Antibacterial moisture-conducting polyamide fabric

文档序号:1150410 发布日期:2020-09-15 浏览:10次 中文

阅读说明:本技术 一种抑菌导湿锦纶面料 (Antibacterial moisture-conducting polyamide fabric ) 是由 杨飞 于 2020-06-03 设计创作,主要内容包括:本发明公开了一种抑菌导湿锦纶面料,包括抑菌层、吸附层和排湿层,所述抑菌层由含银锦纶纤维和芳香烃纤维交错粘合成网状结构,所述吸附层设置在抑菌层上层,所述吸附层为水刺棉布,所述排湿层设置在吸附层上层,所述排湿层由多根多孔锦纶纤维异向垫纱编织而成。本发明能够使锦纶面料具有较强的抑菌性能和导湿效果,结构合理,穿着舒适。利于市场推广。(The invention discloses an antibacterial moisture-conducting polyamide fabric which comprises an antibacterial layer, an adsorption layer and a moisture-removing layer, wherein the antibacterial layer is of a net structure formed by binding silver-containing polyamide fibers and aromatic hydrocarbon fibers in a staggered manner, the adsorption layer is arranged on the upper layer of the antibacterial layer, the adsorption layer is spunlace cotton cloth, the moisture-removing layer is arranged on the upper layer of the adsorption layer, and the moisture-removing layer is formed by weaving a plurality of porous polyamide fibers in a different-direction lapping yarn. The nylon fabric has the advantages of strong antibacterial performance and moisture-conducting effect, reasonable structure and comfortable wearing. Is beneficial to market popularization.)

1. The antibacterial moisture-conducting polyamide fabric is characterized in that: including antibacterial layer (1), adsorbed layer (2) and hydrofuge layer (3), antibacterial layer (1) is by the crisscross bonding network structure that becomes of silvery polyamide fibre and aromatic hydrocarbon fibre, adsorbed layer (2) set up on antibacterial layer (1), adsorbed layer (2) are the water thorn cotton cloth, hydrofuge layer (3) set up on adsorbed layer (2) upper strata, hydrofuge layer (3) are woven by many porous polyamide fibre incorgruous bed yarns and are formed.

2. The bacteriostatic moisture-conducting polyamide fabric as claimed in claim 1, which is characterized in that: the silver-containing polyamide fiber of the antibacterial layer (1) is a filament fiber with the cross section shape of X, and the mesh size of the net-shaped structure of the antibacterial layer (1) is 0.1-0.2 mm.

3. The bacteriostatic moisture-conducting polyamide fabric as claimed in claim 1, which is characterized in that: the spunlace cotton cloth of the absorption layer (2) is an absorption cotton sheet made of melt-blown polypropylene.

4. The bacteriostatic moisture-conducting polyamide fabric as claimed in claim 1, which is characterized in that: the gram weight of the adsorption layer (2) is 70-80g/m2

5. The bacteriostatic moisture-conducting polyamide fabric as claimed in claim 1, which is characterized in that: the antibacterial layer (1), the adsorption layer (2) and the moisture-removing layer (3) are combined together in a hot-pressing mode in sequence.

[ technical field ] A method for producing a semiconductor device

The invention relates to the technical field of textile fabrics, in particular to the technical field of antibacterial moisture-transfer polyamide fabrics.

[ background of the invention ]

The nylon is a synthetic fiber, the most outstanding advantage is that the wear resistance is higher than all other fibers, 10 times higher than that of cotton and 20 times higher than that of wool, and the wear resistance can be greatly improved by slightly adding some nylon fibers into the blended fabric; when the stretch is extended to 3-6%, the elastic recovery rate can reach 100%; can withstand ten thousand times of bending without breaking. With the improvement of living standard of substances, the requirements of people on textiles are not limited to the original basic characteristics of warmth retention, comfort and the like. According to different uses of textiles, people also want special functions of health care, safety and the like, such as antibiosis, mite prevention, negative ion, far infrared, ultraviolet ray prevention, poison prevention, flame retardance, electromagnetic wave radiation prevention, magnetic therapy, fragrance, moisture absorption, sweat discharging, oil prevention, water prevention and the like.

[ summary of the invention ]

The invention aims to solve the problems in the prior art, and provides an antibacterial moisture-conducting polyamide fabric which has the advantages of strong antibacterial performance and moisture-conducting effect, reasonable structure and wearing comfort. Is beneficial to market popularization.

In order to achieve the purpose, the invention provides an antibacterial moisture-conducting polyamide fabric which comprises an antibacterial layer, an adsorption layer and a moisture-removing layer, wherein the antibacterial layer is of a net structure formed by binding silver-containing polyamide fibers and aromatic hydrocarbon fibers in a staggered mode, the adsorption layer is arranged on the upper layer of the antibacterial layer, the adsorption layer is made of spunlace cotton cloth, the moisture-removing layer is arranged on the upper layer of the adsorption layer, and the moisture-removing layer is formed by weaving a plurality of porous polyamide fibers in a different-direction pad yarn.

Preferably, the silver-containing polyamide fiber of the antibacterial layer is a filament fiber with the cross section shape of X, and the mesh size of the net-shaped structure of the antibacterial layer is 0.1-0.2 mm.

Preferably, the spunlace cotton cloth of the absorption layer is an absorption cotton sheet made of melt-blown polypropylene.

Preferably, the gram weight of the adsorption layer is 70-80g/m2

Preferably, the antibacterial layer, the adsorption layer and the moisture-removing layer are sequentially compounded together in a hot pressing manner.

The invention has the beneficial effects that: according to the invention, the antibacterial layer, the adsorption layer and the moisture-removing layer are combined together, and through experimental optimization, the nylon fabric has strong antibacterial performance and moisture-conducting effect, and is reasonable in structure and comfortable to wear. Is beneficial to market popularization.

The features and advantages of the present invention will be described in detail by embodiments in conjunction with the accompanying drawings.

[ description of the drawings ]

FIG. 1 is a schematic structural view of the bacteriostatic moisture-conducting polyamide fabric.

In the figure: 1-an antibacterial layer, 2-an adsorption layer and 3-a moisture removal layer.

[ detailed description ] embodiments

Referring to fig. 1, the bacteriostatic moisture-conducting polyamide fabric comprises a bacteriostatic layer 1, an adsorption layer 2 and a moisture-discharging layer 3, wherein the bacteriostatic layer 1 is formed by bonding silver-containing polyamide fibers and aromatic hydrocarbon fibers in a staggered manner to form a net-shaped structure, the adsorption layer 2 is arranged on the upper layer of the bacteriostatic layer 1, the adsorption layer 2 is spunlace cotton cloth, the moisture-discharging layer 3 is arranged on the upper layer of the adsorption layer 2, the moisture-discharging layer 3 is formed by weaving a plurality of porous polyamide fibers in different directions, the silver-containing polyamide fibers of the bacteriostatic layer 1 are filament fibers with an X-shaped cross section, the mesh size of the net-shaped structure of the bacteriostatic layer 1 is 0.1-0.2mm, the spunlace cotton cloth of the adsorption layer 2 is an adsorption cotton sheet made of melt-blown polypropylene, and the gram weight of the adsorption layer 2 is 70-80g/m2The antibacterial layer 1, the adsorption layer 2 and the moisture removal layer 3 are sequentially compounded together in a hot pressing manner.

According to the invention, the antibacterial layer 1, the adsorption layer 2 and the moisture-removing layer 3 are combined together, and through experimental optimization, the nylon fabric has strong antibacterial performance and moisture-conducting effect, and is reasonable in structure and comfortable to wear. Is beneficial to market popularization.

The above embodiments are illustrative of the present invention, and are not intended to limit the present invention, and any simple modifications of the present invention are within the scope of the present invention.

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