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Free Solidification of Undercooled Eutectics

机译:过冷共晶的自由凝固

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The traditional eutectic solidification theories always stress the role of eutectic growth and morphology selection. However, when a eutectic alloy solidifies freely from an undercooled state, the first step commences from nucleation and then follows eutectic growth. This paper reviews the free solidification behavior of various undercooled eutectic alloys from the viewpoints of nucleation and growth. It is realized that an independent eutectic colony should be the basic unit when discussing eutectic solidification rather than a bulk sample, which urges us to re-examine the previous discussions and conclusions that were based on bulk solidification in which the role of nucleation was frequently ignored. Regarding to the eutectic growth after nucleation, particular emphasis is devoted to shedding light upon the physical mechanisms of the anomalous eutectic formation when the eutectic is undercooled beyond a certain critical undercooling. The interface attachment kinetics of terminal phases in a eutectic reaction is of great importance in yielding decoupled growth between a mobile interface and a sluggish interface. Further growth behavior after decoupled growth occurs is investigated when the effect of crystallization heat on solidification is considered. Future work is briefly directed to improve current understanding on the free solidification from undercooled states.
机译:传统的共晶凝固理论总是强调共晶生长和形态选择的作用。但是,当共晶合金从过冷状态自由固化时,第一步从成核开始,然后是共晶生长。本文从成核和生长的角度综述了各种过冷共晶合金的自由凝固行为。人们认识到,在讨论共晶凝固时,应以独立的共晶菌落为基本单位,而不是大量样品,这促使我们重新审视以前基于本体凝固的讨论和结论,在该讨论和结论中,成核作用经常被忽略。关于成核后的共晶生长,当共晶过冷超过一定的临界过冷时,特别着重说明异常共晶形成的物理机理。共晶反应中末端相的界面附着动力学对于在移动界面和缓慢的界面之间产生解耦的生长非常重要。当考虑结晶热对凝固的影响时,研究了发生解耦生长后的进一步生长行为。今后的工作将简短地引导人们改善当前对过冷状态下自由凝固的理解。

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