$L1_{2}-Ni_{3}Al$ 금속간화합물의 강도특성에 관한 연구

A Study on the Strength Characteristics of $L1_{2}-Ni_{3}Al$ Intermetallic Compound

  • 한창석 (호서대학교 국방과학기술학과) ;
  • 천창환 (호서대학교 국방과학기술학과) ;
  • 한승오 (호서대학교 융합기술연구소)
  • Han, Chang-Suk (Dept. of Defense Science & Technology, Hoseo University) ;
  • Chun, Chang-Hwan (Dept. of Defense Science & Technology, Hoseo University) ;
  • Han, Seung-Oh (Institute of Fusion Technology, Hoseo University)
  • 발행 : 2009.01.30

초록

Structural studies have been performed on precipitation hardening found in $Ni_{3}Al$ based ordered alloys using transmission electron microscopy (TEM). Tilt experiments by the weak-beam method were made to obtain some information concerning the cross slip mechanism of the superlattice dislocation. The strength of ${\gamma}'-Ni_3$(Al,Ti) increases over the temperature range of experiment by the precipitation of fine $\gamma$ particles. The peak temperature where a maximum strength was obtained shifted to higher temperature. Over the whole temperature range, the interaction between dislocation and $\gamma$ precipitates is attractive. On the temperature range of 773 K to 973 K, the dislocations in ${\gamma}'$ matrix move on (111) primary slip plane. When the applied stress is removed, the dislocations make cross slip into (010) plane, while those in $\gamma$ precipitates remain on the (111) primary slip plane. The increase of high temperature strength in ${\gamma}'-Ni_3$(Al,Ti) containing $\gamma$ precipitates is due to the restraint of cross slip of dislocations from (111) to (010) by the dispersion of disordered $\gamma$ particles.

키워드

참고문헌

  1. F. Iida, T. Suzuki and E. Kuramoto : Acta Metallurgica, 27 (1979) 637 https://doi.org/10.1016/0001-6160(79)90015-4
  2. F. Harada : Advances in Materials and Processes, 20 (2007) 1232
  3. K. Kimura, H. Y. Gao and S. Hata : Materia Jap. 45 (2006) 863 https://doi.org/10.2320/materia.45.863
  4. S. S. Ezz, D. P. Pope and V. Paidar : Acta Metall., 30 (1982) 921 https://doi.org/10.1016/0001-6160(82)90198-5
  5. S. Miura, S. Ochiai, Y. Oya, Y. Mishima and T. Suzuki : J. Japan Inst. Metals, 51 (1987) 400 https://doi.org/10.2320/jinstmet1952.51.5_400
  6. R. G. Davies and T. L. Johnston : Ordered alloys, Ed. by B. H. Kear, C. T. Sims, N. S. Stoloff and J. H. Westbrook, Baton Rouge, La, Claitor's Publishing Division, (1970) 447
  7. P. Beardmore, R. G. Davies and T. L. Johnston : Trans. Met. Soc. AIME, 245 (1969) 1537
  8. S. M. L. Sastry and B. Ramaswami : Acta Met., 23 (1975) 1517 https://doi.org/10.1016/0001-6160(75)90162-5
  9. A. J. Ardell and S. Pattanaik : Phil. Mag. A, 50 (1984) 361 https://doi.org/10.1080/01418618408244233
  10. B. H. Kear, J. E. Doherty, A. F. Giamei and L. P. Lemaire : Proc. 30th Ann. Meeting Electron Microscopy Society of America, Ed. by C. J. Arceneaux, Claitor's Publishing Division, (1972) 588
  11. R. K. Ham, R. H. Cook and G. R. Purdy : Metal Sci. J., 6 (1972) 73 https://doi.org/10.1179/030634572790446064
  12. A. E. Staton-Bevan and R. D. Rawlings : Phys. Stat. Sol. (a), 29 (1975) 613 https://doi.org/10.1002/pssa.2210290232
  13. B. H. Kear and H. G. F. Wilsdorf : Trans. Met. Soc. AIME, 224 (1962) 382
  14. A. E. Staton-Bevan and R. D. Rawlings : J. Mater. Sci., 10 (1975) 505 https://doi.org/10.1007/BF00543696
  15. A. E. Staton-Bevan and R. D. Rawlings : Philos. Mag. A, 32 (1975) 787 https://doi.org/10.1080/14786437508221620
  16. S. Ochiai, S. Miura, Y. Mishima and T. Suzuki : J. Japan Inst. Metals, 51 (1987) 608 https://doi.org/10.2320/jinstmet1952.51.7_608
  17. D. Caillard, N. Clement and A. Couret : Philos. Mag. Lett., 58 (1988) 263 https://doi.org/10.1080/09500838808214763
  18. P. Veyssiere, J. A. Horton, M. H. Yoo and C. T. Liu : Philos. Mag. Lett., 67 (1987) 17 https://doi.org/10.1080/09500838808227792
  19. C. S. Han and J. Lee : J. Kor. Soci. Heat Treat., 21 (2008) 251
  20. S. Amelincks : Dislocations in Solids, Ed. by F. R. N. Nabarro, (1999) 67