Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/89540
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Title: Deformation behavior of auxetic woven fabric made of foldable geometry in different tensile directions
Authors: Kamrul, H 
Dong, W
Zulifqar, A 
Zhao, S 
Zhang, M 
Hu, H 
Issue Date: Jan-2021
Source: Textile research journal, 1 2021, v. 91, no. 1-2, p. 87-99
Abstract: Auxetic woven fabrics made with special geometrical structures have gained the interest of textile scientists in recent years. This paper reports a study on auxetic woven fabric based on a double-directional parallel in-phase zig-zag foldable geometrical structure. Such a fabric has been already produced and investigated for its negative Poisson's ratio effect in two principal directions (weft and warp directions). However, its negative Poisson's ratio effect in biased tensile directions as well as under repeated tensile loading conditions has not been studied yet. Therefore, in this paper, these two limitations are addressed. The auxetic woven fabric was firstly fabricated, and then subjected not only to tensile tests in different tensile directions, including two principle directions and three biased directions, but also to repeated tensile loading. It was found that both the negative Poisson's ratio effect and the resistance to tensile deformation are dependent upon the tensile direction, and the highest negative Poisson's ratio effect and higher resistance to tensile deformation are obtained in two principal directions.
Keywords: Negative poisson's ratio
Woven fabric
Geometrical structure
Deformation behavior
Resistance to tensile deformation
Different tensile directions
Publisher: SAGE Publications
Journal: Textile research journal 
ISSN: 0040-5175
EISSN: 1746-7748
DOI: 10.1177/0040517520936289
Rights: This is the accepted version of the publication Kamrul, H., Dong, W., Zulifqar, A., Zhao, S., Zhang, M., & Hu, H, Deformation behavior of auxetic woven fabric made of foldable geometry in different tensile directions, Textile Research Journal (Volume 91 and Issue 44228) pp. 87-99. Copyright © 2020 (The Author(s)). DOI:10.1177/0040517520936289.
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