CN215321086U - Antibacterial flame-retardant knitted fabric - Google Patents

Antibacterial flame-retardant knitted fabric Download PDF

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Publication number
CN215321086U
CN215321086U CN202120855669.4U CN202120855669U CN215321086U CN 215321086 U CN215321086 U CN 215321086U CN 202120855669 U CN202120855669 U CN 202120855669U CN 215321086 U CN215321086 U CN 215321086U
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layer
sweat
flame
retardant
antibacterial
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CN202120855669.4U
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杨家俊
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Nantong Shisen Cloth Co ltd
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Nantong Shisen Cloth Co ltd
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Abstract

The utility model discloses an antibacterial flame-retardant knitted fabric which comprises a fabric body, wherein the fabric body comprises an external dyeing layer, a flame-retardant layer, a first base material layer, a second base material layer, a sweat absorbing layer, a sweat guiding layer, an antistatic layer, an antibacterial layer and a skin-friendly fabric layer, a plurality of sweat guiding grooves are formed in the sweat guiding layer at equal intervals, sweat guiding strips are bonded in the inner cavities of the sweat guiding grooves, one ends of the sweat guiding strips are in contact with the top end of the same sweat absorbing layer, an air drying groove is formed in the inner cavity of the sweat absorbing layer, a plurality of air guiding grooves are formed in the bottom of the air drying groove and positioned in the sweat absorbing layer at equal intervals, and a plurality of air inlet grooves are formed in the first base material layer at equal intervals The air inlet groove, the air guide groove and the conductive fibers increase the antibacterial, flame-retardant and sweat-discharging effects of the fabric.

Description

Antibacterial flame-retardant knitted fabric
Technical Field
The utility model relates to the technical field of fabrics, in particular to an antibacterial flame-retardant knitted fabric.
Background
The knitted fabric is a fabric formed by bending yarns into loops by using a knitting needle and interlooping the loops. Knitted fabrics differ from woven fabrics in the form of the yarn in the fabric. The knitting is divided into weft knitting and warp knitting, the knitted fabric is widely applied to products such as clothing fabric and lining, home textiles and the like, is popular with consumers, and the knitted fabric can be made of widely used raw materials including cotton, wool, silk, hemp, chemical fiber and blended yarns or interwoven yarns thereof. The knitted fabric is soft, has good wrinkle resistance and air permeability, also has large extensibility and elasticity, and is suitable for making underwear, tights, sportswear and the like. The knitted fabric can be used for making outer clothing, mattresses and the like after changing the structure and improving the dimensional stability.
The existing knitted fabric also generates some new requirements in the using process, and one of the requirements is as follows: the existing knitted fabric can breed bacteria after being used for a long time, but the existing knitted fabric has poor antibacterial effect and unsatisfactory flame retardant effect in the using process; the second step is as follows: the existing fabric is easy to generate static electricity after being in frictional contact with skin, and the perspiration effect is not strong.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an antibacterial flame-retardant knitted fabric, which aims to solve the problems that the existing knitted fabric in the background art can breed bacteria after being used for a long time, the existing knitted fabric is poor in antibacterial effect, and the flame-retardant effect of the fabric in the using process is not ideal; the existing fabric has the problems that static electricity is easily generated after the existing fabric is in frictional contact with skin, and the perspiration effect is not strong.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides an antibiotic fire-retardant knitted fabric, includes the surface fabric body, the surface fabric body includes outside dyeing layer, fire-retardant layer, first bed material layer, second bed material layer, sweat absorbing layer, sweat guiding layer, antistatic backing, antibiotic layer and the skin-friendly bed material layer, outside dyeing layer, fire-retardant layer, first bed material layer, second bed material layer, sweat absorbing layer, sweat guiding layer, antistatic backing, antibiotic layer and skin-friendly bed material layer bond from the bottom up in proper order, a plurality of sweat guiding grooves have been seted up to the inside equidistance on sweat guiding layer, and is a plurality of sweat guiding groove's inner chamber all bonds and has sweat guiding strip, and is a plurality of sweat guiding strip's one end all contacts with the top on same sweat absorbing layer, just air drying groove is seted up to the inner chamber on sweat absorbing layer, air drying groove's bottom just is located a plurality of air guide groove have been seted up to the inside equidistance on sweat absorbing layer, a plurality of equidistance air inlet groove have been seted up to the inside of first bed material layer.
As a preferred technical scheme of the utility model, the air inlet grooves are respectively communicated with the air guide grooves.
As a preferred technical scheme of the utility model, a plurality of the air guide grooves are communicated with the air drying groove.
As a preferable technical scheme of the utility model, the air guide groove is of a V-shaped structure.
As a preferable technical solution of the present invention, a plurality of conductive fibers are inserted into the antistatic layer.
As a preferable technical scheme of the utility model, the sweat guide strip is made of water-absorbent cotton material, and the flame-retardant layer is made of polyethylene foam cotton material.
As a preferable technical scheme of the utility model, the antibacterial layer is made of nano silver fibers, and the anti-static layer is made of anti-static flame-retardant yarns.
Compared with the prior art, the utility model has the beneficial effects that:
through the matching of a fabric body, an external dyeing layer, a flame-retardant layer, a first base material layer, a second base material layer, a sweat absorbing layer, a sweat guiding layer, an antistatic layer, an antibacterial layer, a skin-friendly fabric layer, a sweat guiding groove, sweat guiding strips, an air drying groove, an air inlet groove, an air guide groove and conductive fibers, the fabric body consists of the fabric body, the external dyeing layer, the flame-retardant layer, the first base material layer, the second base material layer, the sweat absorbing layer, the sweat guiding layer, the antistatic layer, the antibacterial layer and the skin-friendly fabric layer, the flame-retardant layer is made of polyethylene foam cotton materials, so that the flame retardance of the fabric is increased, the antistatic layer and the antibacterial layer are arranged inside the fabric body, the antistatic layer is made of antistatic flame-retardant yarns, the antibacterial layer is made of nano-silver materials, so that the antibacterial property and the antistatic property of the fabric are increased, and meanwhile, the air inlet grooves and the air guide groove are respectively arranged inside the first base material layer and the second base material layer, the inside on sweat-absorbing layer is equipped with the air-drying groove, and the top on sweat-absorbing layer and the contact of leading the sweat strip are at first adsorbed the sweat to air-dry the inslot by leading the sweat strip, then through the intake air of intake stack, and the air-drying inslot is shunted with the air to the air-guide groove, then air-dries the sweat of air-drying the inslot to increase the perspire effect of surface fabric.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
FIG. 2 is an enlarged view of part A of the present invention.
Fig. 3 is a cross-sectional view of the present invention.
Fig. 4 is a cross-sectional view of an antistatic layer according to the present invention.
In the figure: 1. a fabric body; 2. an outer dyed layer; 3. a flame retardant layer; 4. a first base material layer; 5. a second binder layer; 6. a sweat absorbing layer; 7. a sweat-guiding layer; 8. an antistatic layer; 9. an antimicrobial layer; 10. a skin-friendly fabric layer; 11. a sweat guide groove; 12. a sweat guiding strip; 13. an air drying groove; 14. an air inlet groove; 15. a wind guide groove; 16. conductive fibers.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, the utility model provides an antibacterial flame-retardant knitted fabric, which comprises a fabric body 1, wherein the fabric body 1 comprises an external dyeing layer 2, a flame-retardant layer 3, a first base material layer 4, a second base material layer 5, a sweat-absorbing layer 6, a sweat-guiding layer 7, an antistatic layer 8, an antibacterial layer 9 and a skin-friendly fabric layer 10, the external dyeing layer 2, the flame-retardant layer 3, the first base material layer 4, the second base material layer 5, the sweat-absorbing layer 6, the sweat-guiding layer 7, the antistatic layer 8, the antibacterial layer 9 and the skin-friendly fabric layer 10 are sequentially bonded from bottom to top, a plurality of sweat-guiding grooves 11 are equidistantly arranged in the sweat-guiding layer 7, sweat-guiding strips 12 are bonded in inner cavities of the sweat-guiding grooves 11, one ends of the sweat-guiding strips 12 are in contact with the top end of the same sweat-absorbing layer 6, air drying grooves 13 are arranged in the inner cavities of the sweat-guiding layers 6, a plurality of air drying grooves 13 are equidistantly arranged in the bottoms of the air drying grooves 13 and positioned in the sweat-absorbing air-guiding layer 6, a plurality of air inlet grooves 14 are formed in the first base material layer 4 at the same inner distance, and the antibacterial flame-retardant and sweat-releasing effects of the fabric are improved through the fabric body 1, the external dyeing layer 2, the flame-retardant layer 3, the first base material layer 4, the second base material layer 5, the sweat absorbing layer 6, the sweat guiding layer 7, the antistatic layer 8, the antibacterial layer 9, the skin-friendly fabric layer 10, the sweat guiding grooves 11, the sweat guiding strips 12, the air drying grooves 13, the air inlet grooves 14, the air guide grooves 15 and the conductive fibers 16.
Preferably, the air inlet grooves 14 are respectively communicated with the air guide grooves 15, and the air communicated in the air inlet grooves 14 is introduced into the air drying groove 13 through the air guide grooves 15.
Preferably, the plurality of air guide grooves 15 are all communicated with the air drying groove 13, and the air communicated in the air inlet groove 14 is introduced into the air drying groove 13 through the air guide grooves 15.
Preferably, the air guiding groove 15 is a V-shaped structure, and divides the air in the air inlet groove 14.
Preferably, a plurality of conductive fibers 16 are inserted into the antistatic layer 8 to conduct static electricity.
The preferable sweat guide strip 12 is made of water-absorbent cotton material, and the flame-retardant layer 3 is a polyethylene foam cotton layer for flame-retarding the fabric.
Preferably, the antibacterial layer 9 is made of nano silver fibers, and the antistatic layer 8 is made of antistatic flame-retardant yarns, so that the fabric is antibacterial and antistatic.
When the antibacterial flame-retardant knitted fabric is used, the fabric body 1 consists of an external dyeing layer 2, a flame-retardant layer 3, a first base material layer 4, a second base material layer 5, a sweat absorbing layer 6, a sweat guiding layer 7, an antistatic layer 8, an antibacterial layer 9 and a skin-friendly fabric layer 10, the flame-retardant layer 3 is made of polyethylene foam cotton materials, so that the flame retardance of the fabric body 1 is improved, the antistatic layer 8 and the antibacterial layer 9 are arranged inside the fabric body 1, the antistatic layer 8 is made of antistatic flame-retardant yarns, the antibacterial layer 9 is made of nano-silver materials, so that the sweat and the antistatic performance of the fabric are improved, meanwhile, a plurality of air inlet grooves 14 and air guide grooves 15 are respectively arranged inside the first base material layer 4 and the second base material layer 5, an air drying groove 13 is arranged inside the sweat absorbing layer 6, the top of the sweat absorbing layer 6 is contacted with the sweat guiding strips 12, the sweat guiding strips 12 are firstly adsorbed into the air drying grooves 13, then, air is supplied through the air inlet groove 14, the air guide groove 15 divides the air into the air drying groove 13, and then sweat in the air drying groove 13 is dried, so that the sweat discharging effect of the fabric body 1 is improved.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.

Claims (7)

1. The utility model provides an antibiotic fire-retardant knitted fabric, includes surface fabric body (1), its characterized in that: the fabric body (1) comprises an external dyeing layer (2), a flame-retardant layer (3), a first base material layer (4), a second base material layer (5), a sweat absorbing layer (6), a sweat guiding layer (7), an anti-static layer (8), an antibacterial layer (9) and a skin-friendly fabric layer (10), wherein the external dyeing layer (2), the flame-retardant layer (3), the first base material layer (4), the second base material layer (5), the sweat absorbing layer (6), the sweat guiding layer (7), the anti-static layer (8), the antibacterial layer (9) and the skin-friendly fabric layer (10) are sequentially bonded from bottom to top, a plurality of sweat guiding grooves (11) are formed in the sweat guiding layer (7) at equal intervals, sweat guiding strips (12) are arranged in inner cavities of the sweat guiding grooves (11), one ends of the sweat guiding strips (12) are in contact with the top end of the same sweat absorbing layer (6), and air drying grooves (13) are formed in the inner cavity of the sweat absorbing layer (6), the bottom of the air drying groove (13) is provided with a plurality of air guide grooves (15) at equal intervals inside the sweat absorbing layer (6), and the first base material layer (4) is provided with a plurality of air inlet grooves (14) at equal intervals inside the first base material layer.
2. The antibacterial flame-retardant knitted fabric according to claim 1, characterized in that: the air inlet grooves (14) are respectively communicated with the air guide grooves (15).
3. The antibacterial flame-retardant knitted fabric according to claim 1, characterized in that: the plurality of air guide grooves (15) are communicated with the air drying groove (13).
4. The antibacterial flame-retardant knitted fabric according to claim 1, characterized in that: the air guide groove (15) is of a V-shaped structure.
5. The antibacterial flame-retardant knitted fabric according to claim 1, characterized in that: and a plurality of conductive fibers (16) are inserted into the anti-static layer (8).
6. The antibacterial flame-retardant knitted fabric according to claim 1, characterized in that: the sweat guide strips (12) are made of water-absorbent cotton materials, and the flame-retardant layer (3) is a polyethylene foam cotton layer.
7. The antibacterial flame-retardant knitted fabric according to claim 1, characterized in that: the antibacterial layer (9) is made of nano silver fibers, and the anti-static layer (8) is made of anti-static flame-retardant yarns.
CN202120855669.4U 2021-04-25 2021-04-25 Antibacterial flame-retardant knitted fabric Active CN215321086U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120855669.4U CN215321086U (en) 2021-04-25 2021-04-25 Antibacterial flame-retardant knitted fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120855669.4U CN215321086U (en) 2021-04-25 2021-04-25 Antibacterial flame-retardant knitted fabric

Publications (1)

Publication Number Publication Date
CN215321086U true CN215321086U (en) 2021-12-28

Family

ID=79595705

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120855669.4U Active CN215321086U (en) 2021-04-25 2021-04-25 Antibacterial flame-retardant knitted fabric

Country Status (1)

Country Link
CN (1) CN215321086U (en)

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