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Static and dynamic puncture behaviors of compound fabrics with recycled high-performance Kevlar fibers

机译:再生高性能芳纶纤维复合织物的静态和动态穿刺行为

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摘要

An economical and flexible compound fabric was prepared using Kevlar fabric and glass fabrics as well as recycled Kevlar/Nylon/low-T_m polyester nonwovens via needle-punching and thermal-bonding processes. Effects of Kevlar staple fibers fraction, number of layers and inter-laminar bonding on the static and dynamic puncture resistances were comparatively studied. Findings indicate that increase of Kevlar staple fibers fraction improved static puncture resistance more significantly, but inter-laminar shear effect influenced on dynamic puncture resistance more evidently. With 20 wt% recycled Kevlar fibers, static puncture resistance had linear relation to number of layers, but dynamic puncture resistance showed a parabolic relationship. The contacting pressure and friction strength of compound fabric to probe was to resist against static puncture resistance, but mechanism for dynamic puncture resistance was due to fiber elongation of fabric interlayer and compactness of compound fabric. Yarn brittle-breakage was the main dynamic puncture resistance mechanism for G-CF, but pushing fiber apart was for K-CF, besides of contact pressure of probe to compound fabrics. The improved both of static and dynamic puncture resistances were attributed to cut resistance of Kevlar fibers and compactness of fiber assembles. Comparatively, cut resistance property of Kevlar fibers related to dynamic puncture behavior more significantly, but fiber compactness affected static puncture resistance obviously.
机译:使用凯夫拉纤维织物和玻璃纤维织物以及回收的凯夫拉尔纤维/尼龙/低T_m聚酯非织造布通过针刺和热粘合工艺制备了一种经济而灵活的复合织物。对比研究了凯夫拉纤维短纤率,层数和层间粘结对静态和动态抗穿刺性的影响。结果表明,芳纶短纤含量的增加能显着改善抗静电穿刺性,但层间剪切效应对动态抗穿刺性的影响更为明显。对于20wt%的再生Kevlar纤维,抗穿刺性与层数成线性关系,而抗穿刺性表现出抛物线关系。复合织物与探针的接触压力和摩擦强度是为了抵抗静态穿刺性,而动态穿刺性的机理是由于织物中间层的纤维伸长和复合织物的致密性。纱线脆性断裂是G-CF的主要动态抗穿刺机理,而将纤维推开则是K-CF,除了探针与复合织物的接触压力外。静态和动态抗穿刺性的提高归因于芳纶纤维的抗切割性和纤维组件的致密性。相比之下,凯夫拉尔纤维的耐切割性与动态穿刺性能相关性更大,但是纤维的紧密度明显影响了其抗静态穿刺性。

著录项

  • 来源
    《Composites》 |2014年第3期|60-66|共7页
  • 作者单位

    School of Textiles, Tianjin Polytechnic University, Tianjin 300387, China;

    School of Textiles, Tianjin Polytechnic University, Tianjin 300387, China;

    Institute of Biomedical Engineering and Material Science, Central Taiwan University of Science and Technology, Taichung 40601, Taiwan;

    Laboratory of Fiber Application and Manufacturing, Department of Fiber and Composite Materials, Feng Chia University, Taichung 40724, Taiwan,School of Chinese Medicine, China Medical University, Taichung 40402, Taiwan,Department of Fashion Design, Asia University, Taichung 41354, Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A.Recycling; A.Fabrics/textiles; B.Mechanical properties; D.Mechanical testing;

    机译:A.回收;A.面料/纺织品;机械性能D.机械测试;

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