首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Nonequilibrium Solidification, Grain Refinements, and Recrystallization of Deeply Undercooled Ni-20 At. Pct Cu Alloys: Effects of Remelting and Stress
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Nonequilibrium Solidification, Grain Refinements, and Recrystallization of Deeply Undercooled Ni-20 At. Pct Cu Alloys: Effects of Remelting and Stress

机译:非凝固凝固,晶粒细化,并在深过冷却Ni-20的重结晶。 PCT Cu合金:重熔和压力的影响

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摘要

Grain refinement phenomena during the microstructural evolution upon nonequilibrium solidification of deeply undercooled Ni-20 at. pct Cu melts were systematically investigated. The dendrite growth in the bulk undercooled melts was captured by a high-speed camera. The first kind of grain refinement occurring in the low undercooling regimes was explained by a current grain refinement model. Besides, for the dendrite melting mechanism, the stress originating from the solidification contraction and thermal strain in the FMZ during rapid solidification could be a main mechanism causing the second kind of grain refinement above the critical undercooling. This internal stress led to the distortion and breakup of the primary dendrites and was semiquantitatively described by a corrected stress accumulation model. It was found that the stress-induced recrystallization could make the primary microstructures refine substantially after recalescence. A new method, i.e., rapidly quenching the deeply undercooled alloy melts before recalescence, was developed in the present work to produce crystalline alloys, which were still in the cold-worked state and, thus, had the driven force for recrystallization.
机译:晶粒细纹凝固过程中的晶粒细化现象在深度过冷Ni-20中的凝固过程中。系统地研究了PCT Cu熔体。通过高速摄像头捕获散装过冷熔体中的枝晶生长。在低过冷制度中发生的第一种谷物细化是通过当前晶粒细化模型解释的。此外,对于树突熔化机理,在快速凝固过程中,源自FMZ中的凝固收缩和热应变的应力可能是导致第二种晶粒细化的主要机制,以上临界过冷。这种内部应力导致主树突的失真和分解,并通过校正的应力累积模型来半化描述。发现应激诱导的重结晶可以使初级微观结构基本上在结次复制后细化。一种新方法,即快速淬火在复次结上前渗透的深冷熔化,在本作工作中开发,以产生仍处于冷水状态的结晶合金,因此具有用于重结晶的驱动力。

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