首页> 外文会议>International Conference on Cellular Automata for Research and Industry(ACRI 2004); 20041025-27; Amsterdam(NL) >Plastic Deformation Development in Polycrystals Based on the Cellular Automata and Relaxation Element Method
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Plastic Deformation Development in Polycrystals Based on the Cellular Automata and Relaxation Element Method

机译:基于细胞自动机和松弛元方法的多晶体塑性变形发展

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Based on the Relaxation Element Method, the propagation of zones of localized plastic deformation in a polycrystal under loading has been simulated within the framework of continuum mechanics. The model can be referred to the class of geometrical models, known as cellular automata. Plastic deformation is considered to occur under the action of differently scaled stress concentrators. A plastically deformed grain acts as a stress concentrator at the mesoscale level. The involvement of a cell into plastic deformation was determined by the value of the critical shear stress in the cell center along the slip system. This approach allows to analyze the number and interaction of slip systems and accounts for work-hardening on the patterns of the propagation of the bands of localized plastic deformation in aluminum polycrystals.
机译:基于松弛元方法,在连续力学的框架内模拟了载荷作用下多晶中塑性变形区域的传播。可以将模型称为几何模型的类别,称为细胞自动机。塑性变形被认为是在不同比例的应力集中器的作用下发生的。塑性变形的晶粒在中尺度水平上充当应力集中器。单元参与塑性变形的过程由沿滑动系统的单元中心的临界切应力值确定。这种方法可以分析滑移系统的数量和相互作用,并且可以对铝多晶中局部塑性变形带的传播模式进行加工硬化。

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