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Computational model for predicting nonlinear viscoelastic damage evolution in materials subjected to dynamic loading

机译:预测非线性粘弹性损伤演化的计算模型 在受动态加载的材料中

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摘要

Many inelastic solids accumulate numerous cracks before failure due to impact loading, thus rendering any exact solution of the IBVP untenable. It is therefore useful to construct computational models that can accurately predict the evolution of damage during actual impact/dynamic events in order to develop design tools for assessing performance characteristics. This paper presents a computational model for predicting the evolution of cracking in structures subjected to dynamic loading. Fracture is modeled via a nonlinear viscoelastic cohesive zone model. Two example problems are shown: one for model validation through comparison with a one-dimensional analytical solution for dynamic viscoelastic debonding, and the other demonstrates the applicability of the approach to model dynamic fracture propagation in the double cantilever beam test with a viscoelastic cohesive zone.
机译:由于冲击载荷,许多非弹性固体在破坏前会积累许多裂纹,因此使IBVP的任何精确解决方案变得站不住脚。因此,构建能够准确预测实际冲击/动态事件过程中损伤演变的计算模型,以开发用于评估性能特征的设计工具非常有用。本文提出了一种计算模型,用于预测结构在动态载荷作用下的开裂发展。通过非线性粘弹性内聚区模型对断裂进行建模。展示了两个示例问题:一个是通过与一维动态粘弹性剥离的解析解决方案进行比较来进行模型验证的,另一个演示了该方法在具有粘弹性内聚区的双悬臂梁测试中模拟动态裂缝扩展的方法的适用性。

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