CN217026235U - High-strength antibacterial textured yarn - Google Patents

High-strength antibacterial textured yarn Download PDF

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Publication number
CN217026235U
CN217026235U CN202122653454.7U CN202122653454U CN217026235U CN 217026235 U CN217026235 U CN 217026235U CN 202122653454 U CN202122653454 U CN 202122653454U CN 217026235 U CN217026235 U CN 217026235U
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China
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antibacterial
filaments
fiber
yarns
shaped
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CN202122653454.7U
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Chinese (zh)
Inventor
赵夏达
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Zhejiang Today Wind Textile Co ltd
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Zhejiang Today Wind Textile Co ltd
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Abstract

The utility model discloses a high-strength antibacterial textured yarn, relates to textile articles, aims to solve the problems that when woven into textile clothes, the woven clothes are still easy to be contaminated by external dirt, and the bred bacteria easily influence the comfort of people wearing the clothes, and has the technical scheme that: the antibacterial fiber is formed by twisting a plurality of strands of antibacterial filaments and chemical fiber filaments, the chemical fiber filaments and adjacent antibacterial filaments are sequentially wound to form a bundle-shaped structure, and an antibacterial layer is adhered outside the antibacterial filaments. The special-shaped fiber yarns have special-shaped fiber sections, and can increase the friction force among the fiber yarns in the anti-hypha, so that the cohesive force among the special-shaped fiber yarns is improved, the strength of the anti-hypha is improved, and the ramie fibers have good moisture absorption and moisture release, antibacterial and bacteriostatic capabilities, and the antibacterial capability of the textured yarns is comprehensively improved.

Description

High-strength antibacterial draw textured yarn
Technical Field
The utility model relates to textile products, in particular to high-strength antibacterial stretch yarn.
Background
With the increasing living standard of people, the clothes made of high elastic material are more and more popular with consumers because of comfortable wearing and good body shaping performance.
The stretch yarn among the prior art can divide into high stretch yarn and low stretch yarn, and stretch yarn adds and is twisted together through the two-for-one twister by many fibre monofilaments, but the current performance that adds stretch yarn is single, only twists through adding many stretch yarns, improves the intensity that adds stretch yarn, when weaving into weaving clothing, still is infected with external filth easily, and the travelling comfort when people wear the clothing is influenced easily to the bacterium of breeding.
Therefore, a new solution is needed to solve this problem.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model aims to provide a high-strength antibacterial stretch yarn.
The technical purpose of the utility model is realized by the following technical scheme: the high-strength antibacterial and stretch yarn comprises a plurality of strands of antibacterial filaments and chemical filament yarns, wherein the chemical filament yarns and adjacent antibacterial filaments are sequentially wound to form a bundle-shaped structure, and an antibacterial layer is adhered to the outside of each antibacterial filament.
Through adopting above-mentioned technical scheme, add the bullet silk and form with chemical fiber silk and antibiotic silk twisting, form the structure of restrainting the form through the winding in proper order of chemical fiber silk and a plurality of antibiotic silk, can have good intensity with the help of chemical fiber silk to improve and add the holistic tensile strength of bullet silk and prevent the rupture ability, antibiotic layer adhesion can improve the antibiotic bacteriostatic performance of anti hypha in the outside of anti hypha simultaneously.
The utility model is further configured to: the antibacterial filaments comprise a plurality of profiled filaments arranged in the same direction, and a plurality of reinforcing filaments are arranged between the profiled filaments.
Through adopting above-mentioned technical scheme, the fibre cross-section of dysmorphism cellosilk is the dysmorphism, can increase the frictional force between the cellosilk in the anti hypha to improve the cohesive force between the dysmorphism cellosilk, improve the intensity of anti hypha, and set up the enhancement silk between the dysmorphism cellosilk, can further improve the anti-rupture ability of anti hypha.
The utility model is further configured to: the fiber section of the profiled fiber yarn is Y-shaped, and the reinforcing yarns are respectively positioned in gaps between adjacent profiled fiber yarns.
By adopting the technical scheme, the Y-shaped profiled fibers have large surface area and good adsorption performance, so that the contact area between the profiled fibers can be increased, the anti-hypha and the antibacterial layer have good contact area, and the fastness of the antibacterial layer is enhanced.
The utility model is further configured to: the antibacterial layer is coated with antibacterial finishing agent outside the antibacterial hypha to form an integral structure.
By adopting the technical scheme, the antibacterial layer adopts the antibacterial finishing agent to carry out after-finishing on the yarns, so that the yarn finishing agent has good integrity and improves the antibacterial and bacteriostatic capacity of the yarns.
The utility model is further configured to: the chemical fiber yarn comprises at least one of polyester fiber, spandex fiber, polyamide fiber and polypropylene fiber.
By adopting the technical scheme, the chemical fiber is made of polyester fiber, spandex fiber, nylon fiber or polypropylene fiber, can pass through the high strength of the polyester fiber, the spandex fiber, the polypropylene fiber and the nylon fiber, and has good elasticity and deformation resistance.
The utility model is further configured to: and a plurality of ramie fibers are twisted outside the chemical fiber filaments, and the twisting direction of the ramie fibers is opposite to that of the chemical fiber filaments.
By adopting the technical scheme, the ramie fiber is additionally twisted outside the chemical fiber filaments, and the ramie fibers have good moisture absorption and release capacity and antibacterial and bacteriostatic capacity, so that the antibacterial capacity of the textured yarn is comprehensively improved.
In conclusion, the utility model has the following beneficial effects:
the elastic yarn is formed by twisting chemical fiber yarn and antibacterial yarn, the chemical fiber yarn and the antibacterial yarn are sequentially wound to form a bundle-shaped structure, and the bundle-shaped structure has good strength by means of the chemical fiber yarn, so that the overall tensile property and the anti-breaking capacity of the elastic yarn are improved, and meanwhile, the antibacterial layer is adhered to the outside of the antibacterial yarn, and the antibacterial and bacteriostatic properties of the antibacterial yarn can be improved.
Drawings
FIG. 1 is a schematic view of the structure of the present invention;
FIG. 2 is a schematic structural diagram of the antibacterial filament according to the present invention.
In the figure: 1. resisting hyphae; 2. chemical fiber yarn; 3. an antimicrobial layer; 4. profiled fiber filaments; 5. and (4) reinforcing wires.
Detailed Description
The utility model is described in detail below with reference to the figures and examples.
A high-strength antibacterial stretch yarn is shown in figure 1 and comprises a plurality of strands of antibacterial filaments 1 and chemical filaments 2 which are twisted, wherein the chemical filaments 2 and adjacent antibacterial filaments 1 are sequentially wound to form a bundle-shaped structure, and an antibacterial layer 3 is adhered outside the antibacterial filaments 1.
As shown in fig. 2, the antibacterial filament 1 includes a plurality of shaped filaments 4 arranged in the same direction, a plurality of reinforcing filaments 5 are arranged between the shaped filaments 4, wherein the cross section of the shaped filaments 4 is in a Y shape, the plurality of reinforcing filaments 5 are respectively located in gaps between adjacent shaped filaments 4, and the antibacterial layer 3 is coated with the antibacterial finishing agent outside the antibacterial filament 1 to form an integral structure, in this embodiment, the shaped filaments 4 and the reinforcing filaments 5 are arranged in the same direction and immersed in the antibacterial finishing agent containing nano titanium dioxide, and the antibacterial filament 1 is formed by drying and encapsulating.
In this embodiment, the chemical fiber filament 2 includes at least one of polyester fiber, spandex fiber, polyamide fiber, and polypropylene fiber, and a plurality of ramie fiber filaments are twisted outside the chemical fiber filament 2 in an S twisting direction by a twisting machine, and the twisting direction of the ramie fiber filaments is opposite to the twisting direction of the chemical fiber filament 2.
The elastic yarn is formed by twisting chemical fiber filaments 2 and antibacterial filaments 1, a bundle-shaped structure is formed by sequentially winding the chemical fiber filaments 2 and a plurality of antibacterial filaments 1, the chemical fiber filaments 2 have good strength, the chemical fiber filaments are polyester fibers, spandex fibers, polyamide fibers or polypropylene fibers, the high strength of the polyester fibers, the spandex fibers, the polypropylene fibers or the polyamide fibers can be realized, the elastic and deformation resistant capabilities are good, ramie fiber filaments are additionally twisted outside the chemical fiber filaments 2, the ramie fibers have good moisture absorption and moisture release and antibacterial capabilities, the antibacterial capability of the elastic yarn is comprehensively improved, the antibacterial filaments 1 are made of special-shaped fiber filaments 4 and reinforcing filaments 5, the cross section of the special-shaped fiber filaments 4 is Y-shaped, the surface area is large, the adsorption performance is good, the contact area among the special-shaped fiber filaments 4 can be increased, the friction among the special-shaped fiber filaments 1 can be increased, and the cohesive force among the special-shaped fiber filaments 4 is improved, improve anti hypha 1's intensity, and set up the enhancement silk 5 between special-shaped fiber 4, can further improve anti hypha 1 prevent the fracture ability, thereby improve and add the holistic tensile strength of bullet silk and prevent the fracture ability, 3 adhesion on antibiotic layer are in anti hypha 1's outside simultaneously, antibiotic layer 3 adopts antibiotic finishing agent to carry out the aftertreatment to the yarn, good wholeness has, the antibiotic bacteriostatic ability of yarn is improved, the antibiotic bacteriostatic ability of anti hypha 1 can be improved.
The above description is only a preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments, and all technical solutions belonging to the idea of the present invention belong to the protection scope of the present invention. It should be noted that modifications and adaptations to those skilled in the art without departing from the principles of the present invention should also be considered as within the scope of the present invention.

Claims (4)

1. The utility model provides an antibiotic stretch yarn that adds of high strength which characterized in that: the chemical fiber yarn is characterized by comprising a plurality of strands of anti-hyphae (1) and chemical fiber yarns (2) which are twisted to form a bundle structure, wherein the chemical fiber yarns (2) and the adjacent anti-hyphae (1) are sequentially wound to form the bundle structure, an antibacterial layer (3) is adhered to the outer side of each anti-hyphae (1), each anti-hyphae (1) comprises a plurality of special-shaped fiber yarns (4) which are arranged in the same direction, and a plurality of reinforcing yarns (5) are arranged between the special-shaped fiber yarns (4).
2. The high strength antimicrobial textured yarn of claim 1, wherein: the fiber section of the profiled fiber yarns (4) is Y-shaped, and the plurality of reinforcing yarns (5) are respectively positioned in gaps between the adjacent profiled fiber yarns (4).
3. The high strength antimicrobial stretch yarn according to claim 2, wherein: the antibacterial layer (3) is coated outside the antibacterial hypha (1) by an antibacterial finishing agent to form an integral structure.
4. The high strength antimicrobial textured yarn of claim 1, wherein: a plurality of ramie fibers are twisted outside the chemical fiber filaments (2), and the twisting direction of the ramie fibers is opposite to that of the chemical fiber filaments (2).
CN202122653454.7U 2021-11-01 2021-11-01 High-strength antibacterial textured yarn Active CN217026235U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122653454.7U CN217026235U (en) 2021-11-01 2021-11-01 High-strength antibacterial textured yarn

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122653454.7U CN217026235U (en) 2021-11-01 2021-11-01 High-strength antibacterial textured yarn

Publications (1)

Publication Number Publication Date
CN217026235U true CN217026235U (en) 2022-07-22

Family

ID=82438661

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122653454.7U Active CN217026235U (en) 2021-11-01 2021-11-01 High-strength antibacterial textured yarn

Country Status (1)

Country Link
CN (1) CN217026235U (en)

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