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Reduced order multiscale modeling of fiber reinforced polymer composites including plasticity and damage

机译:纤维增强聚合物复合材料的降阶多尺度建模,包括可塑性和损伤

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摘要

A multiscale procedure based on asymptotic expansion homogenization (AEH) technique is formulated to study the inelastic deformations and damage of fiber reinforced polymer composite materials (FRP). FRPs show significant inelastic deformation and local phase damage before the ultimate failure point and capturing these accurately using AEH is an active research area. The complex implementation and high computational cost of AEH when used in multiscaling can be alleviated by the reduced order techniques proposed by Oskay and Fish (2007). In the present work, the reduced order AEH formulation is extended to capture the plasticity and damage in the matrix. The initial studies are performed for representative volume element (RVE) which show the behavior as expected. This new formulation is applied to study the low velocity impact of composites. The results (force-time curves and extent of damage) are validated with experiments. The model is successfully able to capture the deflection at various points on the laminate plate and permanent indentation on the surface. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种基于渐近膨胀均质化(AEH)技术的多尺度程序,以研究纤维增强聚合物复合材料(FRP)的非弹性变形和损伤。 FRP在最终破坏点之前显示出显着的非弹性变形和局部相破坏,并使用AEH准确捕获这些是一个活跃的研究领域。当用于多尺度时,AEH的复杂实现和高计算成本可以通过Oskay和Fish(2007)提出的降阶技术来缓解。在目前的工作中,降阶的AEH配方被扩展以捕获基质中的可塑性和损伤。对具有代表性的行为元素(RVE)进行了初步研究,该行为显示了预期的行为。该新配方可用于研究复合材料的低速冲击。结果(力-时间曲线和破坏程度)通过实验验证。该模型能够成功捕获层压板上各个点的挠度以及表面上的永久性压痕。 (C)2017 Elsevier Ltd.保留所有权利。

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