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Experimental and numerical analysis of drop-weight low-velocity impact tests on hybrid titanium composite laminates

机译:混合钛复合材料层压板低重量低速冲击试验的实验和数值分析

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摘要

An experimental and numerical study on low-velocity impact responses on [Ti/0/90](s) hybrid titanium composite laminates (HTCLs) is presented. Different energy levels from 10 to 40 J are investigated using a drop-weight instrument and post-impact inspection. An explicit finite element implementation provides a detailed analysis of impact response in composite and titanium layers, respectively. It accounts for interfacial debonding, progressive failure in composite plies and elastic-plastic deformation in titanium. The main failure modes are experimentally and numerically found to be debonding between titanium and composite, matrix cracking and interlaminar delamination. The principal energy-absorbing mechanism is plastic dissipation of the two titanium sheets. The low cost numerical model is able to effectively predict the overall impact response and major failure modes with good accuracy.
机译:提出了对[Ti / 0/90](s)杂化钛复合材料层压板(HTCL)的低速冲击响应的实验和数值研究。使用跌重仪器和冲击后检查研究了10至40 J的不同能级。显式的有限元实现分别提供了复合材料层和钛层中冲击响应的详细分析。它说明了界面剥离,复合层的渐进破坏和钛的弹塑性变形。从实验和数值上发现,主要的破坏模式是钛与复合材料之间的剥离,基体开裂和层间分层。主要的能量吸收机制是两个钛板的塑性消散。低成本的数值模型能够有效地预测总体冲击响应和主要失效模式,并具有良好的准确性。

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