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The Ti−V (Titanium-Vanadium) system

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  • Ti−V
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Bulletin of Alloy Phase Diagrams

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Cited References

  • 50CRA: Craighead, C.M, Simmons, O.W. and Eastwood, L.W., “Titanium Binary Alloys”Trans. AIME, 188, 485 (1950).

    Google Scholar 

  • 51MCQ: McQuillan, A.D., “The Effect of the Elements of the First Long Period on the α−β Transformation in Ti”J. Inst. Met., 80, 363 (1951).

    Google Scholar 

  • 52ADE: Adenstedt, H.K., Pequignot, J.R. and Raymer, J.M., “The Titanium-Vanadium System”Trans. AMS, 44, 990 (1952).

    Google Scholar 

  • 52PIE: Pietrokowsky, P. and Duwez, P., “Partial Titanium-Vanadium Phase”Trans. AIME, 194, 627 (1952).

    Google Scholar 

  • 52POW: Powers, R.M. and Wilhelm, H.A., Ames Laboratory ISC-228, U.S. Atomic Energy Commission Publication, September (1952); quoted from WADC Technical Report 54-502, September, 42 (1954).

  • 53DUW: Duwez, P., “The Martensite Transformation Temperature in Titanium Binary Alloys”Trans. ASM, 45, 935 (1953).

    Google Scholar 

  • 55BRO: Brotzen, F.R., Harmon, E.L. and Troiano, A.R., “Decomposition of Beta Titanium”Trans. AIME, 203, 413 (1955).

    Google Scholar 

  • 57AUS: Austin A.E. and Doig, J.R., “Structure of the Transition Phase Omega in Ti−Cr Alloys”,Trans. AIME, 209, 27 (1957).

    Google Scholar 

  • 58BAG: Bagariatskii, Yu.A., Nosova, G.I. and Tagunova, T.V., “Factors in the Formation of Metastable Phases in Titanium-Base Alloys”,Dokl. Akad. Nauk SSSR 122, 593 (1958); TR:Sov. Phys. Dokl., 3, 1014 (1958).

    Google Scholar 

  • 58LOE: Loehberg, K. and Westphal, H.Z. “Rueckbildung und Neubildung der Omega-Struktur in Titan-Vanadin-und Titan-Molybdaen-Legierungen (Formation and Decomposition of the ω Structure in Ti−V and Ti−Mo Alloys)”Z. Metallkunde, 49, 449 (1958)

    Google Scholar 

  • 58SIL: Silcock, J.M., “An X-Ray Examination of the ω Phase in TiV, TiMo and TiCr Alloys”,6, 481 (1958).

    Google Scholar 

  • 58SPA: Spachner S.A., “Comparison of the Structure of the Omega Transition Phase in Three Titanium Alloys”Trans. AIME, 212, 57 (1958).

    Google Scholar 

  • 60AGE: Ageev, N.V. and Petrova, L.A., “Stability of theβ Phase in Titanium-Vanadium Alloys”Zh. Neorg. Khim., 5, 615 (1960); TR;Russ. J. Inorg. Chem., 5, 295 (1960).

    Google Scholar 

  • 61ERM: Ermanis, F., Farrar, P.A. and Margolin, H. “A Reinvestigation of the Systems Ti−Cr and Ti−V”Trans. AIME, 221, 904 (1961).

    Google Scholar 

  • 61HAR: Harmon, E.L. and Troiano, A.R., “Beta Transformation Characteristics of Titanium Alloyed with Vanadium and Aluminum”Trans. ASM., 53, 43 (1961).

    Google Scholar 

  • 61HUL: Hulm, J.K. and Blaugher, R.D., “Superconducting Solid Solution Alloys of Transition Elements”Phys. Rev., 123, 1569 (1961).

    Article  ADS  Google Scholar 

  • 61KRI: Krisement, O., “Ausscheidung in β-Titan-Vanadium-Legierungen (Precipitation in β Ti−V Alloys)”Z. Metallkunde, 52, 695 (1961).

    Google Scholar 

  • 63BOR: Borok, B.A., Novikova, E.K., Golubeva, L.S., Ruch'eva, N.A. and Shchegoleva, R.P., “Dilatometric Investigation of Binary Alloys of Titanium”Metalloved. Term. Obrab. Met., No. 2, 32 (1963); TR:Met. Sci. Heat Treat., No. 2, (1963).

    Google Scholar 

  • 63LUZ: Luzhnikov, L.P., Novikova, V.M., and Mareev A.P., “Solubility of β-Stabilizers in α-Titanium”Metalloved. Term. Orab. Met., No 2, 13 (1963); TRMet. Sci. Heat Treat., No. 2 78 (1963).

    Google Scholar 

  • 65RAU: Raub, Ch.J. and Zwicker, U., “Superconductivity of α-Titanium Solid Solutions with Vanadium, Niobium, and Titanium”Phys. Rev. A, 137, No. 1, 142 (1965).

    ADS  Google Scholar 

  • 66GLA: Glazova, V.V.,Metallurgiya (1966). “Titanium Alloys”

  • 67MCM: McMillan J. C., Taggart, R. and Polonis, D.H., “Electron-Microscopy Studies of Transformations in a Ti−V Alloy”AIME., 239, 739 (1967).

    Google Scholar 

  • 68BLA: Blackburn, M.J. and Williams, J.C., “Phase Transformations in Ti−Mo and Ti-V Alloys”Trans. AIME, 242, 2461 (1968).

    Google Scholar 

  • 68FEDa: Fedotov, S.G., Konstantinov, K.M. and Sinodova, Ye. P., “Disintegration of Titanium-Vanadium Martensite on Continuous Heating”Fiz. Met. Metalloved., 25, 860 (1968); TR:Phys. Met. Metallogr.25, 104 (1968).

    Google Scholar 

  • 68EDb: Fedotov, S.G., Konstantinov, K.M. and Sinodova, Ye.P., Titanium Alloys for Modern Technology, N.P. Sazhin, ed., NASA TT F-596, 187 (1968). “Decomposition of Titanium-Vanadium Martensite during Heating”

  • 68HIC: Hickman, B.S., “Precipitation of the Omega Phase in Titanium-Vanadium Alloys”J. Inst. Met., 96, 330 (1968).

    Google Scholar 

  • 68KAL: Kalinin, G.P. and Elyutin, O.P., “The Anomalies of the Properties of Titanium Alloys with β Stabilizing Elements”Metalloved. Term. Obrab. Met., No. 4, 52 (1968); TR:Met. Sci. Heat Treat.; No. 4, 301 (1968).

    Google Scholar 

  • 69RUD: Rudy, E., Tech. Rept. AFML-TR-65-2, Part V (1969), Wright Patterson Air Force Base. “Compilation of Phase Diagram Data”

  • 70FEDa: Fedotov, S.G. and Konstantinov, K.M., “Effect of the Heating Rate on the Decomposition of Titanium-Vanadium Martensite”Dokl. Akad. Nauk SSSR., 191, No. 6, 1270 (1970); TR:Sov. Phys.-Dokl., 15, No. 4, 410 (1970).

    Google Scholar 

  • 70FEDb: Fedotov, S.G. and Konstantinov, K.M., “Decomposition of Unstable β Solid Solution of Titanium with 18 w/o Vanadium”Dokl. Akad Nauk SSSR, 192, No. 3, 555 (1970); TR:Sov. Phys.-Dokl., 15, No. 4, 516 (1970).

    Google Scholar 

  • 70HUA: Huang, Y.C., Suzuki S., Kaneko, H. and Sato, T.,Sci. Technol. Appl. Titanium, Proc. Intl. Conf. R.I. Jaffee, ed.; 695 (1970). “Continuous Cooling Transformation of β-Phase in Binary Titanium Alloys”

  • 70KAU: Kaufman, L. and Bernstein, H.,Computer Calculation of Phase Diagrams. Academic Press, NY (1970)

    Google Scholar 

  • 70KOU: Koul, M.K. and Breedis, J.F.. “Phase Transformations in Beta Isomorphous Titanium Alloys”Acta Metall., 18, 579 (1970).

    Article  Google Scholar 

  • 70NAR: Narayanan, G.H. and Archbold, T.F., “Comments on 'Phase Transformations in Beta Isomorphous Titanium Alloys”Acta Metall., 4, 873 (1970).

    Google Scholar 

  • 70RON: Ronami, G.N., Kuznetsova, S.M., Fedotov, S.G. and Konstantinov, K.M.. “Determination of the Phase Boundaries in Ti Systems with V, Nb, and Mo by the Diffusion Layer Method”Vestn Mosk. Univ. Ser. III Fiz. Astron., 11, No. 2, 55 (1970); TR:Vest. Mosk. Univ. Fiz., 25, 2, 186 (1970).

    Google Scholar 

  • 70RUB: Rubtsov, A.N., Olesov, Yu. G., Cherkashin, V.I. and Suchkov, A.B., “Activity of Aluminum, Vanadium and Chromium in Binary Alloys with Titanium”Izv. Akad. Nauk SSSR Metall., No. 6, 84 (1970); TR;Russ. Metall., No. 6, 56 (1970).

    Google Scholar 

  • 71KON: Konstantinov, K.M., Fedotov, S.G. and Shnyrev, G.D.,Izv. Akad. Nauk SSSR Met (1971); TR:Russ. Metall., No. 1, 114 (1971). “Phase Transformations During Rapid Heating of Titanium-Vanadium Martensite”

  • 71MCC: McCabe, K.K. and Sass, S.L., “The Initial Stages of the Omega Phase Transformation in Ti−V Alloys”Philos. Mag., 23, 957 (1971).

    Article  ADS  Google Scholar 

  • 71ROL: Rolinski, E.J., Hoch, M. and Oblinger, C.J.. “Determination of Thermodynamic Interaction Parameters in Solid V−Ti Alloys Using the Mass Spectrometer”Metall. Trans., 2, 2613 (1971).

    Article  Google Scholar 

  • 72FED: Fedotov, S.G. and Konstantinov, K.M., “Structural Features and Instability of β Solid Solutions in the System Ti−V”New. Constr. Matls.-Titanium Akad. Nauk SSSR, 48 (1972).

  • 72HAM: Hammond, C., “Orthorhombic Martensites in Titanium Alloys”Scr. Metall., 6, 569 (1973).

    Article  Google Scholar 

  • 72IKA: Ikawa, H., Shin, S. and Masaki, M., “Continuous Cooling Transformation in Binary α+β and Metastable β Titanium Alloys”Yosetsu Gakhai-Shi, 41, No. 4, 394 (1972).

    Google Scholar 

  • 72OKA: Oka, M., Lee, C.S., and Shimizu, K., “Transmission Electron Microscopy Study of Face-Centered Orthorhombic Martensite in Ti-12.6 % V Alloy”Metall. Trans., 3, 37 (1972).

    Article  Google Scholar 

  • 72ROL: Rolinski, E.J., Hoch, M. and Oblinger C.J., “Determination of Thermodynamic Interaction Parameters in Solid V−Ti−Cr Alloys Using the Mass Spectrometer”Metall. Trans., 3, 37 (1972).

    Article  Google Scholar 

  • 72RON: Ronami, G.N., Kuznetsova, S.M., Fedotov, S.G. and Konstantinov, K.M., “Die Darstellung von Phasengebieten in Zustandsdiagrammen einiger supraleitender Systeme mit Hilfe der Elektronenstrahl-Mikroanalyse (Determination of Phase Equilibria of Superconducting Alloys Using the Mass Spectrometer)”Kristall und Technik, 7, 615 (1972).

    Article  Google Scholar 

  • 72SAS: Sass, S.L. and Borie, B., “The Symmetry of the Structure of the ω Phase in Zr and Ti Alloys”J. Appl. Cryst., 5, 236 (1972).

    Article  Google Scholar 

  • 73FED: Fedotov, S.G.,Sci. Technol. Appl. Titanium, Proc. Intl. Conf., R.I. Jaffee, ed., 871 (1973). “Peculiarities of Changes in Elastic Properties of Titanium Martensite”

  • 73IKA: Ikawa, H., Shin, S., Miyagi, M. and Morikawa, M.,Sci. Technol. Appl. Titanium, Proc. Intl. Conf., R.I. Jaffee, ed., 1545 (1973). “Some Fundamental Studies on the Phase Transformation from Beta Phase to Alpha Phase in Titanium Alloys”

  • 73PAT: Paton, N. E. and Williams, J. C.,Scr. Metall., 7, 647 (1973) “The Influence of Oxygen Content on the Athermal Beta-Omega Transformation”

    Article  Google Scholar 

  • 73SHU: Shushkanov, V. M., Moroz, L. S., Obukhovskii, V. V., Kapitonova, N. P. and Ivanova, N. V.,Izv. Akad. Nauk SSSR Met., No. 4, 221 (1973); TR:Russ. Metall., No.4, 156 (1973). “Solubility of Vanadium in α-Titanium”

    Google Scholar 

  • 73WIL: Williams, J. C.,Sci. Technol. Appl. Titanium, Proc. Intl. Conf., R. I. Jaffee, ed.; 1433 (1973). “Kinetics and Phase Transformations”

  • 74LYA: Lyasotskaya, V. S., Kolachev, B. A., Fedotov, S. G., Konstantinov, K. M. and Sovalova, E. G.,Stali Splavy Tsvet Met. Kuibyshev, 136 (1974). “Transformations in Quenched Ti-V Alloys During Heating”

  • 74DON: Donohue, J., J. Wiley and Sons, New York (1974),The Structures of the Elements

  • 74MOL: Molokanov, V. V. and Budberg, P. B.,Dokl. Akad. Nauk SSSR, 215, No. 5, 1125 (1974); TR:Russ. J. Phys. Chem., 49, No. 3, 445 (1975). “Phase Structure of Ti-V Alloys”

    Google Scholar 

  • 75AGE: Ageyev, N. V., Guseva, L. N. and Dolinskaya, L. K.,Izv. Akad. Nauk SSSR Met., 4, 151 (1975); TR:Russ. Metall., 4, 113 (1975). “Metastable Phases in Quenched Titanium-Molybdenum and Titanium-Vanadium Alloys and the Influence of Small Quantities of Oxygen on Them”

    Google Scholar 

  • 75CHEa: Chernov, D. B. and Shinyaev, A. Ya.,Zh. Fiz. Khim., 48, No. 3, 762 (1975). “Use of a Model of Regular Solutions for the Analysis of Phase Equilibriums in the Titanium-Vanadium System”

    Google Scholar 

  • 75CHEb: Chernov, D. B. and Shinyaev, A. Ya.,Izv. Akad. Nauk SSSR Met., No. 5, 212 (1975); TR:Russ. Metall., No. 5. 167 (1975). “Calculation of the Interaction Parameters of Titanium with Vanadium, Niobium and Molybdenum”

    Google Scholar 

  • 75COL: Collings, E. W.,J. Less-Common Med., 39, 63 (1975), “Magnetic Studies of Omega Phase Precipitation and Aging in Titanium-Vanadium Alloys”

    Article  Google Scholar 

  • 75MAR: Marchukova, L. V., Matveeva, N. M. and Kornilov, I. I.,Izv. VUZ Tsvetn. Metall., No. 3, 131 (1975). “Phase Equilibria and Certain Properties of V-Ti Alloys”

    Google Scholar 

  • 76KAL: Kale, G. B., Khera, S. K. and Tiwari, G. P.,Trans. Indian Inst. Met., 29, No. 6, 422 (1976). “Interdiffusion Studies in Titanium-Vanadium System”

    Google Scholar 

  • 76WIL: Williams, J. C., Proc. TMS-AIME, Heat Treat. Comm., 191 (1976). “Precipitation in Titanium-Base Alloys”

  • 77MOL: Molokanov, V. V., Chernov, D. B. and Budberg, P. B.,Metalloved. Term. Obrab. Met. No. 8, 60 (1977); TR:Met. Sci. Heat Treat., No. 8, 704 (1977). “Solubility of Vanadium in α Ti”

    Google Scholar 

  • 78GUS: Guseva, L. N. and Dolinskaya, L. K.,Krist. Strukt. Svoistva Met. Splavov, 59 (1978). “Formation Conditions of Athermal Omega Phase In Alloys of Titanium with Transition Elements”

  • 78OKA: Oka, M. and Taniguchi, Y.,J. Jpn. Inst. Met., 42, No. 8, 814 (1978). “Stress-Induced Products in Metastable Beta Titanium-Molybdenum and Titanium-Vanadium Alloys”

    Google Scholar 

  • 80LEI: Leibovitch, Ch. and Rabinkin, A.,Calphad, 4 No. 1, 13 (1980), “Metastable Diffusionless Equilibria in Titanium-Molybdenum and Titanium-Vanadium Systems under High Pressure Conditions”

    Article  Google Scholar 

  • 80SMI: Smith, J. F.,Bull. of Alloy Phase Diagrams,2(1), (1981): “Vanadium Assessment”

  • 80VOH: Vohra, Y. K., Menon, E. S. K., Sikka, S. K. and Krishnan, R. (to be published in Acta Metall).

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Thermodynamic calculations have been made using computer programs generously made available by E.-Th. Henig and H. L. Lukas, of the Max-Planck Institute, Stuttgart, Federal Republic of Germany. This work was supported by Office of Naval Research funds through the Joint Program on Critical Compilations of Physical and Chemical Data coordinated by the Office of Standard Reference Data, National Bureau of Standards. Bibliography through 1979. Dr. Murray is the ASM/NBS Data Program's Category Editor for binary titanium alloys.

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Murray, J.L. The Ti−V (Titanium-Vanadium) system. Bulletin of Alloy Phase Diagrams 2, 48–55 (1981). https://doi.org/10.1007/BF02873703

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