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Simulation of thermos-solutal convection induced macrosegregation in a Sn-10Pb alloy benchmark during columnar solidification

机译:柱状凝固期间SN-10%PB合金基准中的热溶胶对流诱导致癌致癌的仿真

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In order to investigate the effect of thermo-solutal convection on the formation of macrosegregation during columnar solidification, simulations with a liquid-columnar two phase model were carried out on a 2D rectangular benchmark of Sn-10%Pb alloy. The solidification direction in the benchmark is unidirectional: (1) downwards from top to bottom or (2) upwards from bottom to top. Thermal expansion coefficient, solutal expansion coefficient and liquid diffusion coefficient of the melt are found to be key factors influencing the final macrosegregation. The segregation range and distribution are also strongly influenced by the benchmark configurations, e.g. the solidifying direction (upwards or downwards) and boundary conditions, et al. The global macrosegregation range increases with the velocity magnitude of the melt during the process of solidification.
机译:为了探讨热溶液对流对柱状凝固期间宏观聚焦形成的影响,对SN-10%PB合金的2D矩形基准进行了液柱两相模型的模拟。基准中的凝固方向是单向的:(1)从顶部到底部或(2)向上向上到底部到顶部。热膨胀系数,溶解的溶解系数和液体扩散系数被发现是影响最终宏指令的关键因素。分离范围和分配也受到基准配置的强烈影响,例如,凝固方向(向上或向下)和边界条件等。全局宏指令格范围随着凝固过程中熔体的速度大小而增加。

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