镍铁合金中再结晶织构的演变:实验与模拟

IF 1.5 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Philosophical Magazine Pub Date : 2023-07-25 DOI:10.1080/14786435.2023.2238231
Gyan Shankar, S. Sanandiya, L. Barrales-Mora, S. Suwas
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引用次数: 0

摘要

摘要本研究旨在探讨固溶体对FCC材料再结晶组织和织构发展的影响。为了阐明织构形成的机制,研究了纯Ni和Ni-Fe(20%和40% wt.% Fe)合金。纯Ni合金在再结晶后呈现立方体织构和不均匀α-纤维织构,而Ni- fe合金则呈现旋转立方体织构、黄铜再结晶取向和不均匀α-纤维织构。在纯Ni的基础上添加Fe导致了再结晶织构的一些细微差异,这是由于合金化导致Ni-Fe体系中高度非均匀变形的微观组织的作用。然而,由于cu取向晶粒的变形区域相对较不均匀,在所有情况下,cu取向晶粒都倾向于早期再结晶,而取向为|| ND的变形晶粒则表现出缓慢的再结晶。在所有情况下,整个再结晶阶段主要是退火孪晶(Σ3)边界的形成。孪晶界的迁移率对再结晶织构的演化起着重要作用,而再结晶织构的演化又取决于孪晶界的相干性,即晶界面(K1)。研究了再结晶织构的演变机理以及不同变形特征在再结晶过程中的作用。采用元胞自动机模拟技术对合金的再结晶行为进行了模拟。模拟结果用于讨论实验观察结果。
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Evolution of recrystallization texture in nickel-iron alloys: experiments and simulations
ABSTRACT The present work is aimed at examining the effect of solid solution on the development of recrystallization microstructure and texture in FCC materials where SFE remains unchanged on alloying addition. To elucidate the mechanisms of texture formation during recrystallization, pure Ni and Ni-Fe (20 and 40 wt.% Fe) alloys were investigated. After recrystallization, pure Ni showed a cube and a non-uniform α-fibre texture, whereas the Ni-Fe alloys showed a texture characterised by the rotated cube component, brass recrystallization (BR) orientation, and a non-uniform α-fibre. Addition of Fe to pure Ni has led to some fine differences in the recrystallization texture that have been attributed to the role of highly heterogeneous deformed microstructure in the Ni-Fe system because of alloying. However, in all the cases Cu-oriented grains are prone to early recrystallization due to relatively more heterogeneously deformed regions, whereas deformed grains having orientation <110> || ND have shown slow recrystallization. In all cases, the entire stage of recrystallization is dominated by the formation of annealing twin (Σ3) boundary. The mobility of these twin boundaries plays an important role in the evolution of the recrystallization texture, which in turn, depends on its coherency, i.e. grain boundary plane (K1) of twin boundaries. The mechanism of evolution of recrystallization texture and the role of different deformation features during recrystallization is investigated. The cellular automata simulation technique was used to simulate the recrystallization behaviour of the alloys. The simulation results were used to discuss experimental observations.
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来源期刊
Philosophical Magazine
Philosophical Magazine 工程技术-材料科学:综合
自引率
0.00%
发文量
93
审稿时长
4.7 months
期刊介绍: The Editors of Philosophical Magazine consider for publication contributions describing original experimental and theoretical results, computational simulations and concepts relating to the structure and properties of condensed matter. The submission of papers on novel measurements, phases, phenomena, and new types of material is encouraged.
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