首页> 外文会议>8th International conference on semi-solid processing (S2P) of alloys and composites >A 2-PHASE FINITE ELEMENT MODEL TO STUDY CONCURRENTFLUID FLOW AND SOLID DEFORMATION OCCURRING IN MUSHYZONES DURING THE SOLIDIFICATION OF METALLIC ALLOYS
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A 2-PHASE FINITE ELEMENT MODEL TO STUDY CONCURRENTFLUID FLOW AND SOLID DEFORMATION OCCURRING IN MUSHYZONES DURING THE SOLIDIFICATION OF METALLIC ALLOYS

机译:两相有限元模型,用于研究金属合金凝固过程中混相区中当前的流体流动和固体变形的发生

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As an approach towards a better modelling of solidification problems, we present the basic assumptions and implementation of a thermo-mechanical two-phase model that considers the solidifying alloy as a binary mixture made of a liquid and a solid phase. Macroscopic mass and momentum balances are obtained considering that, at the microscopic level, the liquid is Newtonian whereas the solid is a power law fluid. Assuming local thermal equilibrium, a single equation for the conservation of the mixture energy is then written. The numerical implementation in a 2D finite element code is then detailed. Lastly, some examples of isothermal simulations of academic tests and application examples are discussed. They particularly enlighten the ability of the formulation to describe the mixture evolution over the whole solidification interval.
机译:作为更好地建模凝固问题的一种方法,我们介绍了热机械两相模型的基本假设和实现,该模型将凝固合金视为由液相和固相组成的二元混合物。考虑到微观水平上的液体是牛顿而固体是幂律流体,因此获得了宏观质量和动量平衡。假设局部热平衡,则可以写出一个守恒混合能量的方程。然后详细说明了二维有限元代码中的数值实现。最后,讨论了学术测试的等温模拟的一些示例和应用示例。它们特别启发了制剂描述整个固化间隔内混合物演变的能力。

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