OALib Journal期刊
ISSN: 2333-9721
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单室Gasar工艺中抽拉速率对藕状多孔Cu气孔形貌的影响*
DOI: 10.11900/0412.1961.2014.00013, PP. 921-929
Keywords: 藕状多孔Cu,单室Gasar工艺,抽拉速率,气孔形貌
Abstract:
采用单室Gasar工艺,通过实验研究和Procast凝固模拟相结合,研究了坩埚抽拉速率对凝固界面形貌、铸锭平均凝固速率、藕状多孔Cu气孔形貌、气孔生长方向以及相应多孔结构参数的影响规律.研究表明,随着抽拉速率的升高,凝固界面从凸界面向平界面再向凹界面演化.当凝固界面为凸界面和凹界面时,气孔生长方向都会偏离铸锭抽拉方向.而只有在合适的抽拉速率条件下使凝固界面以平界面方式推进,才能获得气孔完全平直生长的优质藕状多孔Cu.实验和模拟结果显示,在本实验条件下,当抽拉速率为1mm/s时,铸锭凝固界面基本以平界面方式推进;藕状多孔Cu铸锭的气孔率不受抽拉速率的影响,但随着抽拉速率的增大,平均孔径和通孔率会逐渐降低.
References
[1] | Shapovalov V I. Mater Res Soc Symp Proc, 1998; 521: 281
|
[2] | Nakajima H. Prog Mater Sci, 2007; 52: 1091
|
[3] | Hyun S K, Nakajima H, Boyko L V. Mater Lett, 2004; 58: 1082
|
[4] | Nakajima H, Ikeda T, Hyun S K. Adv Eng Mater, 2004; 6: 377
|
[5] | Ogushi T, Chiba H, Nakajima H, Ikeda T. J Appl Phys, 2004; 95: 5843
|
[6] | Rosa P, Karayiannis T G, Collins M W. Appl Therm Eng, 2009; 29:3447
|
[7] | Chen L T. PhD Dissertation, Tsinghua University, Beijing, 2012 (陈刘涛. 清华大学博士学位论文, 北京, 2012)
|
[8] | Chiba H, Ogushi T, Nakajima H. J Therm Sci Technol, 2010; 5: 222
|
[9] | Chiba H, Ogushi T, Ueno S. Mater Sci Forum, 2010; 658: 220
|
[10] | Chen L T, Zhang H W, Liu Y. Acta Metall Sin, 2012; 48: 329 (陈刘涛, 张华伟, 刘 源. 金属学报, 2012; 48: 329)
|
[11] | Chen L T, Zhang H W, Liu Y. Acta Metall Sin,2012; 48: 1374 (陈刘涛, 张华伟, 刘 源. 金属学报, 2012; 48: 1374)
|
[12] | Zhang H W, Chen L T, Liu Y. Int J Heat Mass Transfer, 2013; 56: 172
|
[13] | Liu Y, Li Y X, Zhang H W. Acta Metall Sin, 2004; 40: 1121 (刘 源, 李言祥, 张华伟. 金属学报, 2004; 40: 1121)
|
[14] | Zhang H W, Li Y X, Liu Y. Acta Metall Sin, 2006; 41: 1165 (张华伟, 李言祥, 刘 源. 金属学报, 2004; 41: 1165)
|
[15] | Liu Y, Li Y X, Zhang H W. Metall Trans, 2006; 37A: 2871
|
[16] | Hyun S, Nakajima H. Mater Lett, 2003; 57: 3149
|
[17] | Park J, Hyun S, Suzuki S. Acta Mater, 2007; 55: 5646
|
[18] | Ide T, Iio Y, Nakajima H. Metall Trans, 2012; 43A: 5140
|
[19] | Liu Y, Li Y X. Mater Sci Eng, 2005; A402: 47
|
[20] | Liu Y, Li Y X, Liu R F. Acta Metall Sin, 2010; 46: 129 (刘 源, 李言祥, 刘润发. 金属学报, 2010; 46: 129)
|
[21] | Li Z J, Jin Q L, Yang T W. Acta Metall Sin, 2013; 49: 757 (李再久, 金青林, 杨天武. 金属学报, 2013; 49: 757)
|
[22] | Yamamura S, Shiota H, Murakami K, Nakajima H. Mater Sci Eng, 2003; A318: 137
|
[23] | Holman J P. Heat Transfer. 10th Ed., New York: McGraw-Hill, 2010: 650
|
[24] | Martorano M A, Capocchi J. Int J Heat Mass Transfer, 2000; 43: 2541
|
[25] | Wang J G, Li H X, Yu S Q. Int J Heat Mass Transfer, 2011; 54: 1950
|
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