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Development of a formalism of movable cellular automaton method for numerical modeling of fracture of heterogeneous elastic-plastic materials

机译:可移动元胞自动机方法形式化用于异质弹塑性材料断裂数值模拟的发展

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A general approach to realization of models of elasticity, plasticity and fracture of heterogeneousmaterials within the framework of particle-based numerical methods is proposed in the paper. It is based onbuilding many-body forces of particle interaction, which provide response of particle ensemble correctlyconforming to the response (including elastic-plastic behavior and fracture) of simulated solids. Implementationof proposed approach within particle-based methods is demonstrated by the example of the movable cellularautomaton (MCA) method, which integrates the possibilities of particle-based discrete element method (DEM)and cellular automaton methods. Emergent advantages of the developed approach to formulation of manybodyinteraction are discussed. Main of them are its applicability to various realizations of the concept ofdiscrete elements and a possibility to realize various rheological models (including elastic-plastic or visco-elasticplastic)and models of fracture to study deformation and fracture of solid-phase materials and media.Capabilities of particle-based modeling of heterogeneous solids are demonstrated by the problem of simulationof deformation and fracture of particle-reinforced metal-ceramic composites.
机译:本文提出了一种在基于粒子的数值方法框架内实现异质材料弹性,塑性和断裂模型的通用方法。它基于建立粒子相互作用的多体力,从而正确地提供粒子集合的响应,以符合模拟固体的响应(包括弹塑性行为和断裂)。通过可移动细胞自动机(MCA)方法的实例演示了在基于粒子的方法中提出的方法的实现,该方法将基于粒子的离散元素方法(DEM)和细胞自动机方法的可能性进行了整合。讨论了开发多体互动方法的新兴优势。其中主要是它适用于离散元素概念的各种实现,以及实现各种流变模型(包括弹塑性或粘弹塑性)和断裂模型以研究固相材料和介质的变形和断裂的可能性。通过模拟颗粒增强金属陶瓷复合材料的变形和断裂问题,证明了基于颗粒的异质固体建模方法的有效性。

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