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Simulation of Low Velocity Impact Induced Inter- and Intra-Laminar Damage of Composite Beams Based on XFEM

机译:基于XFEM的XFEM探测低速冲击的低速冲击诱导复合梁的间隙和内部层内损坏

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摘要

In this paper, the Inter-Fiber Fracture (IFF) criterion of Puck failure theory based on the eXtended Finite Element Method (XFEM) was implemented in ABAQUS code to predict the intra-laminar crack initiation of unidirectional (UD) composite laminate. The transverse crack path in the matrix can be simulated accurately by the presented method. After the crack initiation, the propagation of the crack is simulated by Cohesive Zoom Model (CZM), in which the displacement discontinuities and stress concentration caused by matrix crack is introduced into the finite element (FE) model. Combined with the usage of the enriched element interface, which can be used to simulate the inter-laminar delamination crack, the Low Velocity Impact (LVI) induced damage of UD composite laminate beam with a typical stacking of composite laminates [0(5)/90(3)](S) is studied. A complete crack initiation and propagation process was simulated and the numerical results obtained by the XFEM are consistent with the experimental results.
机译:在本文中,基于扩展有限元方法(XFEM)的冰球衰竭理论(XFEM)的纤维间骨折(IFF)在ABAQUS码中实现,以预测单向(UD)复合层压板的层内裂纹引发。通过呈现的方法可以精确地模拟矩阵中的横裂隙路径。在裂纹启动之后,通过粘性变焦模型(CZM)模拟裂缝的传播,其中引入了由基质裂缝引起的位移不连续性和应力浓度被引入有限元(FE)模型中。结合富含元素界面的使用,可用于模拟层间分层裂纹,低速冲击(LVI)诱导UD复合层压梁的损伤,其具有典型的复合层压板[0(5)/研究了90(3)]。模拟完全裂纹启动和传播过程,XFEM获得的数值结果与实验结果一致。

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