[1]
|
关桥.焊接/连接与增材制造(3D打印)[J].焊接, 2014(5):1-8 Guan Qiao. Welding/connection and additive manufac-turing (3D printing[J]. Welding&Joining, 2014(5):1-8 |
[2]
|
Liu Y B, Sun Q J, Sang H B, et al. Microstructure and mechanical properties of additive manufactured steel-Al structure materials with nickel gradient layers[J]. China Welding, 2016, 25(01):8-14. |
[3]
|
王立伟,陈树君,肖珺,等.熔滴主动靶向的激光间接电弧复合增材制造技术初探[J].焊接学报, 2017, 38(3):71-74 Wang Liwei, Chen Shujun, Xiao Jun, et al. Droplet-targeting laser hybrid indirect arc for additive manu-facturing technology-A preliminary study[J]. Transactions of the China Welding Institution, 2017, 38(3):71-74 |
[4]
|
柏久阳,王计辉,林三宝,等.铝合金电弧增材制造焊道宽度尺寸预测[J].焊接学报, 2015, 36(9):87-90 Bai Jiuyang, Wang Jihui, Lin Sanbao, et al. Droplet-targeting laser hybrid indirect arc for additive manufacturing technology-A preliminary study[J]. Transactions of the China Welding Institution, 2015, 36(9):87-90 |
[5]
|
张瑞.基于CMT的铝合金电弧增材制造(3D打印)技术及工艺研究[D].南京:南京理工大学, 2016. |
[6]
|
孙清洁,桑海波,刘一搏,等.基于电弧增材制造的截面扫描轨迹规划[J].焊接学报, 2017, 38(10):21-24 Sun Qingjie, Sang Haibo, Liu Yibo, et al. Research on deposited layer scaning trace skanning based on rapid-prototpying using CMT technology[J]. Transactions of the China Welding Institution, 2017, 38(10):21-24 |
[7]
|
高福洋,赵文光,高奇,等.电弧增材制造成形工艺影响因素研究[J].材料开发与应用, 2017, 32(2):59-63 Gao Fuxiang, Zhao Wenguang, Gao Qi, et al. Study on influencing factors of arc additive manufacturing process[J]. Development and Application of Materials, 2017, 32(2):59-63 |
[8]
|
Zhang Z D, Sun C S, Xu X K, et al. Surface quality and forming characteristics of thin-wall aluminium alloy parts manufactured by laser assisted MIG arc additive manufacturing[J]. International Journal of Lightweight Materials and Manufacture, 2018, 1(2):89-95. |
[9]
|
Huang R S, Liu L M, Zhang F. Influence of laser in low power YAG laser-MAG hybrid welding processs[J]. Chinese Optics Letter, 2008(1):47-50. |
[10]
|
袁志发,周静芋.试验设计分析[M].北京:高等教育出版社, 2000. |