[1] HOFMAN J T,PATHIRAJ B,VAN DIJK J,et al. A camera based feedback control strategy for the laser cladding process[J]. Journal of Materials Processing Technology,2012,212(11):2455-2462.
[2] SONG L,WANG F,LI S,et al. Phase congruency melt pool edge extraction for laser additive manufacturing[J]. Journal of Materials Processing Technology,2017,250:261-269.
[3] AKBARI M,KOVACEVIC R. An investigation on mechanical and microstructural properties of 316LSi parts fabricated by a robotized laser/wire direct metal deposition system[J]. Additive Manufacturing,2018,23:487-497.
[4] GHARBI M,PEYRE P,GORNY C,et al. Influence of a pulsed laser regime on surface finish induced by the direct metal deposition process on a Ti64 alloy[J]. Journal of Materials Processing Technology,2014,214(2):485-495.
[5] WIRTH F,ARPAGAUS S,WEGENER K. Analysis of melt pool dynamics in laser cladding and direct metal deposition by automated high-speed camera image evaluation[J]. Additive Manufacturing,2018,21:369-382.
[6] 裴莹蕾,吴爱萍,单际国,等. 基于熔池流动分析的高速激光焊驼峰焊道形成过程研究[J]. 金属学报,2013,49(6):725-730. PEI Yinglei,WU Aiping,SHAN Jiguo,et al. Investigation of humping formation based on melt flow analysis in high-speed laser welding process[J]. Acta Metallurgica Sinica,2013,49(6):725-730.
[7] 黄健康,孙天亮,樊丁,等. TIG焊熔池表面流动行为的研究[J]. 机械工程学报,2016,52(18):31-37. HUANG Jiankang,SUN Tianliang,FAN Ding,et al.Study on the surface flow behavior of tig weld pool[J]. Journal of Mechanical Engineering,2016,52(18):31-37.
[8] 李春凯,石玗,顾玉芬,等. 连续脉冲GTAW不同熔透状态熔池振荡频率特征及分析[J]. 机械工程学报,2016,52(20):44-50. LI Chunkai,SHI Yu,GU Yufen,et al. Characteristic and analysis of weld pool oscillation frequency in different penetration status for continuous P-GTAW[J]. Journal of Mechanical Engineering,2016,52(20):44-50.
[9] ZHAO C X,RICHARDSON I M,KENJERES S,et al. A stereo vision method for tracking particle flow on the weld pool surface[J]. Journal of Applied Physics,2009,105(12):104-123.
[10] ZHAO C X,RICHARDSON I M,PAN Y. Liquid metal flow behaviour during conduction laser spot welding[J]. Welding in the World,2009,53:271-275.
[11] 王理林,林鑫,王永辉,等. 激光重熔熔池凝固组织的实时观察研究[J]. 金属学报,2015,51(4):492-498. WANG Lilin,LIN Xin,WANG Yonghui,et al. Real-time observation of solidification microstructure in laser remelting pool[J]. Acta Metallurgica Sinica,2015,51(4):492-498.
[12] 柏久阳,王计辉,林三宝,等. 电弧増材制造厚壁结构焊道间距计算策略[J]. 机械工程学报,2016,52(10):97-102. BAI Jiuyang,WANG Jihui,LIN Sanbao,et al. Model for multi-beads overlapping calculation in gta-additive manufacturing[J]. Journal of Mechanical Engineering 2016,52(10):97-102.
[13] DING D,PAN Z,CUIURI D,et al. A multi-bead overlapping model for robotic wire and arc additive manufacturing (WAAM)[J]. Robotics and Computer-Integrated Manufacturing,2015,31:101-110.
[14] AIYITI W,ZHAO W,LU B,et al. Investigation of the overlapping parameters of MPAW-based rapid prototyping[J]. Rapid Prototyping Journal,2017,12(3):165-172.
[15] 宋梦华,林鑫,刘丰刚,等. 激光立体成形零件竖直外侧壁向内倾斜的形成及模型[J]. 金属学报,2015,51(6):753-761. SONG Menghua,LIN Xin,LIU Fenggang,et al. Formation and modeling of vertical outside wall of components inclining inward in laser solid forming[J]. Acta Metallurgica Sinica,2015,51(6):753-761.
[16] MILLS K C. Recommended values of thermophysical properties for selected commercial alloys[M]. Quincy:Woodhead Publishing,2002.
[17] 陈家祥. 炼钢常用图表数据手册[M]. 北京:冶金工业出版社,2010. CHEN Jiaxiang. Common chart data manual for steel making[M]. Beijing:Metallurgical Industry Press,2010.
[18] HE X,FUERSCHBACH P W,DEBROY T. Heat transfer and fluid flow during laser spot welding of 304 stainless steel[J]. Journal of Physics D:Applied Physics,2003,36(12):1388-1398.
[19] KUMAR A,DEBROY T. Tailoring complex weld geometry through reliable heat-transfer and fluid-flow calculations and a genetic algorithm[J]. Metallurgical & Materials Transactions A,2005,36(10):2725-2735. |