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首页> 外文期刊>International journal of impact engineering >Hypervelocity impact response of CFRP laminates using smoothed particle hydrodynamics method: Implementation and validation
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Hypervelocity impact response of CFRP laminates using smoothed particle hydrodynamics method: Implementation and validation

机译:CFRP层压板超高速冲击响应的光滑粒子流体动力学方法:实现与验证

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摘要

The current work investigates the hypervelocity impact response (HVI) of carbon fiber reinforced polymer composites (CFRP) and the produced secondary debris using smoothed-particle hydrodynamics methodology (SPH) in LS-DYNA. The aim of present study is to reproduce numerically the CFRP material response to hypervelocity impact and fragments cloud, to investigate the applicability of SPH modeling technique on composite materials and to determine the suitable numerical solution parameters. A verification procedure for modeling of composite laminate using SPH methodology is proposed. The investigation starts with baseline quasi-static tests, and the results are compared against the available theoretical ones to ensure the stability and efficiency of the SPH kernel function under quasi-static loading. Afterwards, the developed methodology is applied to hypervelocity impact response of CFRPs and the ballistic limit, the crater diameter as well as the secondary debris cloud are numerically calculated and correlated to the published HVI experimental results on CFRP plates.
机译:当前的工作是使用LS-DYNA中的平滑粒子流体动力学方法(SPH)研究碳纤维增强聚合物复合材料(CFRP)的超高速冲击响应(HVI)和产生的次级碎屑。本研究的目的是数值再现CFRP材料对超高速撞击和碎片云的响应,以研究SPH建模技术在复合材料上的适用性,并确定合适的数值求解参数。提出了使用SPH方法对复合材料层板进行建模的验证程序。研究从基线准静态测试开始,并将结果与​​可用的理论测试进行比较,以确保SPH内核功能在准静态负载下的稳定性和效率。然后,将开发的方法应用于CFRP的超高速冲击响应,并数值计算弹道极限,弹坑直径以及次级碎屑云,并将其与CFRP板上公布的HVI实验结果相关联。

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