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Development of Phase Field Simulation for the Growth of Dendrite Structure of Al-Si Cast Alloy

机译:Al-Si铸造合金枝晶结构生长的相场模拟研究进展

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Micro to nano scale study of dendrite structure is important in order to have better properties control of casting product.The present study concerns on the morphological study of dendrite structure by phase-field simulation, in order to obtain the morphological growth of this structure that close its real morphology.Focus was given on the morphological growth of dendrite structure of Al-Si cast alloys, therefore thermodynamic data were taken for this type of materials.Anisotropy noise, strength of anisotropy and different undercooled conditions were applied as the variable parameters in the present works.It was observed that by introducing higher anisotropy noise, higher degree fragmentation of dendrite structure was obtained.Similar condition was obtained by introducing higher strength of anisotropy value, that higher degree of fragmentation was obtained.Both of these phenomena was also supported by the heat flux rate features of these variations that higher heat flux rate to almost all direction was obtained with the higher value of anisotropy noise and strength of anisotropy.In addition it was also observed that higher degree fragmentation of dendrite only possible to occur if sufficient undercooled condition established.
机译:为了更好地控制铸件的性能,从微观到纳米尺度研究枝晶结构是非常重要的。本研究涉及通过相场模拟对枝晶结构进行形态学研究,以期获得该组织的形态生长。重点研究了Al-Si铸造合金枝晶结构的形貌生长,因此获取了这类材料的热力学数据,并以各向异性噪声,各向异性强度和不同的过冷条件为参数。观察到,通过引入更高的各向异性噪声,可以获得更高程度的枝晶结构碎片化;通过引入更高的各向异性值强度可以获得相似的条件,从而获得更高程度的碎片化;这两种现象也得到了支持。这些变化的热通量特征使热通量几乎提高各向异性噪声的值和各向异性强度都较高,从而获得了所有方向。此外,还观察到,只有在充分的过冷条件下,枝晶才可能发生更高程度的碎裂。

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