Citation: | HE Diqiu, HU Lei, ZHAO Zhifeng, LAI Ruilin. Effect of ultrasonic power on microstructure and properties of 2219-T351 aluminum alloy friction stir welding joint[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2020, 41(3): 23-28. DOI: 10.12073/j.hjxb.20190115006 |
杜波, 杨新岐, 孙转平,等. 2219-T87铝合金拉锻式摩擦塞补焊接头组织及性能[J]. 焊接学报, 2019, 40(2): 128 − 132.
Du Bo, Yang Xinqi, Sun Zhuanping, et al. Microstructure and properties of 2219-T87 aluminum alloy friction pull plug welds[J]. Transactions of the China Welding Institution, 2019, 40(2): 128 − 132.
|
杨坤玉, 贺地求, 李东辉. 2519A铝合金超声辅助搅拌摩擦焊接试验分析[J]. 焊接学报, 2018, 39(6): 39 − 42.
Yang Kunyu, He Diqiu, Li Donghui. Experimental analysis of 2519A aluminum alloy ultrasonic assisted friction stir welding[J]. Transactions of the China Welding Institution, 2018, 39(6): 39 − 42.
|
Liu H J, Feng X L. Effect of post-processing heat treatment on microstructure and microhardness of water-submerged friction stir processed 2219-T6 aluminum alloy[J]. Materials and Design, 2013, 47(9): 101 − 105.
|
Witthauer A T, Kim G Y, Faidley L E, et al. Effects of acoustic softening and hardening in high-frequency vibration-assisted punching of aluminum[J]. Materials and Manufacturing Processes, 2014, 29(10): 1184 − 1189. doi: 10.1080/10426914.2014.921704
|
Hung J C, Hung C. The influence of ultrasonic-vibration on hot upsetting of aluminum alloy[J]. Ultrasonics, 2005, 43(8): 692 − 698. doi: 10.1016/j.ultras.2005.03.001
|
Liu X C, Wu C S. Material flow in ultrasonic vibration enhanced friction stir welding[J]. Journal of Materials Processing Technology, 2015, 225: 32 − 44. doi: 10.1016/j.jmatprotec.2015.05.020
|
曹秒艳, 李建超, 杨卓云, 等. 超声振动对板材固体颗粒介质成形的影响[J]. 中国有色金属学报, 2016, 26(10): 2118 − 2127.
Cao Miaoyan, Li Jianchao, Yang Zhuoyun, et al. Effect of ultrasonic vibration on solid granules medium forming of sheet metals[J]. The Chinese Journal of Nonferrous Metals, 2016, 26(10): 2118 − 2127.
|
Liu Z W, Rakita M, Han Q, et al. Microstructural evolution of reinforcements in the remelting in situ TiC/Al–12Si composites treated by ultrasonic vibration[J]. Materials Research Bulletin, 2011, 46(10): 1674 − 1678. doi: 10.1016/j.materresbull.2011.06.003
|
贺地求, 梁建章. 超声搅拌焊接方法及其装置: 中国, 200610004059.3[P]. 2006−01−26.
|
Li B, Shen Y. The investigation of abnormal particle-coarsening phenomena in friction stir repair weld of 2219-T6 aluminum alloy[J]. Materials and Design, 2011, 32(7): 3796 − 3802. doi: 10.1016/j.matdes.2011.03.029
|
姚喆赫. 超声能场在金属微/介观成形中的作用理论及试验研究[D]. 杭州: 浙江大学, 2016.
|
Chen S, Jiang X. Texture evolution and deformation mechanism in friction stir welding of 2219Al[J]. Materials Science and Engineering A, 2014, 612(9): 267 − 277.
|
许晓嫦, 刘志义, 党朋, 等. 研究强塑性变形过程中第二相回溶现象的现状及发展趋势[J]. 金属热处理, 2005, 30(4): 1 − 6. doi: 10.3969/j.issn.0254-6051.2005.04.001
Xu Xiaochang, Liu Zhiyi, Dang Peng, et al. Current situation and development of the research on re-dissolution of second phase during serve plastic deformation[J]. Transactions of Metal Heat Treatment, 2005, 30(4): 1 − 6. doi: 10.3969/j.issn.0254-6051.2005.04.001
|
Ma H K, He D Q, Liu J S. Ultrasonically assisted friction stir welding of aluminium alloy 6061[J]. Science and Technology of Welding and Joining, 2015, 20(3): 216 − 221. doi: 10.1179/1362171814Y.0000000275
|
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