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TECHNOLOGY OPTIMIZATION FOR CREASE-RESISTANT FINISHING OF COTTON FABRIC WITH FIBROIN USING RESPONSE SURFACE METHODOLOGY

Jian Wang

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Abstract

Using response surface methodology,cotton fabric was treated with fibrion agent.The multiple-regression equation about crease recovery angle of cotton fabric and three influencing factors such as hydrolytic time of fibroin,fibroin concentration,glyoxal concentration was calculated,and the optimum conditions were obtained.When hydrolytic time of fibroin was 83 min,fibroin concentration was 8%,glyoxal concentration was 5%,the crease recovery angle of cotton fabric was 163°.

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What this paper is about

Using response surface methodology,cotton fabric was treated with fibrion agent.The multiple-regression equation about crease recovery angle of cotton fabric and three influencing factors such as hydrolytic time of fibroin,fibroin concentration,glyoxal concentration was calculated,and the optimum conditions were obtained.When hydrolytic time of fibroin was 83 min,fibroin concentration was 8%,glyoxal concentration was 5%,the crease recovery angle of cotton fabric was 163°.

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Available abstract

Using response surface methodology,cotton fabric was treated with fibrion agent.The multiple-regression equation about crease recovery angle of cotton fabric and three influencing factors such as hydrolytic time of fibroin,fibroin concentration,glyoxal concentration was calculated,and the optimum conditions were obtained.When hydrolytic time of fibroin was 83 min,fibroin concentration was 8%,glyoxal concentration was 5%,the crease recovery angle of cotton fabric was 163°.

Key concepts: Fibroin, Glyoxal, Response surface methodology, Materials science, Composite material, Hydrolysis, Chemistry, Chromatography

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TECHNOLOGY OPTIMIZATION FOR CREASE-RESISTANT FINISHING OF COTTON FABRIC WITH FIBROIN USING RESPONSE SURFACE METHODOLOGY — Research Paper | ScholarLens