Laser sintering of a metal powder mixture that contains two kinds of metal powders with significantly different melting points under a moving Gaussian laser beam is investigated numerically. The continuous-wave laser-induced melting accompanied by shrinkage and resolidification of the metal powder layer are modeled using a temperature-transforming model. The liquid flow of the melted low-melting-point metal driven by capillary and gravity forces is also included in the physical model. The numerical results are validated by experimental results, and a detailed parametric study is performed. The effects of the moving heat source intensity, the scanning velocity, and the thickness of the powder layer on the sintering depth, the configuration of the heat affected zone, and the temperature distribution are discussed.
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e-mail: zhangyu@missouri.edu
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February 2006
Technical Papers
Three-Dimensional Modeling of Selective Laser Sintering of Two-Component Metal Powder Layers
Tiebing Chen,
Tiebing Chen
Department of Mechanical and Aerospace Engineering,
University of Missouri-Columbia
, Columbia, MO 65211
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Yuwen Zhang
Yuwen Zhang
Department of Mechanical and Aerospace Engineering,
e-mail: zhangyu@missouri.edu
University of Missouri-Columbia
, Columbia, MO 65211
Search for other works by this author on:
Tiebing Chen
Department of Mechanical and Aerospace Engineering,
University of Missouri-Columbia
, Columbia, MO 65211
Yuwen Zhang
Department of Mechanical and Aerospace Engineering,
University of Missouri-Columbia
, Columbia, MO 65211e-mail: zhangyu@missouri.edu
J. Manuf. Sci. Eng. Feb 2006, 128(1): 299-306 (8 pages)
Published Online: July 16, 2005
Article history
Received:
January 20, 2005
Revised:
July 16, 2005
Citation
Chen, T., and Zhang, Y. (July 16, 2005). "Three-Dimensional Modeling of Selective Laser Sintering of Two-Component Metal Powder Layers." ASME. J. Manuf. Sci. Eng. February 2006; 128(1): 299–306. https://doi.org/10.1115/1.2122947
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