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On Complexities of Impact Simulation of Fiber Reinforced Polymer Composites: A Simplified Modeling Framework

机译:纤维增强聚合物复合材料冲击模拟的复杂性:简化建模框架

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摘要

Impact modeling of fiber reinforced polymer composites is a complex and challenging task, in particular for practitioners with less experience in advanced coding and user-defined subroutines. Different numerical algorithms have been developed over the past decades for impact modeling of composites, yet a considerable gap often exists between predicted and experimental observations. In this paper, after a review of reported sources of complexities in impact modeling of fiber reinforced polymer composites, two simplified approaches are presented for fast simulation of out-of-plane impact response of these materials considering four main effects: (a) strain rate dependency of the mechanical properties, (b) difference between tensile and flexural bending responses, (c) delamination, and (d) the geometry of fixture (clamping conditions). In the first approach, it is shown that by applying correction factors to the quasistatic material properties, which are often readily available from material datasheets, the role of these four sources in modeling impact response of a given composite may be accounted for. As a result a rough estimation of the dynamic force response of the composite can be attained. To show the application of the approach, a twill woven polypropylene/glass reinforced thermoplastic composite laminate has been tested under 200 J impact energy and was modeled in Abaqus/Explicit via the built-in Hashin damage criteria. X-ray microtomography was used to investigate the presence of delamination inside the impacted sample. Finally, as a second and much simpler modeling approach it is shown that applying only a single correction factor over all material properties at once can still yield a reasonable prediction. Both advantages and limitations of the simplified modeling framework are addressed in the performed case study.
机译:纤维增强聚合物复合材料的冲击建模是一种复杂和具有挑战性的任务,特别是对于高级编码和用户定义的子程序较少的从业者。在过去几十年中已经开发了不同的数值算法,用于复合材料的影响建模,预测和实验观察中通常存在相当大的差距。本文在审查报告的纤维增强聚合物复合材料的影响模型中的复杂性源之后,提出了两种简化的方法,用于快速模拟这些材料的外平面冲击响应,考虑到四个主要影响:(a)应变率机械性能的依赖性,(b)拉伸弯曲弯曲响应(c)分层和(d)夹具的几何形状(夹紧条件)之间的差异。在第一方法中,示出了通过向Quasistatic材料特性施加校正因子,这通常可以从材料数据表中易获得,这四种源在给定复合材料的模拟响应中的作用可能会被占用。结果,可以获得复合材料的动态力响应的粗略估计。为了展示该方法的应用,斜纹织物聚丙烯/玻璃增强热塑性复合层压板已在200 j碰撞能量下进行了测试,并通过内置哈希岛损害标准在ABAQUS /明确建模。使用X射线显微镜映图来研究受冲击样品内的分层的存在。最后,作为第二和更简单的建模方法,示出了仅在所有材料属性上仅应用单个校正因子仍然可以产生合理的预测。在表达的案例研究中解决了简化建模框架的两个优点和局限性。

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