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Influence of diameter and boundary conditions on low velocity impact response of CFRP circular laminated plates

机译:直径和边界条件对CFRP圆形层压板低速冲击响应的影响

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摘要

Low velocity and low energy impact tests were carried out on CFRP circular laminated plates, in order to investigate the effect of specimen dimensions and boundary conditions on dynamic behaviour and material damage. Two different diameters and constraints were tested. Numerical simulations of specimen impact response were performed by a finite element program and compared to experimental results. Tests indicated that both dimensions and boundary conditions affect response and damage, higher target stiffness resulting in greater energy absorption and more extended delamination. An empirical relationship with absorbed energy and with maximum contact force, independent of the test configuration, was found for the delamination area. The main features of contact force history were correctly predicted by numerical analysis, although disagreement was observed between numerical and experimental results due to damage.
机译:为了研究样本尺寸和边界条件对动态行为和材料破坏的影响,对CFRP圆形层压板进行了低速和低能冲击试验。测试了两个不同的直径和约束。样品冲击响应的数值模拟是通过有限元程序进行的,并与实验结果进行了比较。测试表明,尺寸和边界条件都会影响响应和损伤,更高的目标刚度会导致更大的能量吸收和更长时间的分层。对于分层区域,发现了与吸收能量和最大接触力之间的经验关系,而与试验配置无关。通过数值分析可以正确预测接触力历史的主要特征,尽管由于损坏而在数值和实验结果之间存在分歧。

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