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Simulation of macrosegregation with mesosegregates in binary metallic casts by a meshless method

机译:用无网格方法模拟二元金属铸件中的中粒聚集体的宏观偏析

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Simulation of macrosegregation with mesosegregates as a consequence of solidification of a binary Sn-10%Pb alloy in a 2-dimensional rectangular cast is tackled in the present paper. Coupled volume averaged governing equations for mass, energy, momentum and species transfer are considered by incorporating Lever solidification rule and incompressible Newtonian fluid with Darcy limit in the mushy zone. Solid phase is assumed stationary. Double diffusive effects in the melt are modeled by the thermal and solutal Boussinesq hypothesis. The physical model is solved by the meshless Local Radial Basis Function Collocation Method (LRBFCM) by using 5-noded influence domains, multiquadrics radial basis functions and explicit time stepping. Pressure-velocity coupling is based on local pressure correction. Adaptive upwinding has to be used for stabilization of the convective terms. The numerical simulations reveal instabilities during solidification process that introduce anomalies in the final segregation map that scale with the typical cast as well as sub-cast dimensions. The main advantages of choosing the represented meshless approach for solving the problem are in its simplicity and similar coding in 2D and 3D, as well as straightforward applicability in non-uniform node arrangements. The locality of the proposed numerical approach is also convenient for parallel execution. It is demonstrated that LRBFCM can be advantageously used in casting simulations where the chemical segregation exhibits industrially relevant multi-scale patterns.
机译:本文研究了由于二维矩形铸件中二元Sn-10%Pb合金凝固而导致的具有中粒聚集体的宏观偏析模拟。通过在糊状区中结合杠杆凝固规律和达西极限的不可压缩牛顿流体,考虑了质量,能量,动量和物种转移的体积平均控制方程的耦合。固相被认为是静止的。熔体中的双重扩散效应可以通过热和溶液性Boussinesq假设进行建模。通过使用五节点影响域,多二次径向基函数和显式时间步长,通过无网格局部径向基函数配置方法(LRBFCM)求解物理模型。压力-速度耦合基于局部压力校正。必须使用自适应迎风来稳定对流项。数值模拟显示了凝固过程中的不稳定性,从而在最终的偏析图中引入了异常,该异常会随典型铸件和子铸件的尺寸而变化。选择代表性的无网格方法来解决该问题的主要优点在于其简单性以及2D和3D中的相似编码,以及在非均匀节点排列中的直接适用性。所提出的数值方法的局部性也便于并行执行。证明了LRBFCM可以有利地用于化学分离表现出工业相关的多尺度图形的铸造模拟中。

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