CN214491881U - Environment-friendly regenerated anion far infrared functional flame-retardant polyester fabric - Google Patents

Environment-friendly regenerated anion far infrared functional flame-retardant polyester fabric Download PDF

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Publication number
CN214491881U
CN214491881U CN202022493431.XU CN202022493431U CN214491881U CN 214491881 U CN214491881 U CN 214491881U CN 202022493431 U CN202022493431 U CN 202022493431U CN 214491881 U CN214491881 U CN 214491881U
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layer
anion
flame
far infrared
retardant
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CN202022493431.XU
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孙启珍
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Suzhou Zhongsheng Textile Co ltd
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Suzhou Zhongsheng Textile Co ltd
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Abstract

The utility model discloses an environment-friendly regenerated anion far infrared flame-retardant polyester fabric, which comprises an inner lining, wherein a comfortable layer is arranged above the inner lining, an anion layer is arranged above the comfortable layer, the lower surface of the comfortable layer is fixedly bonded and connected with the upper surface of the inner lining, the upper surface of the comfortable layer is fixedly bonded and connected with the lower surface of the anion layer, a mesh cloth layer is arranged above the anion layer, a flame-retardant layer is arranged above the mesh cloth layer, the lower surface of the mesh cloth layer is fixedly bonded and connected with the upper surface of the anion layer, the upper surface of the mesh cloth layer is fixedly bonded and connected with the lower surface of the flame-retardant layer, a far infrared layer is arranged above the flame-retardant layer, a protective layer is arranged above the far infrared layer, the utility model has good environmental protection and flame-retardant properties, is ideal, and has the functions of releasing anions and far infrared rays, can provide certain health care function for human body, thereby meeting the current requirements.

Description

Environment-friendly regenerated anion far infrared functional flame-retardant polyester fabric
Technical Field
The utility model relates to a cloth specifically is fire-retardant polyester fabric of environment-friendly regeneration anion far infrared function, belongs to cloth technical field.
Background
Dacron is a chemical fiber garment material used in daily life. The terylene has the greatest advantages of good crease resistance and shape retention, is suitable for being used as outdoor articles such as coat clothing, various bags and tents and the like, has wide application range, is widely used for manufacturing clothing and industrial products, and plays a plurality of roles in the field of protective clothing besides playing a role of no substitution in industrial textiles, building interior decoration, vehicle interior decoration and the like.
With the gradual development of light weight, thinness, health and multiple functions of fabrics, although terylene fabrics have many advantages, terylene fabrics also have some disadvantages, such as no environmental protection, poor flame retardant property, no function of releasing negative ions and far infrared rays, and no ability of providing certain health care function to human body, thereby being difficult to meet the requirements of the fabrics at present.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an environmental protection type regeneration anion far infrared function fire-retardant polyester fabric for solving above-mentioned problem, have good feature of environmental protection, fire resistance comparatively ideal to possess the function of release anion and far infrared, can provide certain health care effect to the human body, thereby can satisfy present demand to the surface fabric.
The utility model realizes the purpose by the following technical proposal, the environment-friendly regenerated anion far infrared flame-retardant terylene cloth comprises an inner lining, a comfortable layer is arranged above the inner lining, an anion layer is arranged above the comfortable layer, the lower surface of the comfortable layer is connected with the upper surface of the inner lining in a fixed bonding way, the upper surface of the comfortable layer is connected with the lower surface of the anion layer in a fixed bonding way, a mesh cloth layer is arranged above the anion layer, a flame-retardant layer is arranged above the mesh cloth layer, the lower surface of the mesh cloth layer is connected with the upper surface of the anion layer in a fixed bonding way, the upper surface of the mesh cloth layer is connected with the lower surface of the flame-retardant layer in a fixed bonding way, a far infrared layer is arranged above the flame-retardant layer, a protective layer is arranged above the far infrared layer, the lower surface of the far infrared layer is connected with the upper surface of the flame-retardant layer in a fixed bonding way, the upper surface of far-infrared layer with the fixed adhesive connection of lower surface of inoxidizing coating, the top of inoxidizing coating is equipped with the dacron wearing layer, the lower surface of dacron wearing layer with the fixed adhesive connection of upper surface of inoxidizing coating.
Preferably, the comfort layer is RPET polar fleece, the far infrared layer is formed by interweaving alginate fibers, and the protective layer is formed by interweaving nano fibers.
Preferably, the anion layer comprises an anion sleeve formed by interlacing and weaving anion fibers, and the inside of the anion sleeve is longitudinally arranged at equal intervals and provided with spacing strips.
Preferably, the spacing bars are also formed by interlacing and weaving negative ion fibers, and negative ion spheres are arranged between the adjacent spacing bars.
Preferably, the inner cavity of the anion sphere is filled with anion powder, and the outer surface of the anion sphere is provided with micropores.
Preferably, the flame-retardant layer comprises a flame-retardant base layer formed by interweaving flame-retardant fibers, and the upper end and the lower end of the flame-retardant base layer are both provided with high chlorinated polyethylene coating layers.
The utility model has the advantages that: the RPET polar fleece is a novel environment-friendly recycled fabric, the yarn of the RPET polar fleece is extracted from waste mineral water bottles and coke bottles and is commonly called as coke bottle environment-friendly cloth, so the RPET polar fleece has good environmental protection and reproducibility, the polar fleece is fluffy and dense, the hair is not easy to fall off and pilling, the back surface of the polar fleece is loose and thin and uniform, the fluff is short, the texture is clear, the fluffy elasticity is good, the anion layer can provide the function of releasing anions for the cloth, the anion fiber is a fiber with the anion release function, the anions released by the fiber have obvious effects on improving the air quality and the environment, particularly the health care effect of the anions for human bodies, the effect of releasing the anions for the cloth can be improved by arranging the anion powder in the anion sphere, and the flame retardant layer can provide good flame retardance for the cloth, the flame-retardant fiber is a fiber which is only smoldering in flame, does not generate flame per se and is away from the flame, smoldering is self-extinguished, compared with common fiber, the flammability is obviously reduced, the combustion rate is obviously slowed down in the open-cut way in the combustion process, the fiber can be quickly self-extinguished after leaving a fire source, the high chlorinated polyethylene has good weather resistance, ozone resistance, heat aging resistance, flame resistance, chemical resistance and oil resistance, the flame resistance and the wear resistance of the cloth can be improved, the far infrared layer is arranged to provide the cloth with the function of releasing far infrared, the alginate fiber can radiate far infrared to enable human blood to generate resonance, the subcutaneous temperature is increased to accelerate blood circulation, metabolism is promoted, harmful substances in the body are eliminated, new enzymes can be quickly generated, the physiological function of the human body is more flexible, and the protective layer is arranged to provide good protection for the cloth, the nano fiber can be waterproof, oil-proof and antifouling, can not only allow air to permeate, has breathing property, but also can block wind and filter fine particles.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the structure of the negative ion layer of the present invention;
FIG. 3 is a schematic structural view of the flame retardant layer of the present invention;
in the figure: 1. inner lining, 2, comfortable layer, 3, anion layer, 4, mesh cloth layer, 5, fire-retardant layer, 6, far infrared layer, 7, inoxidizing coating, 8, dacron wearing layer, 9, anion cover, 10, spacer bar, 11, anion spheroid, 12, anion powder, 13, fire-retardant basic unit, 14, high chlorinated polyethylene dope layer, 15, micropore.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1 to 3, the environmentally friendly regenerated anion far infrared functional flame retardant polyester fabric comprises an inner layer 1, and is characterized in that: a comfortable layer 2 is arranged above the inner layer 1, an anion layer 3 is arranged above the comfortable layer 2, the lower surface of the comfortable layer 2 is fixedly bonded and connected with the upper surface of the inner layer 1, the upper surface of the comfortable layer 2 is fixedly bonded and connected with the lower surface of the anion layer 3, a mesh cloth layer 4 is arranged above the anion layer 3, a flame-retardant layer 5 is arranged above the mesh cloth layer 4, the lower surface of the mesh cloth layer 4 is fixedly bonded and connected with the upper surface of the anion layer 3, the upper surface of the mesh cloth layer 4 is fixedly bonded and connected with the lower surface of the flame-retardant layer 5, a far infrared layer 6 is arranged above the flame-retardant layer 5, a protective layer 7 is arranged above the far infrared layer 6, the lower surface of the far infrared layer 6 is fixedly bonded and connected with the upper surface of the flame-retardant layer 5, and the upper surface of the far infrared layer 6 is fixedly bonded and connected with the lower surface of the protective layer 7, and a terylene wear-resistant layer 8 is arranged above the protective layer 7, and the lower surface of the terylene wear-resistant layer 8 is fixedly bonded and connected with the upper surface of the protective layer 7.
As an optimized technical scheme of the utility model, comfortable layer 2 is RPET shakes a fine hair, far-infrared layer 6 is crisscross the weaving for alginate fibre and forms, inoxidizing coating 7 is crisscross the weaving for nanofiber and forms.
As an optimal technical scheme of the utility model, anion layer 3 includes the anion cover 9 that forms by the crisscross weaving of anion fibre, the vertical equidistance interval arrangement in inside of anion cover 9 is equipped with space bar 10.
As an optimized technical solution of the present invention, the spacing bar 10 is also formed by weaving anion fibers in a staggered manner and is adjacent to the anion fibers, and anion spheres 11 are disposed between the spacing bars 10.
As an optimized technical solution of the present invention, the inner cavity of the anion sphere 11 is filled with anion powder 12, and the outer surface of the anion sphere 11 is provided with micropores 15.
As an optimal technical scheme of the utility model, fire-retardant layer 5 includes the fire-retardant basic unit 13 that forms by crisscross weaving of difficult fire fibre, the upper and lower both ends of fire-retardant basic unit 13 all are equipped with highly chlorinated polyethylene dope layer 14.
The utility model provides a comfortable layer 2 for the cloth provides good comfort, RPET shakes a fine hair and is a novel environmental protection regeneration surface fabric, its yarn is extracted from discarded mineral water bottle and cola bottle and made, also commonly known as cola bottle environmental protection cloth, therefore has good environmental protection and reproducibility, shakes fluffy intensive and difficult hair fall, the pilling, the reverse side is napped sparsely and evenly, the fine hair is short, the tissue texture is clear, fluffy elasticity is particularly good, can provide the function of releasing anion through setting up anion layer 3, anion fiber is a fiber with anion release function, the anion released by the fiber has obvious effect to improve the air quality, the environment, especially the health care effect of anion to the human body, can improve the effect that the cloth releases the anion through setting up anion powder 12 in anion sphere 11, the flame-retardant layer 5 can provide good flame retardance for the cloth, the flame-retardant fiber is a fiber which is only smoldering in flame, does not generate flame per se, leaves the flame, and extinguishes spontaneously when the flame is obviously reduced compared with common fiber, the combustion rate is obviously slowed down when the flame is burned, and the fiber can be quickly self-extinguished after leaving a fire source, the high chlorinated polyethylene has good weather resistance, ozone resistance, heat aging resistance, flame resistance, chemical resistance and oil resistance, the flame retardance and the wear resistance of the cloth can be improved, the far infrared layer 6 can be arranged to provide the far infrared releasing function for the cloth, the alginate fiber can radiate far infrared, the human blood can generate resonance, the subcutaneous temperature can be promoted to increase to accelerate blood circulation, the metabolism is promoted, harmful substances in the body are eliminated, and new enzymes can be quickly generated, the physiological function of the human body is more active, can provide good protectiveness for the cloth through setting up inoxidizing coating 7, the nanofiber both can be waterproof, can grease proofing, antifouling again, can not only make the air permeate through, possesses the respirability, can also keep out the wind and filter fine particle.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (6)

1. The environment-friendly regenerated anion far infrared functional flame-retardant polyester fabric comprises an inner lining (1) and is characterized in that: a comfortable layer (2) is arranged above the inner lining (1), an anion layer (3) is arranged above the comfortable layer (2), the lower surface of the comfortable layer (2) is fixedly bonded and connected with the upper surface of the inner lining (1), the upper surface of the comfortable layer (2) is fixedly bonded and connected with the lower surface of the anion layer (3), a mesh fabric layer (4) is arranged above the anion layer (3), a flame-retardant layer (5) is arranged above the mesh fabric layer (4), the lower surface of the mesh fabric layer (4) is fixedly bonded and connected with the upper surface of the anion layer (3), the upper surface of the mesh fabric layer (4) is fixedly bonded and connected with the lower surface of the flame-retardant layer (5), a far infrared layer (6) is arranged above the flame-retardant layer (5), a protective layer (7) is arranged above the far infrared layer (6), the lower surface of far infrared layer (6) with the last fixed surface bonding of fire-retardant layer (5) is connected, the upper surface of far infrared layer (6) with the lower fixed surface bonding of inoxidizing coating (7) is connected, the top of inoxidizing coating (7) is equipped with dacron wearing layer (8), the lower surface of dacron wearing layer (8) with the last fixed surface bonding of inoxidizing coating (7) is connected.
2. The environment-friendly type regenerated anion far infrared functional flame-retardant polyester fabric according to claim 1, wherein: the comfortable layer (2) is RPET polar fleece, the far infrared layer (6) is formed by weaving alginate fibers in a staggered mode, and the protective layer (7) is formed by weaving nano fibers in a staggered mode.
3. The environment-friendly type regenerated anion far infrared functional flame-retardant polyester fabric according to claim 1, wherein: anion layer (3) are including anion cover (9) that form by the crisscross weaving of anion fibre, the vertical equidistance interval arrangement in inside of anion cover (9) is equipped with spacer (10).
4. The environment-friendly type regenerated anion far infrared functional flame-retardant polyester fabric according to claim 3, wherein: the spacing bars (10) are also formed by interlacing and weaving anion fibers, and anion spheres (11) are arranged between the adjacent spacing bars (10).
5. The environment-friendly type regenerated anion far infrared functional flame-retardant polyester fabric according to claim 4, wherein: the inner cavity of the anion sphere (11) is filled with anion powder (12), and the outer surface of the anion sphere (11) is provided with micropores (15).
6. The environment-friendly type regenerated anion far infrared functional flame-retardant polyester fabric according to claim 1, wherein: the flame-retardant layer (5) comprises a flame-retardant base layer (13) formed by interweaving flame-retardant fibers, and the upper end and the lower end of the flame-retardant base layer (13) are provided with high chlorinated polyethylene coating layers (14).
CN202022493431.XU 2020-11-02 2020-11-02 Environment-friendly regenerated anion far infrared functional flame-retardant polyester fabric Active CN214491881U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022493431.XU CN214491881U (en) 2020-11-02 2020-11-02 Environment-friendly regenerated anion far infrared functional flame-retardant polyester fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022493431.XU CN214491881U (en) 2020-11-02 2020-11-02 Environment-friendly regenerated anion far infrared functional flame-retardant polyester fabric

Publications (1)

Publication Number Publication Date
CN214491881U true CN214491881U (en) 2021-10-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022493431.XU Active CN214491881U (en) 2020-11-02 2020-11-02 Environment-friendly regenerated anion far infrared functional flame-retardant polyester fabric

Country Status (1)

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CN (1) CN214491881U (en)

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