$Ni_3$Al의 기계적합금화에 미치는 $Y_2O_3$ 첨가의 영향

The Effect of $Y_2O_3$ Addition on the Mechanical Alloying of $Ni_3$Al

  • 이상태 (경북대학교 공과대학 금속공학과)
  • 발행 : 1997.09.01

초록

Mechanical alloying of $Ni_3Al$ and $Y_2O_3$ added ODS $Ni_3Al$ from elemental powders was investigated by the X-ray diffraction, differential scanning calorimeter, transmission electron microscopy and optical microscopy. The steady states of $Ni_3Al$ and ODS $Ni_3Al$ powders were reached after mechanical alloying with the condition of the ball-to-powder input ratio of 20:1 for 20 hours and 10 hours, respectively. The addition of nano-sized $Y_2O_3$ particles enhanced cold working and fracture, and subsequently accelerated MA of $Ni_3Al$ powders. DSC results of MAed $Ni_3Al$ powders showed four exothermic peaks at 14$0^{\circ}C$, 234$^{\circ}C$, 337$^{\circ}C$ and 385$^{\circ}C$. From the high temperature X-ray diffraction analysis, it was concluded that the peaks were resulted from the recovery solution of unalloyed Al in Ni, the formation of intermediate phase NiAl, and $LI_2$ ordering of MAed $Ni_3Al$ powders.

키워드

참고문헌

  1. Powder Metallurgy of Superalloys G. H. Gessinger
  2. Metall. Trans. v.1 J. S. Benjamin
  3. NASA CR-159493 Y. G. Kim;H. F. Merrick
  4. Structural Applications of Mechanical Alloying J. Tsuji;K. Mino;F. H. Froes(Ed.)
  5. TMS Symp. Proc. High Temperature Aluminides & Intermetallics G. Sauthoff;S. H. Wang(Ed.)
  6. ASM Conf. Proc. High Temperature Aluminides & Intermetallics S. Nourbachsh;W. H. Rhee;O. Sahin;C. T. Liu(Ed.)
  7. 金屬問化合物-期待される未來材枓- 和干修
  8. Trans. TMS-AIME v.209 J. S. Westbrook
  9. Trans. TMS-AIME v.224 B. H. Kear;H. G. F. Wilsdorf
  10. J. Japan Metall. v.24A K. Aoki;O. Izumi
  11. Acta Metall. v.39 A. Chiba;S. Hanada;S. Watanabe
  12. Mater. Sci. Eng. v.A190 T. K. Chaki
  13. MRS Symp. Proc. High Temperature Ordered Intermetallic Alloys D. M . Shah;D. N. Duhl
  14. MRS Symp. Proc. v.133 High Temperature Ordered Intermetallic Alloys A. T. Fujita;T. Matsumoto;M. Nakamura;Y. Takeda;N. S. Stollof (Ed.)
  15. Metall. Trans. v.16A M. V. Nathal;l. J. Evert
  16. Meta.. Trans JIM v.27 Y. Mishima;S. Ochiai;M. Yodogawa;T. Suzuki
  17. Trans. AIME v.215 R. W. Guard;J. H. Westbrook
  18. Acta. Metall. v.33 C.T. Liu;C. T. White;J. A. Horton
  19. J. Mater. Res. v.4 C. T. Liu;B. F. Oliver
  20. J. Mater. Res. v.3 J. H. Schneibel;J. A. Hoton
  21. Metall. Trans. v.24A K. J. Hemker;W. D. Nix
  22. Oxid. Met. v.26 S. Taniguchi;T. Shibata;H. Tsuroka
  23. MRS Symp. Proc. v.39 High-Temperature Orderd Intermetallic Alloys S. C. Huang;K. M. Chang;E. L. Hall;R. P. Laforce;C. C. Koch(Ed.)
  24. PMWC Proc. v.7 Tuomo J. Tiainen;Jyrki E. Vuorinen;Veikko Polvi;R. M. German(Ed.)
  25. MRS Symp. Proc. v.288 High Temperature Orderd Intermetallics Alloys V K. H. Wu;C. T. Liu;Ian Baker (Ed.)
  26. Powder Metalurgy of Superalloys G. H. Gessinger
  27. Metal Trans. JIM v.36 K. Suzuki;K. sumiyama
  28. Metall. Trans. JIM v.36 A. Reza Yabari
  29. Acta Metall. v.1 G. K. Williamson;W. H. Hall
  30. Metall. Trans. v.22A G. K. Maurice;T. H. Courteny
  31. Metall. Trans. v.21A G. K. Schaffer;P. G. McCormick
  32. J. Appl. Phys. v.59 no.3 P. J. Miller;C. S. Coffey;V. F. DeVost
  33. J. Appl. Phys. v.61 L. Schultz;J. Weeker
  34. 금속강도학 이동녕
  35. Intermetallic Compounds Principles and Practice v.2 R. D. Reus;J. H. Westbrook (Ed.)
  36. J. Mater. Res. v.7 J. Ekert;J. c. Holtzler;C. E. Krill;W. L. Thomson
  37. X-Ray Diffraction Procedure for Polycrystalline and Amorphous Materials(2nd ed.) P. Klug;L. Alexander
  38. J. Mater. Res. v.8 F. Cardellini;F. Cleri;G. Mazzone;A. Montone;V. Rosato
  39. Mater. Trans. JIM v.36 S. Surinach;J. M alagelada;M. D. Baro
  40. PMWC Proc. v.7 Advances in Powder Metallurgy & Particulate Materials-1992 T. I. Tiajnen;J. E. Vuorien;V. Polvi;R. M. German (Ed.)
  41. Phase ranformation in Materals A. K Jena;M. C. Chaturvedi
  42. Metall. Trans. v.A20 M. Enomoto;H. Hanada
  43. Mater. Sci. Eng. v.A152 A. Chiba;S. Hanada;S. Wtanabe