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Dynamic properties and strain rate effect of 3D angle-interlock carbon/epoxy woven composites

机译:3D角互锁碳/环氧树脂编织复合材料的动态特性和应变率效应

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摘要

A series of experiments on 3D angle-interlock carbon/epoxy woven composites were carried out using the split Hopkinson pressure bar and split Hopkinson tension bar. These tests were accomplished to investigate the strain rate effect of the dynamic compressive and tensile properties. The strain rate range is about 500/s to 1500/s for through-thickness compressive tests, 150/s to 600/s for in-plane compressive tests, and 600/s to 1000/s for in-plane tensile tests. The corresponding quasi-static properties are given for reference. The tested specimens were observed using optical microscope and scanning electron microscope. The main failure modes of the specimens include fiber breakage, fiber pull out and matrix crack. The compressive modulus of through-thickness direction is positively related to the strain rate. The compressive strength and modulus of in-plane direction shows a light fluctuation within the studied strain rate. It is found that the tensile strength and modulus of in-plane direction are negatively related to the strain rate.
机译:利用分离式霍普金森压杆和分离式霍普金森张力杆对三维角联锁碳/环氧机织复合材料进行了一系列实验。完成这些试验是为了研究动态压缩和拉伸性能的应变率效应。全厚度压缩试验的应变率范围约为500/s至1500/s,平面内压缩试验的应变率范围约为150/s至600/s,平面内拉伸试验的应变率范围约为600/s至1000/s。给出了相应的准静态性质,以供参考。用光学显微镜和扫描电镜对试样进行观察。试样的主要失效模式包括纤维断裂、纤维拔出和基体裂纹。厚度方向的压缩模量与应变率呈正相关。平面方向的抗压强度和模量在所研究的应变率范围内呈现轻微波动。研究发现,拉伸强度和面内方向模量与应变率呈负相关。

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