Effect of using alternate elastic and non-elastic yarns in warp on shrinkage and stretch behavior of bi-stretch woven fabrics

Author:

Jiang Lili1ORCID,Zulifqar Adeel2,Hai Abdul Moqeet3,Anwar Faiza4,Hu Hong2,Liu Fengwei5,Chen Haizhen1

Affiliation:

1. Fashion School, Zhejiang Fashion Institute of Technology, Ningbo, Zhejiang Province, China

2. School of Fashion and Textiles, The Hong Kong Polytechnic University, Hong Kong

3. Institute of Polymer and Textile Engineering, University of the Punjab, Lahore, Pakistan

4. School of Design and Textiles, University of Management and Technology, Lahore, Pakistan

5. Ningbo Ruiling Advanced Energy Technologies Co., Ltd., Ningbo, Zhejiang Province, China

Abstract

Stretch woven fabrics are known for their elastic and recovery properties. To date, they found many interesting applications from simple jeans to complex fabric structures with functional properties for example bi-stretch auxetic woven fabrics, compressions garments and stretchable textile carriers for healthcare applications. Many studies have been carried out on the physical, mechanical and comfort properties of stretchable knitted and woven fabrics. However, to identify combination of yarns with different stretch properties and other design parameters required to meet multiple objectives in the production and usage of bi-stretch woven fabrics is an area that has been taken up by fabric scientists recently. This study compared the effect of using elastic yarns and alternate elastic and non-elastic yarns in warp on the properties of bi-stretch woven fabrics while using elastic yarns in weft direction. It was found that shrinkage of the fabrics made of elastic yarns was higher along the warp direction as compared to that in weft direction due to shrinkage balancing effect; however, in case of fabrics made of alternate elastic and non-elastic yarns in warp the shrinkage behavior was exact opposite. The comparison of shrinkage for different weave patterns revealed that satin had the highest shrinkage followed by twill and plain, due to least number of interlacements in satin among these three patterns.

Publisher

SAGE Publications

Subject

General Materials Science

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