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Acta Metall Sin  2013, Vol. 49 Issue (1): 58-62    DOI: 10.3724/SP.J.1037.2012.00569
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RESEARCH ON DIVERGED BI-CRYSTAL COMPETITIVE GROWTH IN DIRECTIONAL SOLIDIFICATION
YU Honglei,LIN Xin, LI Junjie, WANG Lilin, HUANG Weidong
State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an 710072
Cite this article: 

YU Honglei,LIN Xin, LI Junjie, WANG Lilin, HUANG Weidong. RESEARCH ON DIVERGED BI-CRYSTAL COMPETITIVE GROWTH IN DIRECTIONAL SOLIDIFICATION. Acta Metall Sin, 2013, 49(1): 58-62.

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Abstract  

Grain selection in directional solidification is a fundamental process in single-crystal super alloy production. In fact, many factors can influence this process. This work only focuses on the effect of pulling rates on competitive divergence in directional solidification. The competitive growth of bi-crystal atdifferent pulling rates was observed during 2D directional solidification using the transparent model alloy SCN-1.7%Eth (mass fraction). The results show that as the pulling rate increases, it becomes harder for preferred grain to eliminate slant grain. This is because the increase of pulling rate decreases primary dendrite arm spacing and slightly reduces the frequency of new primary dendrite arms. When the growth direction of preferred grain is not well aligned with temperature gradient, the preferred grain can also be eliminated by the slant grain at specific pulling rates.

Key words:  directional solidification      bi—crystal      competitive growth      diverged     
Received:  26 September 2012     

URL: 

https://www.ams.org.cn/EN/10.3724/SP.J.1037.2012.00569     OR     https://www.ams.org.cn/EN/Y2013/V49/I1/58

 


[1] Harris K, Erickson G L, Schwer R E. Metals Handbook. 10th Ed., Vol.1, Ohio: ASM International, 1990; 995

[2] Stanford N, Djakovic A, Shollock B A, McLean M, D'Souza N, Jennings P A. Scr Mater, 2004; 50: 159

[3] Walton D, Chalmers B. Trans Metall Soc AIME, 1959; 215: 447

[4] Gandin C A, Rappaz M. Acta Metall Mater, 1994; 42: 2233

[5] Rappaz M, Gandin C A, Desbiolles J L, Thevoz P. Metall Mater Trans, 1996; 27A: 695

[6] Esaka H. PhD Thesis, Switzerland: Ecole Polytechnique, Federale de Lausanne, 1986

[7] D'Souza N, Ardakani M G, Wagner A, Shollock B A, Mclean M J. Mater Sci, 2002; 37: 481

[8] Zhu M F, Hong C P. ISIJ Int, 2001; 41: 436

[9] Dong H B, Lee P D. Acta Mater, 2005; 53: 659

[10] Zhou Y Z, Volek A, Green N. Acta Mater, 2008; 56: 2631

[11] Zhou Y Z, Jin T, Sun X F. Acta Metall Sin, 2010; 46: 1327

(周亦胄, 金涛, 孙晓峰. 金属学报, 2010; 46: 1327)

[12] Li J J, Wang Z J, Wang Y Q, Wang J C. Acta Mater, 2012; 60: 1478

[13] Hunt J D, Jackson K A, Brown H. Rev Sci Instrum, 1966; 37: 805

[14] Lu S Z, Hunt J D. J Cryst Growth, 1992; 123: 17

[15] Ding G L, Huang W D, Huang X, Lin X, Zhou Y H. Acta Mater, 1996; 44: 3705

[16] Huang W D, Geng X G, Zhou Y H. J Cryst Growth, 1993; 134: 105

[17] Hunt J D, Lu S Z. Metall Mater Trans, 1996; 27A: 611
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