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Ni-Al-V合金DO22相間有序疇界面的微觀相場模擬
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國家自然科學基金項目(50071046);陜西省自然科學基金項目(2003E106)資助


Simulation of Ordered Domain Interfaces Formed between DO22 Phases in Ni-Al-V Alloy Using Microscopic Phase-Field Model
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    摘要:

    利用微觀相場動力學模型模擬Ni-Al-V合金沉淀過程中DO22 (Ni3V)相沿[100]和[001]方向形成的有序疇界面,對界面結構及其界面處合金元素的成分進行了研究。結果表明:DO22相沿[100]和[001]方向形成3種穩(wěn)定界面,且都不可以遷移;界面性質與界面結構有關,(002)//(100)界面處易析出L12相,主要存在于沉淀早期;(002)//(100)·?[100]界面在沉淀后期易形成一種過渡界面;{110}孿晶界面則是三類界面中相對常見和穩(wěn)定的界面;合金元素在不同的界面處有不同的偏聚和貧化傾

    Abstract:

    Microscopic phase-field model was used to simulate the ordered domain interfaces formed between DO22 (Ni3V) phases along [100] and [001] direction in Ni-Al-V alloy. The atomic structure of the interface and the composition of alloying elements at the interfaces were investigated using the occupation probability of atoms. The results show that there are three kinds of stable interfaces formed between DO22 phases (Ni3V) along [100] and [001] direction, and all of them can not migrate. The property of interfaces is related to the atomic structure of interfaces. The L12 phases are precipitated at the (002)//(100) interfaces easily, and this kind of interfaces mainly exist at the early period of precipitation, the (002)//(100)·?[100] interface can form a kind of transitional interface at the early period of precipitation, while the {110} twin interface is the most stable and usual interface of the three kinds of interfaces. The elements of alloy have different preferences of segregation and depletion at different boundaries, V is depleted but Ni is segregated at all interfaces; Al is depleted at the (002)//(100)·?[100] interface but segregated at the other interfaces. The degrees of segregation and depletion are different at different interfaces.

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張明義,王永欣,陳 錚,董衛(wèi)平,來慶波,張利鵬. Ni-Al-V合金DO22相間有序疇界面的微觀相場模擬[J].稀有金屬材料與工程,2009,38(6):962~966.[Zhang Mingyi, Wang Yongxin, Chen Zheng, Dong Weiping, Lai Qingbo, Zhang Lipeng. Simulation of Ordered Domain Interfaces Formed between DO22 Phases in Ni-Al-V Alloy Using Microscopic Phase-Field Model[J]. Rare Metal Materials and Engineering,2009,38(6):962~966.]
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  • 收稿日期:2008-08-29
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