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Effect of Substructure Characteristics on the Dislocation Annihilation Process during Post-Deformation Annealing

机译:后结构特征对变形退火后脱位湮灭过程的影响

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Two distinct substructures were produced in a Ni-30Fe austenitic model alloy by different thermomechanical processing routes. The first substructure largely displayed organized, banded subgrain arrangements with alternating misorientations, resulting from the deformation at a strain just before the initiation of dynamic recrystallization (DRX). By contrast, the second substructure was more random in character and exhibited complex subgrain/cell arrangements characterized by local accumulation of misorientations, formed through DRX. During the post-deformation annealing, the latter substructure revealed a rapid disintegration of dislocation boundaries leading to the formation of dislocation-free grains within a short holding time, though the former largely preserved its characteristics till becoming replaced by growing statically recrystallized grains.
机译:通过不同的热机械加工途径在Ni-30Fe奥氏体模型合金中生产了两个不同的子结构。第一次结构主要显示有组织的带状粒子布置,其具有交替的错误化,这是由于在动态再结晶(DRX)开始之前的菌株处的变形。相反,第二个子结构在特征中更随机,并且表现出通过DRX形成的局部积累的复杂子粒/细胞布置。在后变形退火期间,后后亚结构揭示了脱位界限的快速崩解,导致在短剩余剩余时间内形成不失数的颗粒,尽管前者在很大程度上保留了其特征,直到通过生长静态再结晶颗粒而被取代。

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