Microscopic Phase-field Simulation for the Influence of Aging Process on the Precipitation Process of Ni75Al15Ti10 Alloy

IF 0.6 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY 稀有金属材料与工程 Pub Date : 2018-10-01 DOI:10.1016/S1875-5372(18)30224-8
Sun Yuanyang, Zhao Yuhong, Hou Hua, Zheng Xiaojuan, Guo Huijun
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引用次数: 3

Abstract

The precipitation process of Ni75Al15Ti10 alloy was simulated by a microscopic phase-field kinetics model. The microscopic morphology evolution was studied, which indicates that the precipitation process can be divided into two stages: the first is the transformation from L10 phase to L12 phase, and the second is the formation of the stoichiometric L12 phase. The effect of single aging temperature on the microstructure, atomic occupation probability and atomic diffusion was investigated. The result shows that the shape of γ′ precipitates transforms from irregular shape to regular cuboid and the degree of orientation growth increases with increasing aging temperature. But the higher the aging temperature, the lower the occupation probability and the order degree. Meanwhile, the path of diffusion of Al atom is from the interface of the γ′ phase to the internal, and the diffusion of Ti atom is the opposite. Furthermore, we studied the dual aging to improve occupation probability of γ′ precipitates and to discuss their influence on the γ′ phase. Dual aging can not only obtain a stable γ′ phase with regular shape, but also increase the occupation probability of Al and Ti and inhibit the formation of anti-site defects.

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时效过程对Ni75Al15Ti10合金析出过程影响的显微相场模拟
采用微观相场动力学模型模拟了Ni75Al15Ti10合金的析出过程。微观形貌演化研究表明,沉淀过程可分为两个阶段:第一个阶段是L10相向L12相转变,第二个阶段是L12相的形成。研究了单一时效温度对合金显微组织、原子占据概率和原子扩散的影响。结果表明:随着时效温度的升高,γ′析出相由不规则形状转变为规则长方体,取向生长程度增大;但时效温度越高,占据概率和有序度越低。同时,Al原子的扩散路径是从γ′相界面向内部扩散,而Ti原子的扩散路径则相反。此外,我们还研究了双重时效以提高γ′相的占据概率,并讨论了它们对γ′相的影响。双重时效不仅可以获得形状规则的稳定γ′相,还可以增加Al和Ti的占据概率,抑制反位缺陷的形成。
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来源期刊
稀有金属材料与工程
稀有金属材料与工程 工程技术-材料科学:综合
CiteScore
1.30
自引率
57.10%
发文量
17973
审稿时长
4.2 months
期刊介绍:
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