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Modeling Progressive Damage Using Local Displacement Discontinuities Within the FEAMAC Multiscale Modeling Framework

机译:在FEAMAC多尺度建模框架内使用局部位移不连续性对渐进性损伤进行建模

摘要

A method for performing progressive damage modeling in composite materials and structures based on continuum level interfacial displacement discontinuities is presented. The proposed method enables the exponential evolution of the interfacial compliance, resulting in unloading of the tractions at the interface after delamination or failure occurs. In this paper, the proposed continuum displacement discontinuity model has been used to simulate failure within both isotropic and orthotropic materials efficiently and to explore the possibility of predicting the crack path, therein. Simulation results obtained from Mode-I and Mode-II fracture compare the proposed approach with the cohesive element approach and Virtual Crack Closure Techniques (VCCT) available within the ABAQUS (ABAQUS, Inc.) finite element software. Furthermore, an eccentrically loaded 3-point bend test has been simulated with the displacement discontinuity model, and the resulting crack path prediction has been compared with a prediction based on the extended finite element model (XFEM) approach.
机译:提出了一种基于连续水平界面位移不连续性在复合材料和结构中进行渐进式损伤建模的方法。所提出的方法使界面顺应性呈指数级增长,从而在分层或失效发生后导致界面处的牵引力卸载。在本文中,所提出的连续位移不连续性模型已被用于有效地模拟各向同性和正交异性材料内的破坏,并探索其中预测裂纹路径的可能性。从模式I和模式II断裂获得的模拟结果将提出的方法与ABAQUS(ABAQUS,Inc.)有限元软件中可用的内聚单元方法和虚拟裂纹闭合技术(VCCT)进行了比较。此外,已经用位移不连续模型模拟了偏心加载的三点弯曲试验,并将得到的裂纹路径预测与基于扩展有限元模型(XFEM)方法的预测进行了比较。

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