首页> 外文会议>International Conference on Fracture >APPLICATION OF A GRADIENT DUCTILE DAMAGE MODEL TO METAL FORMING PROCESSES INCLUDING CRACK PROPAGATION AND MESH ADAPTIVITY
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APPLICATION OF A GRADIENT DUCTILE DAMAGE MODEL TO METAL FORMING PROCESSES INCLUDING CRACK PROPAGATION AND MESH ADAPTIVITY

机译:梯度韧性损伤模型在金属成形过程中的应用,包括裂纹传播和网眼适应性

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The entire process of ductile failure is modelled, from the initiation of damage to crack propagation. The microscopic material degradation mechanisms which trigger cracks are modelled by a softening elastoplastic behaviour. Mesh objectivity and length scale effects are accounted for by a gradient enhancement. The two governing partial differential equations, i.e. equilibrium and a nonlocal averaging equation, are solved in a staggered manner, which renders a very simple implementation in existing finite element codes. Adaptive remeshing is used to optimise the use of finite elements, so that finer elements are used in the regions of high strain localisation. Upon complete material failure cracks are introduced via remeshing. A number of metal forming simulations are shown which illustrate the main model features.
机译:延性衰竭的整个过程是模拟的,从裂缝传播的损伤开始。触发裂纹的微观材料劣化机构通过软化弹塑性行为进行建模。网格客观性和长度缩放效果是通过梯度增强来计算的。两个控制部分微分方程,即平衡和非局部平均方程以交错方式解决,其在现有的有限元代码中呈现非常简单的实现。自适应Remeshing用于优化有限元的使用,从而在高应变定位区域中使用更精细的元件。完全材料故障裂缝通过倒闭引入。示出了许多金属成型模拟,其示出了主要模型特征。

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