Experimental Reinvestigation of Ni-Zr System

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Abstract:

Phase equilibria in the Ni-Zr system were experimentally reinvestigated by means of differential thermal, electron microprobe, X-Ray diffraction and metallographic analyses of the alloys, which were prepared by arc melting and then annealed at 900°C during 2 weeks. The temperatures of equilibria reactions in Ni-Zr systems were specified and phase diagram Ni-Zr was reconstructed.

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Solid State Phenomena (Volume 194)

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14-20

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November 2012

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[1] S.J. Pang, T. Zhang, K. Asami, Formation of Bulk Glassy Ni-(Co-)Nb-Ti-Zr Alloys with High Corrosion Resistance. Mat. Trans. 43 12 (2002) 1771–1773.

DOI: 10.2320/matertrans.43.1771

Google Scholar

[2] V. Ivanchenko, T. Kosorukova, M. Samohin, S. Samohin, Yu. Butenko, Patent of Ukraine on useful model 26254 (2007).

Google Scholar

[3] M.E. Kirkpatrick, W.L. Larsen, Phase Relationships in the Nickel-Zirconium and Nickel-Hafnium Alloy System, Trans. ASM. 54 (1961) 580-590.

Google Scholar

[4] S.A Pogodin, V.I. Sokorobogatova, Alloys of Nickel – Zirconium, Izv. Sekt. Fiz.-Khim. Anal., Inst. Obshch. Neorg. Khim , Akad. Nauk SSSR. 25 (1954) 70-80.

Google Scholar

[5] E.T. Hayes; A.H. Roberson; O.G Paasche, The Ni-Zr Phase Diagram, Trans. ASM. 45 (1953) 893-900.

Google Scholar

[6] E. Smith, R.W. Guard, Investigations of the nikel-rich portion of the system Ni-Zr, Trans. AIME. 209 (1957) 1189-1190.

Google Scholar

[7] D. Kramer, On the nickel-rich end of the Zirconium-Nikel phase diagram, Trans. AIME. 215 (1959) 256-258.

Google Scholar

[8] L. Bsenko, The Hf-Ni and Zr-Ni systems in the region 65 – 80 at.% Ni, J. Less-Common Met. 63, 2 (1979) 171-179.

DOI: 10.1016/0022-5088(79)90241-8

Google Scholar

[9] J.C. Gachon, M. Dirand, J. Hertz, Enthalpic and Structural studies of the NiZr System, J. Less-Common Met. 92 (1983) 307-315.

DOI: 10.1016/0022-5088(83)90497-6

Google Scholar

[10] P. Forey; J.L. Glimois; J.L. Feron, Etude structurale des alliages ternaires (Ni1 − xCux)5Zr, J. Less-Common Met. 124 (1986) 21-27.

DOI: 10.1016/0022-5088(86)90473-x

Google Scholar

[11] F.R. Eshelman, J.F. Smith, The Structure of Zr2Ni7, Acta Crystallogr. B 28 (1972) 1594-1600.

Google Scholar

[12] C. Becle; B. Bourniquel; G. Develey; M. Saillard, The Intermetallic compound Ni3Zr, J. Less-Common Met. 66 (1979) 59-66

DOI: 10.1016/0022-5088(79)90195-4

Google Scholar

[13] M.E. Kirkpatrick, J.F Smith., W.L. Larsen, Structure of the Intermediate Phases Ni10Zr7 and Ni10Hf7, Acta Cryst. 15 (1962) 894-903.

Google Scholar

[14] J.L. Glimois, C. Becle,. G. Develey, J.M. Moreau, Crystal structure of the intermetallic compound Ni11Zr9, J. Less-Common Met. 64 (1979) 87-90

DOI: 10.1016/0022-5088(79)90135-8

Google Scholar

[15] M.E. Kirkpatrick; J.F. Smith; W.L. Larsen, The Structures of NiZr2, NiZr and their Hafnium Analogs, Acta Cryst. 15 (1962) 252-255.

DOI: 10.1107/s0365110x62000602

Google Scholar

[16] E.E. Havinga, H. Damsma, Hokkeling P., Compounds and pseudo-binary alloys with the CuAl2(C16)-type structure I. Preparation and X-ray results, J. Less-Common Met. 27, 2 (1972) 169-186.

DOI: 10.1016/0022-5088(72)90028-8

Google Scholar

[17] P. Nash, C.S. Jayanth, The Ni−Zr (Nickel-Zirconium) system, Bull. Alloy Phase Diagrams 5 2 (1984) 144–148

DOI: 10.1007/bf02868950

Google Scholar

[18] N. Wang, C. Li, Z. Du, F. Wang, Experimental study and thermodynamic re-assessment of the Ni–Zr system, Computer Coupling of Phase Diagrams and Thermochemistry. 31 (2007) 413–421

DOI: 10.1016/j.calphad.2007.07.001

Google Scholar

[19] http://www.ing.unitn.it/~maud/

Google Scholar

[20] V. Petkov, V. Markiv, V. Gorsky, Compounds with the structural type MgCu2 in the Hf, Ni alloys, Bulletin of the Academy of SciencesUSSR: Metals. 2 (1972) 188-192.

Google Scholar

[21] N.C. Popa, D. Balzar, An analytical approximation for a size-broadened profile given by the lognormal and gamma distributions, J. Appl. Crystallogr., 35 (2002) 338-346.

DOI: 10.1107/s0021889802004156

Google Scholar

[22] R.J. Hill, C.J. Howard, Quantitative phase analysis from neutron powder diffraction data using the Rietveld method, J. Appl. Crystallogr., 20 (1987) 467-474

DOI: 10.1107/s0021889887086199

Google Scholar

[23] R.W.G. Wyckoff, Crystal Structures, Second edition. Interscience Publishers, New York, 1, 1963, pp.7-83.

Google Scholar

[24] J.M. Joubert, R. Cerny, K. Yvon, M. Latroche, A. Percheron-Guegan, Refinement of the crystal structure of zirconium nickel, Zr8Ni21, Zeitschrift für Kristallographie, 213 (1998) 227-228

DOI: 10.1524/ncrs.1998.213.14.227

Google Scholar

[25] A.I. Kolesnikov, A.M. Balagurov, I.O. Bashkin, A.V. Belushkin, E.G. Ponyatovskii, M. Prager, Neutron scattering studies of ordered γ-ZrD, J. Phys.: Condens. Matter, 6 (1994) 8977-8988.

DOI: 10.1088/0953-8984/6/43/004

Google Scholar