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Prediction of mechanical behavior of composites under high strain rate tensile loading

机译:高应变率拉伸负荷下复合材料力学行为的预测

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摘要

Non-standardization of specimen size and shape, complexities involved in specimen fabrication and its mounting on split Hopkinson pressure bar (SHPB) make it difficult to achieve reliable high strain rate mechanical properties under tensile loading experimentally. A formulation based on variable rate power law is proposed to predict the tensile strength at higher strain rates based on the experimentally obtained values at comparatively lower strain rates. Experiments were conducted on typical plain weave composite along warp direction, unidirectional composite along and across fiber direction made of E-glass/epoxy and epoxy resin along in-plane direction in the strain rate range up to 470/s using a tensile SHPB apparatus. Predictions of high strain rate tensile behavior of all the four materials have been made up to strain rate of 2000/s. A comparison between analytical predictions and available experimental data is also made and a good match is observed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:标本尺寸和形状的非标准化,在分裂霍普金森压力棒(SHPB)上涉及样品制造的复杂性及其安装在实验上的拉伸荷载下难以实现可靠的高应变率力学性能。提出了一种基于可变速率功率法的制剂,以基于在较低较低的应变速率下基于实验所得值来预测较高应变率下的拉伸强度。沿着经纱方向,单向复合材料沿典型的平纹复合材料进行实验,沿着通过拉伸SHPB装置在应变速率范围内沿着e-玻璃/环氧树脂和环氧树脂制成的纤维方向上的纤维方向。所有四种材料的高应变率拉伸行为的预测已被达到2000 / s的应变率。还进行了分析预测和可用实验数据之间的比较,并且观察到良好的匹配。 (c)2018年elestvier有限公司保留所有权利。

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