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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Investigation on Liquid Segregation during Rheo-Casting Process Based on Eulerian-Granular Multiphase Model
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Investigation on Liquid Segregation during Rheo-Casting Process Based on Eulerian-Granular Multiphase Model

机译:基于欧拉-颗粒多相模型的流变铸造过程中的液体偏析研究

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摘要

A crucial problem concerned with the semi-solid forming process is the liquid segregation phenomena during shape formation, especially for rheo-casting process. Liquid segregation occurs due to the separation phenomena of the solid grain and the liquid phase. In this work, using commercial finite element software, the liquid segregation during rheo-casting process was numerically investigated by Eulerian-granular multiphase model based on the comparable results of single phase model, Eulerian-granular two-phase and three-phase model, along with Eulerian-granular DDPM three-phase model. In the study, solid grains and liquid phases were regarded as rigid material and non-Newtonian fluid at microscale, separately. This validation was experimentally proved and also compared to the proposed relationship of power law, Herschel-Bulkley model with yield stress at macroscale.
机译:与半固态成形过程有关的一个关键问题是形状成形过程中的液体偏析现象,特别是对于流延铸造过程而言。由于固体颗粒和液相的分离现象而发生液体偏析。在这项工作中,使用商业有限元软件,基于单相模型,欧拉-颗粒两相和三相模型的可比结果,通过欧拉-颗粒多相模型数值研究了流变铸造过程中的液体偏析。欧拉-颗粒DDPM三相模型。在研究中,固体颗粒和液相在微观上分别被视为刚性材料和非牛顿流体。该验证已通过实验证明,并与拟定的幂律关系,Herschel-Bulkley模型与宏观屈服应力进行了比较。

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