DOI QR코드

DOI QR Code

저온 분사 공정으로 제조된 Ti 코팅층의 미세조직 및 물성에 미치는 송급 가스의 영향

Effect of Carrier Gases on the Microstructure and Properties of Ti Coating Layers Manufactured by Cold Spraying

  • 투고 : 2013.01.14
  • 심사 : 2013.02.18
  • 발행 : 2013.02.28

초록

The effect of carrier gases (He, $N_2$) on the properties of Ti coating layers were investigated to manufacture high-density Ti coating layers. Cold spray coating layers manufactured using He gas had denser and more homogenous structures than those using $N_2$ gas. The He gas coating layers showed porosity value of 0.02% and hardness value of Hv 229.1, indicating more excellent properties than the porosity and hardness of $N_2$ gas coating layers. Bond strengths were examined, and coating layers manufactured using He recorded a value of 74.3 MPa; those manufactured using $N_2$ gas had a value of 64.6 MPa. The aforementioned results were associated with the fact that, when coating layers were manufactured using He gas, the powder could be easily deposited because of its high particle impact velocity. When Ti coating layers were manufactured by the cold spray process, He carrier gas was more suitable than $N_2$ gas for manufacturing excellent coating layers.

키워드

참고문헌

  1. Y. T. Lee: Machine & Mat., 21 (2009) 74. (Korean)
  2. I. N. Andijani: Desalination., 45 (2000) 129.
  3. K. Binder, F. Gartner and T. Kassen: 2010 International Thermal Spray Conference, ASM International, Singapore (2010) 264.
  4. J. Villafuerte: Metal Fishing, 108 (2010) 37.
  5. ASM Handbook 10th ed., ASM Inter (1992) 610.
  6. G. Lutjering and J. C. Williams: Springer-Verlag Berlin Heidelberg, Germany (2003) 57.
  7. A. Parapin, V. Kosarev, S. Klinkov, A. Alkimov and A. Fomin: Cold spray technology, Elsevier (2001) 1.
  8. T. H. V. Steenkiste: Key Eng. Mater., 197 (2001) 59. https://doi.org/10.4028/www.scientific.net/KEM.197.59
  9. H. J. Kim, C. H. Lee and Y. G. Kweon: J. KWS., 20 (2006) 459. (Korean)
  10. J. Voyer, T. Stoltenhoff and H. Kreye: 2003 International Thermal Spray Conference, ASM International, Ohio (2003) 71.
  11. R. C. McCone: 2003 International Thermal Spray Conference, ASM International, Ohio (2003) 63.
  12. H. J. Kim, C. H. Lee and S. Y. Hwang: Mater. Sci. Eng. A, 391 (2005) 243. https://doi.org/10.1016/j.msea.2004.08.082
  13. J. S. Yu, H. J. Kim, I. H. Oh and K. A. Lee: J. Kor. Powd. Met.Inst., 19 (2012) 110. (Korean) https://doi.org/10.4150/KPMI.2012.19.2.110
  14. J. N. Hawng, M. J. Lee, H. J. Kim, I. H. Oh and K. A. Lee: J. Kor. Powd. Met.Inst., 19 (2012) 348. (Korean) https://doi.org/10.4150/KPMI.2012.19.5.348
  15. H. Katanoda, M. Fukuhara and N. Lino: 2007 International Thermal Spray Conference, ASM International, (2007) 627.
  16. G. Y Bae, S. Kumar, S. H. Yoon, K. Kang, H. T. Na, H. J. Kim and C. H. Lee: Acta Materialia., 57 (2009) 5654. https://doi.org/10.1016/j.actamat.2009.07.061
  17. W. Wong, E. Irissou, A. N. Ryabinin, J. G Legoux and S. Yue: J. Therm. Spray Technol., 20 (2011) 213. https://doi.org/10.1007/s11666-010-9568-y
  18. J. J. Yang, H. Fang, S. Yoon and C. Lee: Applied Surf. Sci., 252 (2006) 7809. https://doi.org/10.1016/j.apsusc.2005.09.015