Investigation on Thermal Comfort Characteristics of Regenerated Bamboo and Cotton Woven Structured Fabrics

Author:

Abro Zamir Ahmed1,Chen Nanliang1,Yifan Zhang1,Cheng-Yu Hong2,Abassi Abdul Malik Rehan3,Simair Altaf Ahmed4,Ahmed Rafique1,Hussain Azmat5

Affiliation:

1. Department of knitting and clothing, college of Textile , Donghua University , Shanghai , 201620 , China

2. Department of Civil Engineering , Shanghai University , Shanghai 200444 , China .

3. Department of Textile Engineering , BUTIEMS , Quetta , 87300 , Pakistan

4. College of Chemistry, Chemical Engineering and Biotechnology , Donghua University , Shanghai , 201620 , China

5. Department of Textiles Engineering, College of textile , Donghua University , Shanghai , 201620 , China

Abstract

Abstract In this research work, thermal properties of plain woven fabrics generated from regenerated bamboo and cotton fiber blended yarns were investigated. Seven mixtures of fiber (100% bamboo, 100% cotton, 10:90 bamboo: cotton, 20:80 bamboo: cotton, 30:70 bamboo: cotton, 40:60 bamboo: cotton and 50:50 bamboo: cotton) were developed to create 60 Tex ring spun yarn. The warp yarns were used as 100% regenerated bamboo and the bamboo: cotton blends were used alternatively in weft to produce plain woven fabrics. The plain structured woven fabrics show eminent thermal comfort properties with the blending of regenerated bamboo fibers. The air permeability of 100% regenerated bamboo fiber was recorded higher than the compared blends; the increased key factor contents of bamboo changed the air properties of the fabric. Furthermore, plain woven fabric of bamboo/cotton (50/50) has shown greater thermal conductivity and heat retention properties. The work reported in this paper is ensuring highpoints of thermal comfort properties of regenerated bamboo (100%) and cotton (100%) with plain woven structured fabrics, and potentially, the fabrics can be used for winter suiting apparel products.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science

Reference30 articles.

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