[1] ABBOTT D H,ARCELLA F G.Laser forming titanium components[J].Advanced Materials Processes,1998,152(5):29~30.
[2] SCHWENDNER K I,BANERJEE R,COLLINS P C et al.Direct laser deposition of alloys from elemental powder blends[J].Scripta Materialia,2001,45(10):1123~1129.
[3] LEWIS G K,SCHLIENGER E.Practical considerations and capabilities for laser assisted direct metal deposition[J].Materials Design,2000,21 (4):417~423.
[4] WU X,LIANG J,MEI J et al.Microstructures of laser-deposited Ti6Al-4V[J].Materials Design,2004,25(2):137~144.
[5] CHOI J,CHANG Y.Characteristics of laser aided direct metal/material deposition process for tool steel[J].International Journal of Machine Tools and Manufacture,2005,45 (4~5):597~607.
[6] KEICHE D M,SMUGERESKY J E.The laser forming of metallic components using particulates materials[J].Journal of Metals,1997,49(5):51~54.
[7] ARCELLA F G,FROES F H.Producing titanium aerospace components from powder using laser forming[J].Journal of Metals,2000,52(5):28~30.
[8] KOBRYN P A,MOORE E H,SEMIATIN S L.The effect of laser power and traverse speed on microstructure,porosity,and build height in laser-deposited Ti-6Al-4V[J].Scripta Materialia,2000,43 (4):299~305.
[9] PINKERTON A J,LI L.The significance of deposition point standoff variations in multiple-layer coaxial laser cladding[J].International Journal of Machine Tool and Manufacture,2004,44 (6):573~584.
[10] MAZUMDER J,DUTTA D,KUKUCHI N et al.Closed loop direct metal deposition:art to part[J].Optics and Lasers in Engineering,2000,34(4~6):397~414.
[11] HUD M,KOVACEVIC R.Sensing,modeling and control for laserbased additive manufacturing[J].International Journal of Machine Tools and Manufacture,2003,43 (1):51~60.
[12] LI X Y,QI X J,ZENG X Y.Establishment and application of temperature field model in laser micro-cladding[J].Laser Technology,2005,29(6):561~564(in Chinese).