Skip to main content
Have a personal or library account? Click to login
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., 505-516.
  2. Wohlers, T. (2003). Wohlers Report-Rapid Prototyping., Wohlers Associates Inc., Colorado (USA).
  3. Malin, V., Jonson, R. N., & Sciammarelia, F. (2005). Laser cladding helps refurbish US Navy ship components.(3), 3-9.
  4. Koch, J, & Mazumder, J. (1993). Rapid prototyping by laser cladding (ed-s: P.Denney, I. Miyamoto, BL Mordike)., 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)., 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.(5), 55-60.
  7. Mazumder, J., Schifferer, A., & Choi, J. (1999). Direct materials deposition: designed macro and microstructure., 118-31.
  8. Keicher, D. M., & Smugersky, J. E. (1997). The laser forming of metallic components using particulate materials.(5), 51-54.
  9. Milewski, J.O, Lewis, G. K., Thoma, D. J.(1997). Directed light fabrication of a solid metal hemisphere using 5-axis powder deposition.(1-3), 165-72.
  10. John, C. (2005).Elsevier Butterworth-Heintmann, Burlington, MA (USA).
  11. William, M. Steen. (2003)., 3ed-n. London: Springer.
  12. Toyserkani, E., Khajepour, A., & Corbin, S. (2005).Boca Raton (Florida): CRS Press.
  13. De Hosson, J.Th. M., & Ocelic, V. (2003). Functionally graded materials produced with high power lasers., 368-376. Hyderabad (India).
  14. Liu, C. Y., & Lin, J. (2003). Thermal processes of a powder particle in coaxial laser cladding.(2), 81-86.
  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., 5867-5877.
  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., 112-123.
DOI: https://doi.org/10.2478/v10047-012-0023-3 | Journal eISSN: 2255-8896 (formerly 0868-8257) | 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

© 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.