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Effect of carbon on structural changes in Ni3Al phase

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Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents diffraction and microscopic researches of a carbon influence on structural changes in Ni3Al phase. Ni3Al phase was acquired thanks to vacuum casting technology with a use of Exo-Melt process. A casting process was conducted in the atmosphere of argon. Two basic alloys were made with maintaining the nominal nuclear share equivalent to stoichiometry of Ni3Al phase. Next, carbon was instilled into the liquid alloy in the rate of 0,2% and 1,25% respectively for the first and for the second alloy. Final casts were cut into pieces and the samples were prepared in order to undertake and microscopic researches. Their phase composition was analyzed as well as their structural changes occurring within Ni3Al phase. Some changes along the lattice constants of Ni3Al phase were noticed, and they were 0,3580 nm and 0,3589 nm respectively for 0,2% C and 1,25% C. In the alloy consisting of 2,25% C a graphite (001) atomic plane was noticed. Its existence is connected with transgression in solubility limit of carbon in Ni3Al phase. This result was also confirmed by researches with SEM imaging, in which we observed numerous of separation of graphite of lamellar and nodular shape.
Rocznik
Strony
65--68
Opis fizyczny
Bibliogr. 10 poz., rys., tab., wykr.
Twórcy
autor
autor
  • Department of Cast Alloys and Composites Engineering, Faculty of Foundry Engineering, AGH University of Science and Technology, 23 Reymonta, 30-059 Cracow, Poland, ajanas@agh.edu.pl
Bibliografia
  • [1] S. C. Deevi, V. Sikka, Nickel and Iron Aluminides: an Overview on Properties, Processing and Applications, Intermetallics, 4 (1996) 357-375.
  • [2] V. K. Sikka, M. L. Santella, J. E. Orth, Processing and Operating Experience of Ni3Al-Base Intermetallic Alloy IC-221 M. Materials Science and Engineering, A239-240 (1997) 564-569.
  • [3] E. Fraś, A. Janas, P. Kurtyka, S. Wierzbiński, Structure and Properties of Cast Ni3Al/TiC and Ni3Al/TiB Composites. Pt. 1, SHSB Method Applied in Fabrication of Composites Based on Intermetallic Phase Ni3Al Reinforced with Particles of TiC and TiB, Archives of Metallurgy, 48 (4) (2003) 383-408.
  • [4] E. Fraś, A. Janas, A. Kolbus, E. Olejnik, Matrix- particle Interphase boundaries of the selected in situ and ex situ Composites MMCs ,Archives of Foundry, 6 (18) (2006), 297-304 (in Polish).
  • [5] E. Fraś, A. Janas, A. Kolbus, E. Olejnik, Cast Ni3Al/MeC (Me - W,Zr) Composites In Situ, Archives of Foundry, 6 (18) (2006), 317-324 (in Polish).
  • [6] S. C. Deevi, V. K. Sikka, Exo-Melt Process for Melting Casting Intermetallics, Intermetallics, 5 (1997) 17-27.
  • [7] L. Y. Sheng, W. Zhang, J. T. Guo, Z. S. Wang, V. E. Ovcharenko, L. Z. Zhou, H. Q. Ye, Microstructure and Mechanical of Ni3Al fabricated by Thermal Explosion and Hot Extrusion, Intermetallics, 17 (2009) 572-577.
  • [8] J. T. Guo, L. Y. Sheng, Y. Xie, V. E. Ovcharenko, H. Q. Ye, Microstructure and Mechanical Properties of Ni3Al-1B Alloys Fabricated by SHS/HE, Intermetallics, 19 (2011) 137-142.
  • [9] W. Sanders, G. Sauthoff, Deformation Behaviour of Perovskite-Type Phases in the System Fe-Ni-Al-C, Intermetallics, 5 (1997) 361-375.
  • [10] V. K. Portnoi, A. V. Leonov, V. I. Fadeeva, S. A. Fedotov, Mechanochemical Synthesis in the Ni-Al-C System, Biuletyn of the Russian Academy of Sciences, 71 (12) (2007) 1693-1696.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ7-0004-0013
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