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Amidation complex antibacterial fiber, preparation method and application

An antibacterial fiber and amidation reaction technology, applied in the field of textiles, can solve the problems of insufficient binding force of textiles, short duration of antibacterial properties, low grafting rate, etc., achieving good technical feasibility and economic value, and industrial large-scale production. Easy, simple and simple processing techniques

Pending Publication Date: 2020-11-27
上海威露美生物科技有限公司
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  • Abstract
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  • Claims
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AI Technical Summary

Problems solved by technology

This method has better antibacterial durability, but has two conflicting features that lead to poor practicability: one, the antibacterial property is related to the content of additives, the higher the content of antibacterial additives, the stronger the antibacterial properties, but the higher the content of antibacterial additives, the fiber The physical indicators will be worse, so the amount added should not be too large
2. Because the antibacterial additive is added to the masterbatch before spinning, so that the antibacterial additive is evenly distributed in the masterbatch, and only the additive on the surface of the fiber after spinning can actually play an antibacterial role. The antibacterial agent is actually useless and has no antibacterial effect. Further increasing the content of additives in the fiber will affect the physical properties of the fiber
The textiles processed by van der Waals adsorption (such as dipping method, such as the patent "Preparation method of HAP mixed with silver and copper antimicrobial agent composite coating (CN201410366746.4)") are not strong enough, not resistant to washing, and are more likely to be exposed to salt in the presence of salt. Desorption in the case of desorption and loss of long-lasting antibacterial properties, and the fibers are stiff and the softness of the fabric is reduced
In addition, the Chinese patent CN108239881A discloses a method for preparing antibacterial fibers. In this method, although an intermediate (dimethylaminoethyl methacrylate) is grafted to connect the fibers and bactericidal ions through chemical bonds, the problem of The coating-type bactericidal layer is not resistant to washing; however, the grafting method from one end to the intermediate body is grafting with high-energy radiation and fiber ends. This method not only has high energy consumption, low grafting rate, and poor economy, it cannot be applied to In addition to large-scale industrial production, its intermediate product (quaternized fiber product) may also have certain human toxicity and affect fertility and fetal development (Toxicol. Sci. 2019, DOI: 10.1093 / toxsci / kfz139), which requires further research and observation. It is not suitable for direct application on textiles that are directly worn; at the same time, the other end of the intermediate is combined with permanganate through ionic bonds to achieve a bactericidal effect, but permanganate has a strong oxidizing property and is easily reduced, resulting in the loss of antibacterial properties; Moreover, the ionic bond is not resistant to salt, and the salt in sweat and detergent must exist, so that the antibacterial effect of the product is not valid for a long time. In addition, the permanganate ion itself has a purple color, which affects the subsequent dyeing process of textiles.

Method used

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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  • Amidation complex antibacterial fiber, preparation method and application
  • Amidation complex antibacterial fiber, preparation method and application
  • Amidation complex antibacterial fiber, preparation method and application

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Embodiment

[0046] In this specification, all parts are by weight unless otherwise stated.

[0047] A method for preparing amidated complexing antibacterial fibers, the fiber to be modified is selected as a raw material, and the single chain of the fiber to be modified contains at least one amidation reactive group,

[0048] Such as figure 1 As shown, in the present invention, cellulose fibers can be divided into natural cellulose fibers such as cotton, hemp and regenerated cellulose fibers such as Lyocell, Modal fibers, bamboo fibers, cupro fibers and the like. This type of fiber is composed of cellulose, which is a macromolecular polysaccharide composed of glucose, which is insoluble in water and general organic solvents. Its reducing end is easily isomerized to aldehyde (-CHO), which has good reactivity.

[0049] Such as figure 2 As shown, in the present invention, protein fibers mainly include natural protein fibers such as silk, animal hair, etc., and regenerated protein fibers, ...

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Abstract

The invention relates to the field of textiles, in particular to an antibacterial fiber. According to a preparation method of an amidation complex antibacterial fiber, a fiber with a single chain containing one or more amidation reaction active groups is adopted as a raw material. The preparation method comprises the following steps of conducting a cross-linking reaction, wherein a cross-linking agent and the to-be-modified fiber produce an amidation reaction, and meanwhile, the cross-linking agent contains one or more other complex active groups to produce a complex reaction with antibacterial metal ions; washing the cross-linking agent; and conducting a complex reaction, wherein the antibacterial metal ions are complexed to the fiber, so that the antibacterial fiber is obtained. According to the Amidation complex antibacterial fiber and the preparation method, the active groups on the fiber are utilized; the dual functional cross-linking agent is cross-linked onto the fiber through the amidation reaction; then, the antibacterial ions are complexed, so that covalent bonds high in bond energy are formed; the amidation complex antibacterial fiber cannot be ruptured under common washing intensity, and therefore, a product is durable in antibacterial performance; after 50 washing cycles, the antibacterial performance can still meet the standard of 3A level; and in addition, the machining technology is simple, industrial large-scale production can be achieved easily, and the good technical feasibility and economic value are achieved.

Description

technical field [0001] The invention relates to the field of textiles, in particular to an antibacterial fiber. Background technique [0002] With the development of social economy and the improvement of people's living standards, people's requirements for textiles have risen from the basic requirements of warmth and comfort to the hope that textiles can also have multiple functions such as health care and safety. Many pathogenic microorganisms can not only cause skin infections, decompose human metabolites to produce peculiar smell, endanger human physical and mental health, but also spread among people, causing infectious diseases, such as nosocomial infections. In the transmission of pathogens, textiles are one of the important media. Therefore, the antibacterial processing technology of textiles has emerged at the historic moment, and the existing antibacterial fibers are generally realized by adding antibacterial agents. There are two types of antimicrobial processing...

Claims

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Application Information

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IPC IPC(8): D06M13/192D06M13/342D06M13/368D06M13/453D06M11/00D06M13/00D06M19/00D06M101/12D06M101/04D06M101/10D06M101/06
CPCD06M11/00D06M13/00D06M13/192D06M13/342D06M13/368D06M13/453D06M16/00D06M19/00D06M2101/04D06M2101/06D06M2101/10D06M2101/12
Inventor 吴学众胡国耀
Owner 上海威露美生物科技有限公司
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