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Degenerate seaweed to tilted dendrite transition and their growth dynamics in directional solidification of non-axially oriented crystals: a phase-field study

机译:退化海藻到倾斜枝晶转变及其在非轴向取向晶体定向凝固中的生长动力学:一个相场研究

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摘要

We report the results of a phase-field study of degenerate seaweed to tilted dendrite transition and their growth dynamics during directional solidification of a binary alloy. Morphological selection maps in the planes of (G, Vp) and (ε4, Vp) show that lower pulling velocity, weaker anisotropic strength and higher thermal gradient can enhance the formation of the degenerate seaweed. The tip undercooling shows oscillations in seaweed growth, but it keeps at a constant value in dendritic growth. The M-S instability on the tips and the surface tension anisotropy of the solid-liquid interface are responsible for the formation of the degenerate seaweed. It is evidenced that the place where the interfacial instability occurs determines the morphological transition. The transient transition from degenerate seaweed to tilted dendrite shows that dendrites are dynamically preferred over seaweed. For the tilted dendritic arrays with a large tilted angle, primary spacing is investigated by comparing predicted results with the classical scaling power law, and the growth direction is found to be less sensitive to the pulling velocity and the primary spacing. Furthermore, the effect of the initial interface wavelength on the morphological transition is investigated to perform the history dependence of morphological selection.
机译:我们报告了退化的海藻向倾斜的枝晶转变的相场研究的结果,以及在二元合金定向凝固过程中其生长动力学。 (G,Vp)和(ε4,Vp)平面中的形态选择图表明,较低的牵引速度,较弱的各向异性强度和较高的热梯度可以促进简并海藻的形成。尖端过冷显示海藻生长出现振荡,但在树突状生长中保持恒定。尖端的M-S不稳定性和固液界面的表面张力各向异性是导致简并海藻形成的原因。有证据表明,界面不稳定性发生的位置决定了形态转变。从退化的海藻到倾斜的树枝状晶体的过渡转变表明,树枝状晶体在动态上优于海藻。对于具有大倾斜角的倾斜树状阵列,通过将预测结果与经典缩放幂律进行比较来研究主要间距,并且发现生长方向对拉速和主要间距不太敏感。此外,研究了初始界面波长对形态转变的影响,以执行形态选择的历史依赖性。

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