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Mechanical properties and energy absorption capability of woven fabric composites under +/- 45 degrees off-axis tension

机译:+/- 45度偏轴张力下机织织物复合材料的机械性能和能量吸收能力

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Fibre-reinforced polymer composites are generally known for their brittle failure behaviour. Ductility of composites, in contrast, which may be of relevance for specific applications like for energy-absorbing structures, can typically be obtained under +/- 45 degrees off-axis tension using the in-plane shear effect. In order to provide an extensive database for the in-plane shear behaviour, a comprehensive experimental study of woven fabric composites under quasi-static and high strain-rate +/- 45 degrees off-axis tensile loading is presented, assessing the non-linear stress-strain behaviour and weight-specific energy absorption capability under different loading rates. The test campaign aims at characterising the influence of fibre material (carbon, glass, aramid, Vectran and Dyneeman matrix material (untoughened epoxy resin, toughened epoxy resin and thermoplastic PEEK), weave pattern (plain weave, twill weave, satin weave and braid) and fibre areal weight on the +/- 45 degrees off-axis tensile mechanical properties. The results reveal failure strain values of up to 28% and significant strain rate effects, influencing stiffness, strength, strain-to-failure and energy absorption. (C) 2015 Elsevier Ltd. All rights reserved.
机译:纤维增强的聚合物复合材料通常以其脆性破坏行为而闻名。相比之下,复合材料的延展性可能与特定应用(例如能量吸收结构)相关,通常可以使用面内剪切效应在+/- 45度的离轴张力下获得。为了提供面内剪切特性的广泛数据库,提出了机织物复合材料在准静态和高应变率+/- 45度偏轴拉伸载荷下的综合实验研究,评估了非线性不同加载速率下的应力应变行为和按重量计的能量吸收能力。该测试活动旨在表征纤维材料(碳,玻璃,芳纶,Vectran和Dyneeman基体材料(未增韧的环氧树脂,增韧的环氧树脂和热塑性PEEK),编织图案(平纹编织,斜纹编织,缎纹编织和编织)的影响和纤维单位面积重量对+/- 45度偏轴拉伸力学性能的影响。结果表明,破坏应变值高达28%,并且应变率效应显着,影响刚度,强度,应变破坏和能量吸收。 C)2015 Elsevier Ltd.保留所有权利。

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