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Multi-scale modelling of dynamic progressive failure in composite laminates subjected to low velocity impact

机译:低速冲击下复合材料层板动态渐进破坏的多尺度模拟

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This paper aims to investigate the structural mechanical responses and progressive damage behaviors of composite laminates subjected to low velocity impact. First, a three-dimensional multi-scale model based on micromechanics of failure (MMF) criterion with new damage evolution laws is introduced for intralaminar damage, which considers the different mechanical behaviors of the microscopic constituents for fiber and matrix. The macroscopic damage variables of the new damage evolution laws are directly evaluated by the degraded elastic parameters of the microscopic constituents calculated from representative volume elements (RVEs). Second, by using this multi-scale approach, the relationship between macroscopic stress and microscopic stress is established by stress amplification factors (SAFs) through the RVEs using ABAQUS-PYTHON scripting language. The proposed model is implemented by the user-defined material subroutine VUMAT built on ABAQUS/Explicit platform, and the bilinear cohesive model in ABAQUS is employed to capture the onset and progression of interlaminar delamination. Finally, impact numerical simulation for the impact force-time/central displacement curves and energy dissipation is performed on three composite laminates with different layup patterns. Relatively good agreements are achieved between the experimental and numerical results, which validates the effectiveness of the multi-scale model.
机译:本文旨在研究复合材料层合板在低速冲击下的结构力学响应和渐进式破坏行为。首先,针对层内损伤引入了基于失效微力学(MMF)准则并具有新的损伤演化规律的三维多尺度模型,该模型考虑了纤维和基体的微观成分的不同力学行为。通过从代表性体积元素(RVE)计算的微观成分的退化弹性参数,可以直接评估新损伤演化规律的宏观损伤变量。其次,通过使用这种多尺度方法,使用ABAQUS-PYTHON脚本语言通过RVE通过应力放大因子(SAF)建立了宏观应力与微观应力之间的关系。该模型由用户定义的基于ABAQUS / Explicit平台的材料子程序VUMAT实现,并使用ABAQUS中的双线性内聚模型捕获层间分层的发生和进展。最后,对三种具有不同叠置方式的复合材料层压板进行了冲击力-时间/中心位移曲线和能量耗散的冲击数值模拟。实验结果和数值结果之间取得了较好的一致性,这验证了多尺度模型的有效性。

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