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Numerical and experimental studies of damage generation in a polymer composite material at high strain rates

机译:高应变速率下聚合物复合材料中损伤产生的数值和实验研究

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摘要

Samples of S2-glass/epoxy composites have been subjected to microstructural investigation after testing in compression at quasi-static and high strain rates using the split Hopkinson pressure bar. A numerical model was developed that accurately describes the high strain rate mechanical response of the samples. Moreover, in contrast with earlier phenomenological or constitutive models, the model can also predict a variety of failure modes such as delamination, matrix cracking or fiber crushing. High-speed photography was used to check the model results. Interrupted tests, followed by metallographic examination, have revealed that the sequence of damage events differs between quasi-static and high strain rate regimes. The effect of sample size on measured mechanical properties is noted and is confirmed via numerical modeling.
机译:使用分体式Hopkinson压力棒在准静态和高应变速率下进行压缩测试后,已对S2-玻璃/环氧树脂复合材料样品进行了微结构研究。建立了一个精确描述样品的高应变速率机械响应的数值模型。此外,与早期的现象学或本构模型相比,该模型还可以预测各种破坏模式,例如分层,基体破裂或纤维破碎。高速摄影用于检查模型结果。中断测试,然后进行金相检查,发现在准静态和高应变率状态下,损伤事件的顺序有所不同。记录了样品大小对测得的机械性能的影响,并通过数值模型证实了这一点。

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