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Peridynamic modeling of elastic-plastic ductile fracture

机译:弹塑性韧性断裂的近期动力学建模

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A peridynamics-based framework is established for the elastic-plastic ductile fracture analysis. In this frame, a new state-based peridynamic elastic-plastic model is presented using the novel bond extension state forms of yield function and plastic flow rule. The nonlinear energy release rate is computed by the extended peridynamic finite crack extension (PFCE) method, and an energy dissipation rate-based bond failure criterion is proposed for ductile crack growth modeling. Numerical methods for plastic states update and yield function solution are also given. Then, examples of plates with a center hole or a center crack, and compact tension (CT) tests are analyzed by the proposed models, and compared to those from theoretical and FEM solutions. The results demonstrate that the proposed peridynamic models can well capture the characteristics of elasticplastic deformation and ductile fracture, including the plastic shape and size, energy distributions, nonlinear energy release rate, load-displacement and resistance curves, etc.
机译:建立了基于近动力学的弹塑性韧性断裂分析框架。该框架利用新型的键伸状态屈服函数形式和塑性流动规则,提出了一种新的基于状态的近动态弹塑性模型。采用扩展近动态有限裂纹扩展(PFCE)方法计算了非线性能量释放速率,并提出了一种基于能量耗散率的粘结破坏准则,用于韧性裂纹扩展建模。还给出了塑性状态更新的数值方法和屈服函数解。然后,通过所提出的模型分析了具有中心孔或中心裂纹的板的示例以及致密拉伸 (CT) 测试,并与理论和 FEM 解决方案进行了比较。结果表明,所提近动力学模型能够较好地捕捉弹性塑性变形和韧性断裂的特征,包括塑性形状和尺寸、能量分布、非线性能量释放速率、载荷位移和阻力曲线等。

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