Scanning speed and powder flow rate influence on the properties of laser metal deposition of titanium alloy

Author:

Mahamood Rasheedat M.,Akinlabi Esther T.

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference28 articles.

1. Scott, J., Gupta, N., Wember, C., Newsom, S., Wohlers, T. and Caffrey, T. (2012). Additive manufacturing: status and opportunities, Science and Technology Policy Institute, Available from: https://www.ida.org/stpi/occasionalpapers/papers/AM3D_33012_Final.pdf (Accessed on 11 July 2016)

2. Allen, J. (2006). An investigation into the comparative costs of additive manufacture vs. machine from solid for aero engine parts. In Cost Effective Manufacture via Net-Shape Processing, Meeting Proceedings RTO-MP-AVT-139, Paper 17, pp. 1–10

3. Graf B, Gumenyuk A, Rethmeier M (2012) Laser metal deposition as repair technology for stainless steel and titanium alloys. Phys Procedia 39:376–381

4. Pinkerton AJ, Wang W, Li L (2008) Component repair using laser direct metal deposition. J Eng Manuf 222:827–836

5. Ermachenko AG, Lutfullin RY, Mulyukov RR (2011) Advanced technologies of processing titanium alloys and their applications in industry. RevAdvMater Sci 29:68–82

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