerated polyester fabric Download PDF

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Publication number
CN216139550U
CN216139550U CN202121656554.9U CN202121656554U CN216139550U CN 216139550 U CN216139550 U CN 216139550U CN 202121656554 U CN202121656554 U CN 202121656554U CN 216139550 U CN216139550 U CN 216139550U
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China
Prior art keywords
layer
reinforcing
regenerated terylene
strength
antibacterial
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CN202121656554.9U
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Chinese (zh)
Inventor
曹伟力
曹中青
徐文胜
徐竟安
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Taizhou Zhenye Textile Co ltd
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Taizhou Zhenye Textile Co ltd
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Abstract

The utility model discloses a regenerated terylene cloth, aiming at providing a light high-strength regenerated terylene cloth, which comprises a surface layer, an intermediate layer and a base layer, wherein the intermediate layer comprises a static removing layer, an elastic layer and an antibacterial layer, the antibacterial layer is embedded inside the elastic layer, the static removing layer is also provided with a reinforcing layer, the surface layer, the intermediate layer and the base layer are connected by pressing, the regenerated terylene cloth has the effects of static removing, high elasticity and the like by only adopting a three-layer structure of the surface layer, the intermediate layer and the base layer, and the surface layer and the base layer are protected by two layers, thereby improving the wear-resisting effect of the regenerated terylene cloth to a certain degree, prolonging the service life, and improving the structural strength by the two-layer structure, so that the regenerated terylene cloth has the effects of light high strength and has simple structure, the production process is simple, the effect of reducing the production cost is achieved, and the method is suitable for the technical field of polyester fabrics.

Description

Light high-strength regenerated polyester fabric
Technical Field
The utility model belongs to the technical field of terylene cloth, and particularly relates to light-weight high-strength regenerated terylene cloth.
Background
The regenerated polyester staple fiber is formed by taking polyester cloth, waste polyester bottle flakes, spinning waste silk, bubble materials and the like as raw materials, and performing crushing, cleaning, drying, melt extrusion, spinning, winding, bundling, drafting, curling, relaxation heat setting and cutting.
Regenerated polyester staple fiber is the make full use of renewable resources, and its is with low costs, the performance is good, consequently has vast market, for chinese patent application No. (CN2019220199923) discloses a regenerated polyester environmental protection yarn elasticity surface fabric, including the surface fabric body, the surface fabric body includes base cloth layer, ventilative layer, antibacterial layer, wearing layer, elastic layer, regenerated polyester environmental protection yarn layer and comfortable layer, makes it have the advantage that elasticity is good, has solved current surface fabric, and the function is more single, the performance is relatively poor, and resilience ability is not enough, uses for a long time and leads to losing original elasticity easily, and the surface fabric of this application although possesses more functions, but its structure is complicated, and functional layer is more, and production process is comparatively complicated to cause manufacturing cost's increase.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model aims to provide a light-weight high-strength regenerated terylene fabric with a simple structure.
In order to achieve the purpose, the utility model provides the following technical scheme: a lightweight high-strength regenerated terylene cloth, comprising:
a surface layer;
an intermediate layer comprising a static dissipative layer and an elastomeric layer;
a base layer.
The utility model further provides that the intermediate layer further comprises:
the antibacterial layer, the antibacterial in situ inlays the inside of establishing at the elastic layer, the antibacterial layer is the blue card fibre.
The utility model is further configured to:
the elastic layer is of a three-dimensional net structure and is made of PTT fiber materials.
The utility model is further configured to:
the static removing layer is a grid-shaped structure formed by interweaving warps and wefts and is made of conductive fiber materials.
The utility model further provides that the intermediate layer further comprises:
the reinforcing layer comprises a plurality of reinforcing strips, and the plurality of reinforcing strips are interwoven through warps and wefts to form a grid-shaped structure.
The utility model is further configured to:
the reinforcing layer and the static electricity removing layer are arranged correspondingly, and the reinforcing layer is made of graphene fibers.
The utility model is further configured to:
the surface layer, the middle layer and the base layer are connected in a pressing mode.
The utility model has the beneficial effects that: the regenerated terylene fabric has the effects of static electricity removal, high elasticity and the like only by adopting the three-layer structure of the surface layer, the middle layer and the base layer, and meanwhile, the two-layer protection of the surface layer and the base layer improves the wear-resisting effect of the regenerated terylene fabric to a certain extent, prolongs the service life, and improves the structural strength by adopting the two-layer structure, so that the regenerated terylene fabric has the effects of light weight and high strength, and has the advantages of simple structure, simple production process and production cost reduction.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is an enlarged view of the utility model at A in FIG. 1;
in the drawings: 1. a surface layer; 2. an intermediate layer; 20. a static eliminating layer; 21. an elastic layer; 22. a bacteriostatic layer; 23. a reinforcing layer; 230. a reinforcing strip; 3. a base layer.
Detailed Description
The utility model is further described in the following with reference to fig. 1 to 2 in a specific embodiment:
example 1:
the embodiment provides a lightweight high-strength regenerated polyester fabric, which comprises:
a surface layer 1;
an intermediate layer 2, the intermediate layer 2 comprising a destaticizing layer 20 and an elastic layer 21;
a base layer 3;
the surface layer 1, the middle layer 2 and the base layer 3 are connected in a pressing mode.
In this embodiment, it can be seen that the regenerated polyester fabric has the effects of static electricity removal, high elasticity and the like only by adopting the three-layer structure of the surface layer 1, the intermediate layer 2 and the base layer 3, and meanwhile, the surface layer 1 and the base layer 3 protect the two layers, so that the wear-resisting effect of the regenerated polyester fabric is improved to a certain extent, the service life is prolonged, and the structural strength is improved by the double-layer structure, so that the regenerated polyester fabric has the effects of light weight and high strength, and is simple in structure, simple in production process and capable of reducing the production cost.
Example 2:
in this embodiment, in addition to the structural features of embodiment 1, the intermediate layer 2 further includes:
the antibacterial layer 22 is embedded in the elastic layer 21, and the antibacterial layer 22 is made of Bika fibers;
this embodiment can be seen from, the antibiotic "beautiful bamboo" active factor is contained in the blue card fibre, the antibiotic that comes with life has, antibacterial effect, can also adsorb the peculiar smell of air and human body self, and can not wash, it is lasting effective, it is antibacterial, adsorb peculiar smell and long service life's effect, set up antibacterial layer 22 in elastic layer 21 simultaneously, the structure can be simplified on the one hand, reduce the thickness of regenerated terylene cloth, make it reach the requirement of lightweight, on the other hand, the blue card fibre has natural resilience, thereby can improve elastic layer 21's elasticity effect, make the condition that the wrinkle or deformation are difficult to appear in the regenerated terylene cloth of this application, improve practical function.
Example 3:
in this embodiment, in addition to the structural features of embodiment 1, further:
the elastic layer 21 is of a three-dimensional net structure and is made of PTT fiber;
in this embodiment, it can be seen that, by setting the elastic layer 21 to have the PTT fiber material to form a solid net structure, on one hand, the ventilation effect of the elastic layer 21 can be improved, so that the regenerated terylene fabric of the present application has a certain ventilation property, and on the other hand, the PTT fiber material has a better elasticity and an excellent elongation recovery property, so as to further improve the resilience of the regenerated terylene fabric of the present application, avoid the wrinkle or deformation, and improve the practical effect.
Example 4:
in this embodiment, in addition to the structural features of embodiment 1, further:
the static removing layer 20 is a grid-shaped structure formed by interweaving warps and wefts and is made of a conductive fiber material;
in this embodiment, it can be seen that the antistatic layer 20 can make the regenerated dacron fabric of the present application have an antistatic effect, and meanwhile, the grid structure has a good air permeability on one hand, and on the other hand, the conductive fibers can be uniformly distributed in the antistatic layer.
Example 5:
in this embodiment, in addition to the structural features of embodiment 4, the intermediate layer 2 further includes:
the reinforcing layer 23 comprises a plurality of reinforcing strips 230, and the plurality of reinforcing strips 230 are interwoven by warps and wefts to form a grid-shaped structure;
in this embodiment, it can be seen that the structural strength of the regenerated polyester fabric of the present application is improved by the reinforcing layer 23, and meanwhile, the reinforcing layer 23 can also protect the antistatic layer to a certain extent, and the grid-shaped structure can avoid affecting the air permeability of the regenerated polyester fabric of the present application.
Example 6:
in this embodiment, in addition to the structural features of embodiment 2, further:
the reinforcing layer 23 is arranged corresponding to the static removing layer 20, and the reinforcing layer 23 is made of graphene fiber;
according to the embodiment, with the corresponding setting of enhancement layer 23 and destaticizing layer 20, on the one hand can be the at utmost avoid influencing the gas permeability, on the other hand can the at utmost play the effect of protection to destaticizing layer 20, improve destaticizing layer 20's structural strength, graphite alkene fibre material makes enhancement layer 23 have better heat conductivity simultaneously, thereby be convenient for dispel the heat, improve destaticizing layer 20's the static effect promptly, and the comfort level when people use.
While the present embodiments have been described with reference to the accompanying drawings, it is to be understood that the utility model is not limited to the precise embodiments described above, which are meant to be illustrative and not restrictive, and that various changes may be made therein by those skilled in the art without departing from the spirit and scope of the utility model as defined by the appended claims.

Claims (3)

1. A lightweight high-strength regenerated polyester fabric is characterized by comprising:
a skin layer (1);
a base layer (3);
an intermediate layer (2), the intermediate layer (2) comprising:
a static eliminating layer (20);
an elastic layer (21);
the antibacterial layer (22) is embedded in the elastic layer (21), and the antibacterial layer (22) is made of Bika fibers;
the reinforcing layer (23), the reinforcing layer (23) comprises a plurality of reinforcing strips (230), and the plurality of reinforcing strips (230) are interwoven through warps and wefts to form a grid-shaped structure;
the antistatic layer (20) is of a grid structure formed by interweaving warps and wefts and is made of conductive fibers, the reinforcing layer (23) is arranged corresponding to the antistatic layer (20), and the reinforcing layer (23) is made of graphene fibers.
2. The light-weight high-strength regenerated terylene fabric according to claim 1, which is characterized in that:
the elastic layer (21) is of a three-dimensional net structure and is made of PTT fiber.
3. The light-weight high-strength regenerated terylene fabric according to any one of claims 1 to 2, which is characterized in that:
the surface layer (1), the middle layer (2) and the base layer (3) are connected in a pressing mode.
CN202121656554.9U 2021-07-20 2021-07-20 Light high-strength regenerated polyester fabric Active CN216139550U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121656554.9U CN216139550U (en) 2021-07-20 2021-07-20 Light high-strength regenerated polyester fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121656554.9U CN216139550U (en) 2021-07-20 2021-07-20 Light high-strength regenerated polyester fabric

Publications (1)

Publication Number Publication Date
CN216139550U true CN216139550U (en) 2022-03-29

Family

ID=80803520

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121656554.9U Active CN216139550U (en) 2021-07-20 2021-07-20 Light high-strength regenerated polyester fabric

Country Status (1)

Country Link
CN (1) CN216139550U (en)

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