Nano-boron for textiles
US-2018245279-A1 · Aug 30, 2018 · US
US11834778B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11834778-B2 |
| Application number | US-201816632385-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 17, 2018 |
| Priority date | Jul 20, 2017 |
| Publication date | Dec 5, 2023 |
| Grant date | Dec 5, 2023 |
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A multifunctional high-strength composite fabric coating agent, a coating, a method for preparing the same and an application thereof are provided. The fabric coating agent includes a resin, a reinforcing agent with a reactive group, a bifunctional dispersing agent, a leveling agent, a film forming agent, a softening agent, an antibacterial agent, a solvent, and the like. The reinforcing agent is modified such that it has active functional groups of —OH and NH 3 . The fabric coating agent is not only easy to apply, fast to react and stabilize, but also suitable for a fabric surface of any material. A treated fabric has high tensile-breaking strength, excellent tearing and bursting performance, good waterproof-and-moisture-permeability and antibacterial performance, and high adhesion. It can be repeatedly knife coated, roll coated, calendared, or dipped. The method is not only mature in technology and low in production cost, but also suitable for large-scale application.
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What is claimed is: 1. A method for preparing a modified fabric using a multifunctional high-strength composite fabric coating agent, comprising: covering a fabric base with a multifunctional high-strength composite fabric coating agent to form a multifunctional high-strength composite fabric coating and obtain a modified fabric; wherein the thickness of the coating is in a range of 5-10 μm and the modified fabric has a waterproof-and-moisture-permeability, an antibacterial effect, a high adhesion ability, a tensile breaking strength 80% higher than that of the fabric base, a bursting strength 80% higher than that of the fabric base, and a tearing strength 80% higher than that of the fabric base; wherein the multifunctional high-strength composite fabric coating agent is prepared by: mixing a reinforcing agent, a synergist, and a solvent uniformly in a mass proportion of 1:0.025-2.5:20-50 with reacting at 20-100° C. for 1-10 hours to obtain a reinforcing agent with a reactive group on its surface; mixing a resin and a solvent uniformly in a mass proportion of 0.01-50:100 and are stirred for 1-60 minutes at a speed of 200-2000 rpm, so as to obtain a uniform and stable dispersion solution; and dispersing the reinforcing agent with the reactive group on its surface, a bifunctional dispersing agent, a leveling agent, a film forming agent, a softening agent, and an antibacterial agent uniformly in the dispersion solution according to a mass proportion of 0.01-0.6:0.02-0.5:0.02-0.4:0.01-0.3:0.01-0.4:0.01-0.3, so as to obtain the multifunctional high-strength composite fabric coating agent; wherein a step for preparing the reinforcing agent with the reactive group on its surface comprises: adding a reinforcing agent, a synergist, and a solvent in a mass proportion of 1:0.025-2.5:20-50 to a reactor and reacting for 1-10 hours at 20-100° C., wherein after reaction products are cooled, solids therein are separated and are dried at room temperature for 10-30 hours, and then, milling and screening are performed; wherein the synergist comprises a silane coupling agent and/or a polymer compound; wherein the silane coupling agent comprises one or more combinations of 3-aminopropyltrimethoxysilane, γ-(2,3-epoxypropoxy) propyltriethoxysilane, γ-methylpropenyloxypropyltrimethoxysilane, N-(β-aminoethyl)-γ-aminopropyltriethoxysilane, anilinoisophorone, and γ-aminopropylmethyldiethoxy silane; wherein the polymer compound comprises one or more combinations of polyvinyl alcohol, polyamide, polyacrylic acid, polymethylacrylic acid, polymaleic anhydride and copolymer of trans-butenedioic acid-propylene sulfonic acid. 2. The preparation method of claim 1 , further comprising: mixing the resin and the solvent uniformly in a mass proportion of 0.01-50:100 and stirring them at a speed of 200-2000 rpm for 1-60 minutes, so as to obtain the uniform and stable dispersion solution.
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