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Acta Metall Sin  2009, Vol. 45 Issue (5): 630-634    DOI:
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MICROSCOPIC PHASE–FIELD METHOD SIMULATION FOR THE IN SITU TRANSFORMATION OF L10 PHASE AND L12 PHASE STRUCTURE
MIAO Shufang 1; CHEN Zheng 1;2; WANG Yongxin 1; XU Cong 1; MA Rui 1; ZHANG Mingyi 1
1. School of Materials Science and Engineering; Northwestern Polytechnical University; Xi’an 710072
2. State Key Laboratory of Solidification Processing; Northwestern Polytechnical University; Xi’an 710072
Cite this article: 

MIAO Shufang CHEN Zheng WANG Yongxin XU Cong MA Rui ZHANG Mingyi. MICROSCOPIC PHASE–FIELD METHOD SIMULATION FOR THE IN SITU TRANSFORMATION OF L10 PHASE AND L12 PHASE STRUCTURE. Acta Metall Sin, 2009, 45(5): 630-634.

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Abstract  

As a Ni3Al precipitation strengthening alloy, Ni–Cr–Al alloy is one of typical structural materials applied in high temperatures. Much work has been done concerning its structure transformation from fcc to L12 during the process of ordering and phase separation. However, the study so far we know on the phase transformation in very early precipitation stage, especially on the phase transformation of unstable pre–precipitation phase, was not yet sufficient. Microscopic phase–filed method is used for describing the temporal and spatial evolution of atomic site in lattice. This method is employed to study the pre–precipitation during the structure transformation from fcc to L12 in Ni80Al13Cr7 alloy in this paper. The relationship between the occupation probability changes in Al and Cr atoms on (100) and (200) planes respectively and structure evolution of Ni3(Al, Cr) will be inveatigated. The simulation results demonstrate that at in very early aging stage, the composition order parameters of Al and Cr atoms keep unchange on both (100) and (200) planes. However their long range order parameters are equal in these two planes and gradually increase with aging time until
the first in situ transformation by congruent ordering at that time the L10 pre–precipitation phase with low long range order is formed. By prolonging aging time, their long range order parameters continue increase once they attain to the respective certain values, the composition order parameters and the long range order parameters of Al and Cr atoms on (100) plane become increasing rapidly but those on (200) plane decreasing quickly, The second in situ transformation occurs and the L10 is gradually
transformed into L12.

Key words:  microscopic phase–field method      in situ transformation      Ni80Al13Cr7 alloy      pre–precipitation phase     
Received:  25 September 2008     
ZTFLH: 

TG111

 
Fund: 

Supported by National Natural Science Foundation of China (Nos.50671084 and 50875217) and China Postdoctoral Science Foundation (No.20070420218)

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y2009/V45/I5/630

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