Chinese Journal of Lasers, Volume. 41, Issue 1, 103006(2014)
Laser Cladding Forming of Round Thin-Walled Parts with Slope Angle
[1] [1] X Wu, J Mei. Near net shape manufacturing of components using direct laser fabrication technology[J]. Materials Processing Technology, 2003, 135(2-3): 266-270.
[2] [2] Shang Xiaofeng, Liu Weijun, Wang wei, et al.. Slope limit of part made in metal powder laser shaping[J]. Chinese Journal of Mechanical Engineering, 2007, 44(8): 97-100.
[4] [4] H Qi, M Azer, P Singh. Adaptive toolpath deposition method for laser net shape manufacturing and repair of turbine compressor airfoils[J]. International Journal of Advanced Manufacturing Technology, 2010, 48(1-4): 121-131.
[5] [5] Liu Jie, Yang Yongqiang, Wang Di, et al.. Computer-aided optimization of the process parameters for fabricating overhanging structure by selective laser melting[J]. Chinese J Lasers, 2012, 39(5): 0503001.
[6] [6] Yang Yongqiang, Wang Di, Wu Weihui. Research progress of direc manufacturing of metal parts by selevtive laser melting[J]. Chinese J Lasers, 2011, 38(6): 0601007.
[7] [7] Guo Huiru. Laser Cladding Forming of the Simulated Thin-Walled Casing with Variable Parameters[D]. Dalian: Dalian University of Technology, 2010.
[9] [9] Meng Qingxuan, Wang Xuyue, Xu Wenji, et al.. Vaporization melt ration mathematical model and experiments of laser cutting sheet metal[J]. Journal of Mechanical Engineering, 2011, 47(17): 172-178.
[10] [10] Li Yanming, Yang Haiou, Lin Xin, et al.. The influences of processing parameters on forming characterizations during laser rapid forming[J]. Materials Science and Engineering, 2003, 360(1-2): 18-25.
[11] [11] Milewski J O, Lewis G K, Thoma D J. Directed light fabrication of a solid metal hemisphere using 5-axis powder deposition[J]. Materials Processing Technology, 1998, 75(1-3): 165-172.
[12] [12] R Dwivedi, R Kovacevic. An expert system for generation of machine inputs for laser-based multi-diresctional metal deposition[J]. International Journal of Machine Tools & Manufacture, 2006, 46(14): 1811-1822.
[13] [13] R Dwivedi, R Kovacevic. Process planning for multi-directional laser-based direct metal deposition[J]. Journal of Mechanical Engineering Science, 2005, 219(7): 695-707.
[14] [14] Rajeev Dwivedi, Srdja Zekovic, Radovan Kovacevic. A novel approach to fabricate uni-directional and branching slender structures using laser-based direct metal deposition[J]. International Journal of Machine Tools & Manufacture, 2007, 47(7-8): 1246-1256.
[15] [15] Lin J. Concentration model of the power stream in coaxial laser cladding[J]. Opt & Laser Technol, 1999, 31(3): 251-257.
[16] [16] Andrew J P, Li Lin. Modelling powder concentration distribution from a coaxial deposition nozzle for Laser-based rapid tooling[J]. Journal of Manufacturing Science and Engineering, 2004, 126(2): 33-41.
[17] [17] Pi Gang, Zhang Anfeng, Zhu Gangxian, et al.. Self-regulation effect in laser direct metal manufacturing[J]. Journal of Xi′an Jiaotong University, 2010, 44(11): 77-81.
[18] [18] Liu Jichang. Effects of powder concentration distribution on fabrication of thin-wall parts in coaxial laser cladding[J]. Opt & Laser Technol, 2005, 37(4): 287-292.
Get Citation
Copy Citation Text
Wang Xuyue, Wang Yanfei, Jiang Hao, Xu Wenji, Guo Dongming. Laser Cladding Forming of Round Thin-Walled Parts with Slope Angle[J]. Chinese Journal of Lasers, 2014, 41(1): 103006
Category: laser manufacturing
Received: Jul. 15, 2013
Accepted: --
Published Online: Dec. 24, 2013
The Author Email: Xuyue Wang (wbzzd@dlut.edu.cn)