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Effects of initial undercooling on microstructure formation and recrystallisation of undercooled melts

机译:初始过冷对过冷熔体微观结构形成和重结晶的影响

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摘要

The critical undercoolings for the two grain refinement events and the onset of recrystallisation event are determined by detailed analysis of the microstructure evolution of bulk undercooled Ni-20at.-%Cu alloy melts. The first grain refinement event occurred in the low undercooling range was explained by dendrite remelting. The second grain refinement event occurred in the high undercooling range was due to the combined effects of dendrite remelting stress-induced dendrite breakup during recalescence and recrystallisation during the near-equilibrium solidification stage after recalescence. The micro-stress induced by the solidification contraction during recalescence in the so called 'first mushy zone' would lead to distortion and breakup of primary dendrites. The stress-induced broken-up dendrites have sufficient driving force for recrystallisation.
机译:通过对散装过冷的Ni-20at的微观结构演变的详细分析来确定两个谷物细化事件和重结晶事件的临界过冷。 - %Cu合金熔体。 通过树突重熔断解释了低过冷范围内的第一晶粒细化事件。 在高过冷范围内发生的第二颗粒细化事件是由于枝晶重熔应应力诱导的枝晶突出在结次复次近平衡凝固阶段期间的结晶和重结晶期间的结晶作用。 在所谓的“第一个糊状区”中,通过凝固收缩诱导的微应力导致原代树枝状的失真和分析。 应力诱导的断裂枝晶具有足够的驱动力以进行重结晶。

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