DOI QR코드

DOI QR Code

The Aging Characteristics of Mg-6 wt.% Al-1 wt.% Zn Alloy Prepared by Gas Atomization

가스분사법으로 제조된 Mg-6 wt.% Al-1 wt.% Zn 합금의 시효특성

  • Lee, Du-Hyung (Department of Materials Engineering, Korea Aerospace University) ;
  • Kim, Bo-Sik (Department of Materials Engineering, Korea Aerospace University) ;
  • Chang, Si-Young (Department of Materials Engineering, Korea Aerospace University)
  • 이두형 (한국항공대학교 항공재료공학과) ;
  • 김보식 (한국항공대학교 항공재료공학과) ;
  • 장시영 (한국항공대학교 항공재료공학과)
  • Published : 2009.08.28

Abstract

The aging characteristics of gas atomized Mg-6 wt.% Al-1 wt.% Zn alloy were investigated and compared to those of cast Mg-6 wt.% Al alloy. The gas atomized Mg-6 wt.% Al-1wt.% Zn alloy powders had spherical morphology between 1 and 100 $\mu m$ in diameter. After compaction under the pressure of 700 MPa at $320^{\circ}C$ for 10 min, the Mg-6 wt.% Al-1 wt.% Zn alloy showed a grain size of approximately 40 $\mu m$ which is smaller than that of the cast Mg-6 wt.% Al alloy, and a relative compact density of approximately 93%. After ageing, the Mg-6 wt.% Al-1 wt.% Zn alloy showed much faster peak hardness than cast Mg-6 wt.% Al alloy. The Mg-6 wt.% Al-1 wt.% Zn alloy showed the new fine precipitations with ageing time, while the cast Mg-6 wt.% Al alloy was almost similar morphology.

Keywords

References

  1. Y. Kojima and and S. Kamado: Mater. Sci. Forum, 488 (2005) 9 https://doi.org/10.4028/www.scientific.net/MSF.488-489.9
  2. T. M. Yue, Q. W. Hu, Z. Wei and H. C. Man: Mater. Letters, 47 (2001) 165 https://doi.org/10.1016/S0167-577X(00)00230-5
  3. J. A. Curran and T. W. Clyne: Surf. Coating Tech., 199 (2005) 177 https://doi.org/10.1016/j.surfcoat.2004.11.045
  4. S. Y. Chang, Y. L. Kim, B. H. Song and J. H. Lee: Mater. Sci. Forum, 539-543 (2007) 1224 https://doi.org/10.4028/www.scientific.net/MSF.539-543.1224
  5. S. Y. Chang, Y. L. Kim and Y. D. Kim: Korean J. of Mater. Research, 17 (2007) 648 https://doi.org/10.3740/MRSK.2007.17.12.648
  6. M. Sugamata, S. Hanawa and J. Kaneko: Mater. Sci. Eng. A, 226-228 (1997) 861 https://doi.org/10.1016/S0921-5093(97)80089-5
  7. S. Y. Chang, H. G. Cho, D. H. Lee and T. S. Kim: J. Korean powder Metall. Inst., 14 (2007) 372 (Korean) https://doi.org/10.4150/KPMI.2007.14.6.372
  8. Y. Kawamura, K. Hayashi, A. Inoue and T. Matsumoto: Mater. Trans., 42 (2001) 1172 https://doi.org/10.2320/matertrans.42.1172
  9. A. Aliseda, E. J. Hopfinger, J. C. Lasheras, D. M. Kremer, A. Berchielli and E. K. Connolly: Int. J. Multiphas. Flow, 34 (2008) 161 https://doi.org/10.1016/j.ijmultiphaseflow.2007.09.003
  10. Y. Kojima: Handbook Advanced Magnesium Technology, Kallos Publishing, Tokyo (2000) 144
  11. Y. Uematsu, K. Tokaji and M. Matsumoto: J. of Sci. Eng. A, 517 (2009) 138 https://doi.org/10.1016/j.msea.2009.03.066
  12. R. Arrabal, E. Matykina, T. Hashimoto, P. Skeldon and G. E. Thompson: Surf. Coating Tech., 203 (2009) 2207 https://doi.org/10.1016/j.surfcoat.2009.02.011