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Numerical simulation of mechanical deformation of semi-solid material using a level-set based finite element method

机译:基于水平集合的有限元法测定半固体材料机械变形的数值模拟

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In this work, a level-set based finite element method was used to numerically evaluate the mechanical behavior in a small deformation range of semi-solid materials with different microstructure configurations. For this purpose, a finite element model of the semi-solid phase was built based on Voronoi diagram. Interfaces between the solid and the liquid phases were implicitly described by level-set functions coupled to an anisotropic meshing technique. The liquid phase was considered as a Newtonian fluid, whereas the behavior of the solid phase was described by a viscoplastic law. Simulations were performed to study the effect of different parameters such as solid phase fraction and solid bridging. Results show that the macroscopic mechanical behavior of semisolid material strongly depends on the solid fraction and the local microstructure which play important roles in the formation of hot tearing. These results could provide valuable information for the processing of semi-solid materials.
机译:在这项工作中,基于水平集的有限元方法用于数值评估具有不同微观结构配置的半固体材料的小变形范围中的机械行为。为此目的,基于Voronoi图构建了半固相的有限元模型。通过耦合到各向异性网型技术的水平集功能隐式描述固体和液相之间的界面。液相被认为是牛顿液,而固相的行为由粘胶法描述。进行仿真以研究不同参数,如固相级分和固体桥接的影响。结果表明,半固体材料的宏观力学行为强烈取决于固体级分和局部微观结构,在形成热撕裂中起重要作用。这些结果可以为半固体材料加工提供有价值的信息。

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