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Acta Metall Sin  2009, Vol. 45 Issue (5): 635-640    DOI:
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A MICROSCOPIC PHASE–FIELD STUDY FOR THE INFLUENCE OF ORDERING ENERGY ON Cr SUBSTITUTION BEHAVIOR IN Ni75Al15Cr10 ALLOY
ZHAO Yan 1; CHEN Zheng 1;2; WANG Yongxin 1; HUO Jinliang 1; ZHANG Lipeng 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: 

ZHAO Yan CHEN Zheng WANG Yongxin HUO Jinliang ZHANG Lipeng ZHANG Mingyi . A MICROSCOPIC PHASE–FIELD STUDY FOR THE INFLUENCE OF ORDERING ENERGY ON Cr SUBSTITUTION BEHAVIOR IN Ni75Al15Cr10 ALLOY. Acta Metall Sin, 2009, 45(5): 635-640.

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Abstract  

The microscopic phase–field model based on long range order (LRO) method was proposed to study Cr substitution behavior in Ni75Al15Cr10 alloy aged at 1073 K. This has been demonstrated by short range order (SRO) methods and experiments such as pseudo–potential, Monte Carlo method and Rutherford back scattering analysis (RBS). Adding ±4 meV to the ordering energy of Ni–Al, Ni–Cr and Al–Cr in 1st—4th nearest–neighborhoods is used to describe the influence of potential field on substitution. On the analysis of atomic images, the order parameters and Cr occupation probabilities, results show that there are coexisted Ni–Al anti–site and Cr substitution for Ni and Al in L12 ordered phase, and Cr substitution occurs much more often than Ni–Al anti–site. As the ordering energies of Ni–Al and Ni–Cr in 1st and 3rd nearest–neighborhoods increase, there is a more increasing tendency of substitution of Cr for Al than for Ni. For the 2nd and 4th nearest–neighborhoods, the
ordering energy makes the tendency of substitution of Cr for Ni increase. Otherwise, with the 1st and 3rd nearest–neighborhoods ordering energies of Al–Cr increasing, the tendency of substitution of Cr increases for Ni but decreases for Al, which is opposite to the cases for the 2nd and 4th nearest–neighborhoods.

Key words:  ordering energy      Ni75Al15Cr10 alloy      microscopic phase–field      substitute behavior     
Received:  14 January 2008     
ZTFLH: 

TG111.5

 
Fund: 

Supported by National Natural Science Foundation of China (No.50671084) and Natural Science Foundation of Shannxi Province

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y2009/V45/I5/635

[1] Rawling R D, Staton–Bevan A. Mater Sci, 1975; 10: 505
[2] Karg A V, Fornwalt D E, Kriege O H. Inst Met, 1971; 99:301
[3] Bohn H G, Vianden R J. In: Stoloff N S, Koch C C, Liu C T, Izumi O eds., High–Temperatrue Ordered Intermetallic Alloys II, Pittsburgh: MRS Symp, 1987: 123
[4] Miller M K, Horton J. In: Stoloff N S, Koch C C, Liu C T, Izumi O eds., High–Temperatrue Ordered Intermetallic Alloys II, Pittsburgh: MRS Symp, 1987: 117
[5] Bohn H G, Williams J M, Barret J H, Liu C T. In: Stoloff N S, Koch C C, Liu C T, Izumi O eds., High–Temperatrue Ordered Intermetallic Alloys II, Pittsburgh: MRS Symp,
1987: 127
[6] Saito Y. Mater Sci Eng, 1997; A223: 10
[7] Mekhrabov A O, Vdeniz M V, Arer M M. Acta Mater, 1997; 45: 1077
[8] Chu Z, Chen Z, Wang Y X, Lu Y L, Li Y S. Chim Phys Lett, 2005; 8: 1841
[9] Poduri R, Chen L Q. Acta Mater, 1998; 46: 1719
[10] Poduri R, Chen L Q. Acta Mater, 1997; 45: 245
[11] Lu Y L, Chen Z, Li Y S, Wang Y X. Acta Metall Sin, 2007; 43: 291
(卢艳丽, 陈铮,  李永胜, 王永欣. 金属学报, 2007; 43: 291)
[12] Miyazaki T, Koyama T, Kozakai T. Mater Sci Eng, 2001; A312: 38
[13] Caudron R, Barrachin, Finnel M Y. Physica, 1992; 2B: 1145
[14] Chen L Q, Simmons J A. Acta Metall Mater, 1994; 42: 2943
[15] Pareige C, Soisson F, Martin G, Blavette D. Acta Mater, 1999; 6: 1889
[16] Wu Y P, Tso N C, Sanchez J M, Tien J K. Acta Metall, 1989; 37: 2835

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