|
|
INFLUENCES OF KF-AlF3 SOLVENT COMPOSITIONS ON THE INTERFACIAL REACTIONS BETWEEN ALUMINUM AND KBF4 |
WANG Qingliang1, ZHAO Hongsheng2, SHEN Li2,LI Zhengguang2, ZHAO Jiuzhou1 |
1. Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016
2. Baotou Aluminum Co., Ltd., Baotou 014046 |
|
Cite this article:
WANG Qingliang, ZHAO Hongsheng, SHEN Li,LI Zhengguang, ZHAO Jiuzhou. INFLUENCES OF KF-AlF3 SOLVENT COMPOSITIONS ON THE INTERFACIAL REACTIONS BETWEEN ALUMINUM AND KBF4. Acta Metall Sin, 2012, 48(6): 739-743.
|
Abstract Al-B alloys are widely used in industries. Their manufacturing has attracted great attentions. Generally, the Al-B master alloys are manufactured by reacting KBF4 with molten aluminum. A lot of work has been done to investigate the effects of reaction technologies on the manufacturing of Al--B alloys. But little attentions were paid to the reaction mechanisms at the interface between the aluminum melt and the fluoride salt. The interfacial reactions between Al and KBF4 play a critical role in the production of Al--B master alloys. Investigations on the interfacial reactions in four different KF-AlF3 solvents were carried out. It was demonstrated that a boride layer formed at the interface for all the four solvents. There existed AlF3 between the boride layer and the aluminum melt when the eutectic KF-AlF3 solvent or the hypereutectic solvents were used. AlF3 formed by the reaction between BF3 and Al.
|
Received: 15 February 2012
|
|
[1] Setzer W C, Boone G W. in: Cutshall E R, ed., Light Metals,Warrendale, PA: TMS, 1992: 837[2] Cooper P S, Kearns M A. Mater Sci Forum,1996; 217--222: 141[3] Wang G Q, Liu S H, Gao H W, Zhou W L, Li C M, Gao Q. Acta Metall Sin, 2000; 36: 597 (王桂芹, 刘顺华, 高洪吾, 周文龙, 李长茂, 高钦. 金属学报, 2000; 36: 597)[4] Auradi V, Kori S A. J Alloys Compd, 2008; 453: 147[5] Wu Y Y, Liu X F, Bian X F. Mater Charact, 2007; 58: 205[6] Nafisi S, Ghomashchi R. Mater Sci Eng,2007; A452--453: 445[7] Wang C L, Wang M X, Liu Z Y, Liu Z X, Weng Y G, Song T F,Yang S. Mater Sci Eng, 2006; A427: 148[8] Deppisch C, Liu G, Shang J K, Economy J. Mater Sci Eng, 1997; A225: 153[9] Hall A C, Economy J. J Phase Equilib,2000; 21: 63[10] Wang X. J Alloys Compd, 2005; 403: 283[11] Aly I H, Omran A M, Shaheen M A, Bastaweesy A. in: Tabereaux A T, ed., Light Metals, Warrendale, PA: TMS, 2004: 837[12] Deppisch C, Liu G, Shang J K, Economy J. Mater Sci Eng,1997; A225: 153[13] El--Mahallawy N, Taha M A, Jarfors A E W, Fredriksson H. J Alloys Compd, 1999; 292: 221[14] Jackson M J, Graham I D. J Mater Sci Lett, 1994; 13: 754[15] Birol Y. J Alloys Compd, 2009; 481: 195[16] Fjellstedt J, Jarfors A E W. Mater Sci Eng, 2005; A413--414: 527[17] Fjellstedt J, Jarfors A E W, Svendsen L. J Alloys Compd,1999; 283: 192[18] Masahiro M, Takashi I. Jpn Pat, 4333542, 1992[19] Gao Z S. Light Alloy Fabric Technol, 1994; 22: 14 (高泽生. 轻合金加工技术, 1994; 22: 14)[20] Lee M S, Terry B S, Grieveson P. Metall Trans, 1993; 24B: 947[21] Lee M S, Grieveson P. Scand J Metall, 2003; 32: 256[22] Jenssen B. PhD Thesis, Norwegian Technology University, Trontheim, 1969[23] Zhang Q Y, Cao J. Acta Chim Sin, 1995; 53: 765 (张启运, 曹杰. 化学学报, 1995; 53: 765)[24] Danielik V, Gabcova J. J Therm Anal Calorim,2004; 76: 763[25] Mirkovic D, Grobner J, Schmid--Fetzer R,Fabrichnaya O, Lukas H L. J Alloys Compd, 2004; 384: 168 |
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|