Chinese Journal of Lasers, Volume. 34, Issue s1, 190(2007)
Experimental Study on Rapid Prototyping of Ti-Ni Alloy by Selective Laser Melting
[1] [1] MCP Group. MCP RealizerSLM-SLM Technology. [2005-01-25]. http:∥www.mcpgroup.com
[2] [2] EOS GmbH. EOSINT M 270.[2005-01-25] . http:∥/www.eos-gmbh.de/9/9_inma/9_inma_e/020300_info_m270.pdf
[3] [3] Feng Tao, Li Zhigang. The latest developments of rapid prototyping and rapid tooling technology[J]. Die & Mould Industry, 2004, (4): 3~5
[4] [4] J. P. Krutha, L. Froyenb, J. van Vaerenbergha et al.. Selective laser melting of iron-based powder[J]. J. Materials Processing Technology, 2004, 149: 616~622
[5] [5] C. Over, W. Meiners, K. Wissenbach et al.. Selective laser melting: a new approach for the direct manufacturing of metal parts and tools [C]. 1st International Conference on Laser Assisted Net Shape Engineering, Germany: Frankfurt, 2001
[6] [6] Yang Yongqiang, Huang Changshuai. Direct manfacturing technology of metal parts by selective laser melting[J]. Aeronautical Manufacturing Technology, 2004, (suppl.): 89~92
[7] [7] M. Kobayashi, T. Nakajima, T. Kaneko et al.. Application of stereo lithography in the eld of plastic surgery[C]. In Proceedings of 8th International Conference on Rapid Prototyping, Tokyo, Japan, 2000. 294~295
[8] [8] Y. Tanikawa, D. Imai, K. Tanaka et al.. Fabrication of dynamic human head phantom and time-resolved measurement[C]. In Proceedings of 8th International Conference on Rapid Prototyping, Tokyo, Japan, 2000. 296~301
[9] [9] Y. Norita, T. Noikura, R. Petzold et al.. Rapid prototyping for dentistry in Japan[C]. In Proceedings of 8th International Conference on Rapid Prototyping, Tokyo, Japan, 2000. 282~287
[10] [10] P. P. Lutton, B. Ben-Nissan. The status of biomaterials for orthopedic and dental applications: Part I-materials[J]. Mater. Technol., 1997, 12: 107~111
[11] [11] Kathy Wang. The use of titanium for medical applications in the USA[J]. Mater. Sci. Engng., 1996, A213: 134~137
[12] [12] M. Agarwala, D. Bourell, J. Beaman et al.. Direct selective laser sintering of metala[J]. Rapid Prototyping Journal, 1995, 1(1): 26~36
[13] [13] Suman Das, Timothy P Fuecting, Gregory Danyo et al.. Direct laser fabrication of superalloy cermet abrasive turbine blade tips[J]. Materials and Design, 2000, 21: 63~73
[14] [14] Xue Chunfang, Tian Xinli, Wu Zhiyuan et al.. Analysis of the processing parameters and microstructure of Co-based alloy by lens[J]. Aeronautical Manufacturing Technology, 2004, (suppl.): 107~109
[15] [15] Zheng Shian, Zhang Yiming, Ma Yunqing et al.. Microstructure and solidification process of laser remelted alloy coatings[J]. J. Iron and Steel Research, 1996, 8(4): 46~91
[16] [16] Wang Junjie, Guo Jiusheng, Hong Jun et al.. The study of scanning path and part accuracy in rapid prototyping[J]. China Mechanical Engineering, 1997, 8(5): 54~55
[17] [17] Pan Yanfeng. Study on selective laser sintering of 316 stainless steel powder[D]. Master Thesis of Nanjing University of Aeronautics and Astronautics, 2004. 33
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese]. Experimental Study on Rapid Prototyping of Ti-Ni Alloy by Selective Laser Melting[J]. Chinese Journal of Lasers, 2007, 34(s1): 190