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Effect of Mo and Nb on the phase equilibrium of the Ti–Cr–V ternary system in the non-burning β-Ti alloy region

The phase equilibria of the ternary Ti–M1–M2 (M1=Cr, V and M2=Mo, Nb) systems are described thermodynamically, especially in the non-burning β-Ti alloy region, and the ternary interaction parameters of the β-phase are derived. The phase diagrams reported previously are compared with the presented re...

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Bibliographic Details
Published in:Journal of alloys and compounds 2000-02, Vol.297 (1), p.231-239
Main Authors: Lee, Jeong Yub, Kim, Jong Hoon, Lee, Hyuck Mo
Format: Article
Language:English
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Summary:The phase equilibria of the ternary Ti–M1–M2 (M1=Cr, V and M2=Mo, Nb) systems are described thermodynamically, especially in the non-burning β-Ti alloy region, and the ternary interaction parameters of the β-phase are derived. The phase diagrams reported previously are compared with the presented results and good agreement is found. The effect of Mo or Nb additions on the properties of the Ti–Cr–V system was studied. Molybdenum is effective in terms of non-burning. It does not form an intermediate phase but expands the β-phase field. The effect of Nb addition on the Ti–Cr–V ternary system was weak.
ISSN:0925-8388
1873-4669
DOI:10.1016/S0925-8388(99)00557-5