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gamma' Phase Stability and Phase Equilibrium in Ternary Co-Al-W at 900 A degrees C

机译:900 A时三元Co-Al-W中γ的相稳定性和相平衡

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Phase equilibria at 900 A degrees C in the Co-rich Co-Al-W ternary system are investigated through isothermal annealing of six alloy compositions for times up to 8000 h. The volume fraction of the L1(2)-gamma' phase co-existing with disordered FCC-gamma, B2 and D0(19) phases is found to steadily decrease with increasing annealing time indicating that it is unstable at 900 A degrees C. Additional heat treatments at 850 and 1000 A degrees C further suggest it is a nonequilibrium phase at all temperatures in the ternary system. The L1(2)-gamma' phase dissolves slowly with significant amounts remaining in some alloys after 8000 h at 900 A degrees C. However, the present work clearly indicates the microstructure is moving toward a three-phase equilibrium between gamma, D0(19), and B2. The collected compositional and phase equilibria information provide much needed data for improving the available thermodynamic assessments of the ternary Co-Al-W alloy system.
机译:通过对六种合金成分进行等温退火长达8000 h的时间,研究了富钴Co-Al-W三元体系中900 A时的相平衡。发现L1(2)-γ'相与无序FCC-γ,B2和D0(19)相共存的体积分数会随着退火时间的增加而稳定地减小,这表明它在900 A摄氏度下是不稳定的。 850和​​1000 A摄氏度的热处理进一步表明,在三元体系的所有温度下它都是非平衡相。 L1(2)-γ'相缓慢溶解,在900 A的温度下8000 h后,某些合金中仍有大量残留物。但是,目前的工作清楚地表明,微观结构正在朝着γD0(19)之间的三相平衡方向发展。 )和B2。所收集的成分和相平衡信息为改善三元Co-Al-W合金体系的可用热力学评估提供了非常需要的数据。

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