[1] Thomas W M, Nicholas E D, Needham J C, et al. Friction stir butt welding. International Patent No.PCT/GB92/02203 and GB Patent No.9125978.8, 1991.
[2] Dawes C J, Thomas W M. Friction stir process welds aluminum alloys. Welding Journal, 2003, 75 (3): 41-45.
[3] 张昭, 刘会杰. 搅拌头形状对搅拌摩擦焊材料变形和温度场的影响. 焊接学报, 2011, 32 (3): 5-8.
[4] Rhodes C G, Mahorey M W, et al. Effect of friction stir welding on microstructure of 7075 aluminum. Scripta Materialia, 2004, 36(l):69-75.
[5] Sato Y S, Urata M, Kokawa H, et al. Hall-petch relationship in friction stir welds of equal channel angular-pressed aluminium alloys. Materials Science and Engineering A, 2003, 354: 298-305.
[6] Sutton M A, Yang B, Reynolds A P, et al. Microstructural studies of friction stir welds in 2024-T3 aluminum. Materials Science and Engineering A, 2002, 323: 160-166.
[7] Cavaliere P, Squillace A, Panella F. Effect of welding parameters on mechanical and microstructural properties of AA6082 joints produced by friction stir welding. Journal of Materials Processing Technology, 2008, 200: 364-372.
[8] 梁志芳, 史清宇, 康旭. 7A52铝合金搅拌摩擦焊工艺优化. 焊接学报, 2011, 32 (2):17-20.
[9] 王廷, 朱丹阳, 刘会杰, 等. 7050-T7451铝合金的搅拌摩擦焊接试验分析. 焊接学报, 2009, 30 (8):109-112.
[10] Higginbotham D. Proven friction stir welding technology brings together reliability and affordability for NASA's space launch system [EB/OL].2012[2014-12-10].Http://www.sciencedaily.com/releases/2012/05/120521153524.html.
[11] Perrett J G. Evalution of advanced tool material technology for the friction stir welding of 6mm AISI 304L stainless steel. TWI Ltd, Granta Park, Great Abington Cambridge CB21 6AL, United Kingdom. 17244.02/2009/1380.3.
[12] 李颖. 铝合金激光-MIG复合横向焊接特性分析[D]. 哈尔滨: 哈尔滨工业大学, 2013.