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The criterion of planar instability in alloy solidification under varying conditions: A viewpoint from free energy

机译:不同条件下合金凝固的平面不稳定性判据——基于自由能的观点

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摘要

In alloy solidification, the transport processes of heat and solute result in morphological instability of the interface, forming different patterns of the solidification structure and determining the mechanical properties of components. As the first observable phenomenon of morphological instabilities, planar instability influences the subsequent stages significantly, deserving in-depth investigations. In this paper, the planar instability in alloy solidification under varying conditions is studied. First, the dynamical evolution of the planar instability is performed by the theoretical model and the phase-field model, respectively. Second, to represent the history-dependence of solidification, varying parameters are adopted in the simulations. Then, the criterion of planar instability under varying conditions is discussed. This paper considers that the critical parameters of planar instability are the excess free energy at the interface and the corresponding interfacial energy. Finally, to validate the criterion, comparisons between the phase-field and theoretical models are carried out, showing good consistency. Moreover, solidification processes with different preferred crystallographic orientations are performed, demonstrating the effect mechanism of the excess free energy and interfacial energy on planar instability. The idea of the interfacial energy influencing the planar instability could be applied to investigating other patterns induced by interfacial instability.
机译:在合金凝固中,热和溶质的传递过程导致界面的形貌不稳定,形成不同的凝固组织模式,决定了构件的力学性能。平面失稳性是形态不稳定现象,对后续阶段的影响显著,值得深入研究。本文研究了不同条件下合金凝固的平面失稳性。首先,分别通过理论模型和相场模型对平面失稳的动力学演化进行研究;其次,为了表示凝固的历史依赖性,在模拟中采用了不同的参数。然后,讨论了不同条件下平面失稳的判据。本文认为平面失稳的关键参数是界面处的过量自由能和相应的界面能。最后,为了验证该准则,对相场模型和理论模型进行了比较,显示出良好的一致性。此外,还进行了具有不同优选晶体取向的凝固过程,证明了过量自由能和界面能对平面失稳性的影响机制。界面能量影响平面失稳性的思想可以应用于研究界面失稳引起的其他模式。

著录项

  • 来源
    《Journal of Applied Physics》 |2023年第12期|125304-1-125304-11|共11页
  • 作者

    Yu Fengyi;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 应用物理学;
  • 关键词

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