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Influence of Laser Cladding Parameters on the Distribution of Elements in the Beads of Nickel-Based Ni-Cr-B-Si Alloy Cover

Influence of Laser Cladding Parameters on the Distribution of Elements in the Beads of Nickel-Based Ni-Cr-B-Si Alloy

Open Access
|Sep 2012

References

  1. Mazumder, J., Dutta, D., Ghosh, A., & Kikuchi, N. (2003). Designed materials: what and how. Proceedings of the SPIE, 4831, 505-516.10.1117/12.497593
  2. Wohlers, T. (2003). Wohlers Report-Rapid Prototyping. Tooling & Manufacturing State of the Industry, Wohlers Associates Inc., Colorado (USA).
  3. Malin, V., Jonson, R. N., & Sciammarelia, F. (2005). Laser cladding helps refurbish US Navy ship components. The AMPTIAC Quarterly, 8(3), 3-9.
  4. Koch, J, & Mazumder, J. (1993). Rapid prototyping by laser cladding (ed-s: P.Denney, I. Miyamoto, BL Mordike). Proceedings of ICALEO' 93, 77, 556-65.
  5. Mazumder, J., Koch, J., Nagarathnam, K., & Choi, J. (1996). Rapid manufacturing by laser aided direct deposition of metals. (ed-s: T. M. Cadle, K. S. Narasimhan). In: Advances in powder metallurgy and particulate materials, part 15. Princeton, NJ, Metal Powders Industries Federation (MPIF), 107-18.
  6. Mazumder, J., Choi, J., Nagarathnam, K., Koch, J., & Hetzner, D. (1997). Direct Metal Deposition (DMD) of H13 tool steel for 3-D components: microstructure and mechanical properties. J. Metals, 49(5), 55-60.
  7. Mazumder, J., Schifferer, A., & Choi, J. (1999). Direct materials deposition: designed macro and microstructure. Mater. Res. Innova, 3, 118-31.10.1007/s100190050137
  8. Keicher, D. M., & Smugersky, J. E. (1997). The laser forming of metallic components using particulate materials. J. Metals, 49 (5), 51-54.10.1007/BF02914686
  9. Milewski, J.O, Lewis, G. K., Thoma, D. J. et al (1997). Directed light fabrication of a solid metal hemisphere using 5-axis powder deposition. J. Mater. Process Tech., 75(1-3), 165-72.
  10. John, C. (2005). Laser Processing of Engineering Materials: Principles, Procedure and Industrial application. Elsevier Butterworth-Heintmann, Burlington, MA (USA).
  11. William, M. Steen. (2003). Laser Material Processing, 3rd ed-n. London: Springer.
  12. Toyserkani, E., Khajepour, A., & Corbin, S. (2005). Laser Cladding. Boca Raton (Florida): CRS Press.
  13. De Hosson, J.Th. M., & Ocelic, V. (2003). Functionally graded materials produced with high power lasers. In: Proceedings of ASTRA, 368-376. Hyderabad (India).10.4028/www.scientific.net/MSF.426-432.123
  14. Liu, C. Y., & Lin, J. (2003). Thermal processes of a powder particle in coaxial laser cladding. Opt. Laser Technol., 35 (2), 81-86.10.1016/S0030-3992(02)00145-7
  15. Wen, S. Y., Shin, Y. C., Murthy, J. Y., & Sojka, P. E. (2009). Modeling of coaxial powder flow for the laser direct deposition process. Intern. Journal of Heat and Mass Transfer, 52, 5867-5877.10.1016/j.ijheatmasstransfer.2009.07.018
  16. Zecovic, Srdja, Rajeev Dwvedi, & Kovacevic, Radovan. (2007). Numerical simulation and experimental investigation of gas-powder flow from radially symmetrical nozzles in laser-based direct metal deposition. Intern. J. of Machine Tools & Manufacture, 47, 112-123.10.1016/j.ijmachtools.2006.02.004
DOI: https://doi.org/10.2478/v10047-012-0023-3 | Journal eISSN: 2255-8896 | Journal ISSN: 0868-8257
Language: English
Page range: 61 - 70
Published on: Sep 17, 2012
Published by: Institute of Physical Energetics
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2012 O. Devoyno, P. Drozdov, Y. Dovoretskiy, M. Kardapolova, N. Lutsko, E. Tamanis, published by Institute of Physical Energetics
This work is licensed under the Creative Commons License.

Volume 49 (2012): Issue 4 (August 2012)