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首页> 外文期刊>Journal of Materials Processing Technology >Meso-scale modelling of semi-solid deformation in aluminum foundry alloys: Effects of feeding and microstructure on hot tearing susceptibility
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Meso-scale modelling of semi-solid deformation in aluminum foundry alloys: Effects of feeding and microstructure on hot tearing susceptibility

机译:铝铸造合金半固体变形的中间尺度建模:饲养和微观结构对热撕裂敏感性的影响

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摘要

In the context of hot tearing susceptibility, the semi-solid constitutive behaviour of two commercially important foundry aluminum alloys at high solid fraction has been simulated. The numerical methodology combines solid mechanics, computational fluid dynamics, and microstructure modelling, Le a meso-scale multi-physics approach. Feedable and un-feedable domains with different microstructures including equiaxed globular, equiaxed dendritic, and combined dendritic and eutectic were developed. Considering that it is the combined effects of a lack of liquid feeding and limited semi-solid ductility that contribute to hot tearing formation, the effect of feeding and mechanical deformation are studied and discussed. The model demonstrates that the microstructure type and the eutectic formation also have a considerable effect on the liquid channels pressure drop and semisolid bulk stress and strain, and consequently on hot tearing.
机译:在热撕裂敏感性的背景下,已经模拟了高固体级分的两个商业上重要铸造铝合金的半固体本构型行为。 数值方法结合了固体力学,计算流体动力学和微观结构建模,Le一种中间规模的多物理方法。 开发了具有不同微观结构的可食用性和可直接的结构域,包括等轴球状,等轴的树突和组合的树突和共晶和共晶。 考虑到它是缺乏液体饲养和有限的半固体延性的综合影响,这些延展性有助于热撕裂形成,研究并讨论了饲养和机械变形的效果。 该模型表明,微观结构类型和共晶形成对液体通道压降和半固体散装应力和菌株具有相当大的影响,因此在热撕裂上。

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