Study on the Multi-Directional Static Friction Properties of High Performance Yarns

Author:

Qi Yexiong12,Iqbal Waqar1,Jiang Yaming12

Affiliation:

1. School of Textile Science and Engineering , Tiangong University , Tianjin , , P.R. China

2. Key Laboratory of advanced textile composites , Tiangong University , Tianjin , , P.R. China

Abstract

Abstract To further optimise the bullet-proof performance of textile reinforced composites, multi-directional friction tests of aramid and ultra-high molecular weight polyethylene (UHMWPE) yarns were carried out by the slope method. The influence of the included angle between the high-performance yarns on the static friction coefficient for aramid and UHMWPE yarns was studied by measuring the friction coefficient. The relationship between the static friction coefficient and the included angle among the high-performance yarns was discussed. The results showed that the friction coefficient of aramid yarns was higher than that of UHMWPE yarns. Especially, at the same included angle between high-performance yarns, the static frictional coefficient of aramid yarns is 50% higher than that of UHMWPE yarns. In accordance with expectations, the static friction coefficient decreases with the increased included angle between high-performance yarns, and the included angle of high-performance yarns changes from 0º to 90º. The trend of rapid decline appeared when the included angle between high-performance yarns changed from 0º to 15º. For the actual result, the static friction coefficient of aramid and UHMWPE yarns is less than 0.3, which needs to be improved to increase the bullet-proof performance of textile composites.

Publisher

Walter de Gruyter GmbH

Subject

Industrial and Manufacturing Engineering,General Environmental Science,Materials Science (miscellaneous),Business and International Management

Reference14 articles.

1. Zhou Yi, Chen Xiaogang, Zhang Shangyong, et al. Application of ultra-high molecular-weight polyethylene plain weave on soft body armour [J]. Journal of Textile Research, 2016, 37(4): 60–64.

2. Zhou Yi, Chen Xiaogang, Gong Xiaozhou, et al. Research progress on influence of friction on ballistic performance of flexible materials [J]. Journal of Textile Research, 2016, 37(4): 60–64.

3. Chun Yanyan, Min Shengnan, Chen Xiaogang. Numerical study of inter-yarn friction on the failure of fabrics upon ballistic impacts [J]. Materials and Design, 2017, 115: 299–316.

4. Das Sanhita, Shaw Amit, Pal Anjali. Determination of inter-yarn friction and its effect on ballistic response of para-aramid woven fabric under low velocity impact [J]. Composite Structures, 2015, 120: 129–140.

5. Wang Ying, Chen Xiaogang, Ian Kinloch Robert. Finite element analysis of effect of inter-yarn friction on ballistic impact response of woven fabrics [J]. 2016, 135: 8–16.

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