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Phase transformations in Ti-Nb-Ta and Ti-Nb-Ta-Zr alloys

机译:Ti-Nb-Ta和Ti-Nb-Ta-Zr合金的相变

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Phase transformations in solution treated and quenched Ti-(13-26) Nb-(22-38) Ta (wt.%) and Ti-(13-35.5) Nb-(5-22) Ta-(4-7.2) Zr alloys have been studied. It has been observed that phase transformations in these alloys are sensitive to both composition and cooling rate. In ternary alloys, water and oil quenching resulted in the formation of orthorhombic martensite (α″) in a retained β+ω_(athermal) matrix, whereas slower cooling showed evidence of fine α and ω_(isothermal) formation within the β matrix. Increase of Nb+Ta content decreases the volume percentage of martensite. Moreover, addition of Zr stabilized the β phase, lowered the martensite start temperature and suppressed ω formation. Finally, dynamic moduli of air cooled quaternary alloys showed that the modulus was sensitive to the composition, a minima at Nb/Ta ratio of 12.0 and 5 at% Zr being observed, this minimum in dynamic modulus being consistent with ω phase suppression.
机译:Ti-(13-26)Nb-(22-38)Ta(wt。%)和Ti-(13-35.5)Nb-(5-22)Ta-(4-7.2)Zr的固溶和淬火处理后的相变已经研究了合金。已经观察到这些合金中的相变对组成和冷却速率均敏感。在三元合金中,水和油的淬火导致在残留的β+ω_(非热)基体中形成斜方马氏体(α”),而冷却速度变慢,则表明在β基体中形成了细的α和ω_(等温)。 Nb + Ta含量的增加会降低马氏体的体积百分比。此外,添加Zr使β相稳定,降低了马氏体的起始温度并抑制了ω的形成。最后,气冷四元合金的动态模量表明该模量对成分敏感,在Nb / Ta比为12.0和Zr为5 at%时观察到最小值,动态模量的最小值与ω相抑制相一致。

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