西安交通大学金属材料强度国家重点实验室,西安,710049
网络首发:2010-12-10,
纸质出版:2010
移动端阅览
张贵锋 1, 郭咏华 2, 徐明志 1, 等. 高效搅拌摩擦钎焊制备铝/钢双金属复合板的可行性研究[J]. 西安交通大学学报, 2010,44(12):93-98.
Feasibility of Efficiently Fabricating Al/Steel Bimetal Composite by Friction Stir Brazing[J]. 2010, 44(12): 93-98.
为验证采用作者开发的免磨损无针式搅拌摩擦钎焊(简称FSB)制备铝/钢防腐双金属复合板的可行性
研究了采用不同直径搅拌头所制备的复合板的表面成形、界面组织与性能特点.结果表明:当搅拌头直径过小(20 mm以下)时
因热输入不足使焊道表面起始端粗糙
且试样在较低载荷下便断裂于原始界面; 当采用中等直径(20 mm)搅拌头时
焊道表面成形光滑
在中等焊速(150 mm/min)下可获得致密的结合及良好的性能; 当采用大直径(40 mm)搅拌头时
飞边陡然加剧
适当减小压入深度或提高焊速可减小飞边; 由于强烈的热力联合作用
即使在高焊速(300 mm/min)下也可以获得致密的界面结合
钎料锌几乎全被挤出.因此
采用大直径搅拌头、高焊速FSB制备铝/钢双金属复合板是可行的.
To verify the feasibility of efficiently fabricating Al/steel corrosion-resistant bimetal composite by the authors' friction stir brazing(FSB)process
in which a tool without probe is used to eliminate severe wear of probe by steel
the characteristics of bead surface forming
interfacial microstructure and property of FSB joint of Al/steel were investigated with tools of different sizes. For small tool of a diameter less than 20 mm
rough bead surface forming tended to occur at the just starting portion
simultaneously
joints fractured along initial interface under low load. For medium tool of 20 mm diameter
both dense interfacial structure and excellent bonding were obtained at medium traverse speed(150 mm/min). For larger tool of 40 mm diameter
flash became extremely obvious. In this case
the flash could be reduced by decreasing plunge depth or increasing traverse speed
while dense interfacial structure with little filler metal of Zn and excellent bonding could still be obtained even at high traverse speed(300 mm/min)due to the combination of enhanced heating and forging force. Therefore
Al/steel metallic layered composite can be effectively fabricated by FSB with larger tool and higher traverse speed.
ASKELAND D R, PHULE P P. Essentials of materials science and engineering [M]. 影印版. 北京: 清华大学出版社,2005: 556-557.
郑远谋. 爆炸焊接和爆炸复合材料的原理及应用[M].长沙:中南大学出版社,2007: 8-9.
王建民,朱锡,刘润泉. 爆炸焊接的应用与发展[J]. 材料导报, 2006, 20(1): 42-45.
WANG Jianmin, ZHU Xi, LIU Runquan. The application and development of explosive welding [J]. Materials Review, 2006, 20(1): 42-45.
ZHAO D S, YAN J C, WANG Y, et al. Relative slipping of interface of titanium alloy to stainless steel during vacuum hot roll bonding [J]. Materials Science and Engineering: A, 2009, 499(1/2): 282-286.
王敬忠,颜学柏,王韦琪,等. 轧制钛-钢复合板工艺综述[J]. 材料导报, 2005, 19(4): 61-63.
WANG Jingzhong, YAN Xuebai, WANG Weiqi, et al. Summarization of the rolling Ti-steel composite plates process [J]. Materials Review, 2005, 19(4): 61-63.
吴爱萍,邹贵生,金奇,等. 金属轧制扩散复合技术及其新进展[J]. 焊接, 2005(5): 25-28.
WU Aiping, ZOU Guisheng, JIN Qi, et al. Primary investigation of the rolling diffusion bonding of mild steel [J]. Welding Joining, 2005(5): 25-28.
于九明,孝云祯,王群骄. 金属层状复合技术及其新进展[J]. 材料研究学报, 2000,14(1):12-16.
YU Jiuming, XIAO Yunzhen, WANG Qunjiao. New development of technology of clad metal [J]. Chinese Journal of Material Research, 2000,14(1):12-16.
祖国胤,王宁,于九明. TLP连接技术在不锈钢/3003复合板制备中的应用[J]. 中国有色金属学报, 2005,15(1): 79-83.
ZU Guoyin, WANG Ning, YU Jiuming. Application of TLP joining techniques in preparing bonding plates of stainless steel/A3003 [J]. The Chinese Journal of Nonferrous Metal, 2005, 15(1):79-83.
成小乐,高义民,邢建东,等. 扩散连接Al/Ni/0Cr18Ni9Ti复合材料的界面组织[J]. 西安交通大学学报, 2007, 41(7): 867-869.
CHENG Xiaole, GAO Yimin, XING Jiandong, et al. Investigation into intermetallic compounds in Al/Ni/0Cr18Ni9Ti diffusion bonded joint [J]. Journal of Xi'an Jiaotong University, 2007, 41(7): 867-869.
MISHRA R S, MA Z Y. Friction stir welding and processing [J]. Materials Science and Engineering Review, 2005, 50(1): 1-78.
MA Z Y. Friction stir processing technology: a review [J]. Metallurgical and Materials Transactions: A, 2008, 39(3): 642-658.
张贵锋,苏伟,张建勋. 铝与异种高强金属的搅拌摩擦钎焊新工艺及其在铝/钢防腐双金属复合板制备中的应用[J]. 材料科学与工艺, 2009, 17(s1):185-190.
ZHANG Gui-feng, SU Wei, ZHANG Jian-xun. A novel process of friction stir brazing(FSB)for Al and dissimilar metal and its application for fabrication of Al/steel bimetallic composite plate [J]. Materials Science Technology, 2009, 17(s1): 185-190.
PEYRE P, SIERRA G, DESCHAUX-BEAUME F, et al. Generation of aluminum-steel joints with laser-induced reactive wetting [J]. Materials Science and Engineering: A, 2007, 444(1/2): 327-338.
RATHOD J, KUTSUNA M. Joining of aluminum alloy 5052 and low-carbon steel by laser roll welding [J]. Welding Journal, 2004, 83(1): 16s-26s.
0
浏览量
4
下载量
2
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621