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Coarsening of Ni-Ge solid-solution precipitates in 'inverse' Ni_3sGe alloys

机译:在_3s内重新填充时会粗略地显示

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摘要

The morphological evolution and coarsening kinetics of Ni-Ge solid solution precipitates from supersaturated solutions of hypostoichiometric Ni_3Ge were investigated in alloys containing from 22.48 to 23.50 at.% Ge at 600,650 and 700 ℃. The particles evolve from spheres to cuboids, though the flat portions of the interfaces are small. At larger sizes the precipitates coalesce into discus shapes, and are sometimes boomerang-shaped in cross section after intersection. The rate constant for coarsening increases strongly with equilibrium volume fraction, much more so than predicted by current theories; this is very different from the coarsening behavior of Ni_3Ge precipitates in normal Ni-Ge alloys and of Ni-Al precipitates in inverse Ni_3Al alloys. The activation energy for coarsening, 275.86 ±24.17 kJ/mol, is somewhat larger than the result from conventional diffusion experiments, though within the limits of experimental error. Quantitative agreement between theory and experiment, estimated using available data on tracer diffusion coefficients in Ni_3Ge, is fair, the calculated rate constants exceeding measured ones by a factor of about 15. The particle size distributions are not in very good agreement with the predictions of any theory. These results are discussed in the context of recent theories and observations.
机译:在600,650和700℃的含22.48至23.50 at。%Ge的合金中研究了次计量化学计量Ni_3Ge过饱和溶液中Ni-Ge固溶体沉淀物的形貌演化和粗化动力学。尽管界面的平坦部分很小,但粒子从球形演变为长方体。较大尺寸的沉淀物会聚成铁饼状,相交后的横截面有时呈飞旋镖状。粗化速率常数随平衡体积分数的增加而大大增加,远大于当前理论所预测的。这与普通Ni-Ge合金中Ni_3Ge析出物和逆Ni_3Al合金中Ni-Al析出物的粗化行为有很大不同。粗糙化的活化能为275.86±24.17 kJ / mol,尽管在实验误差范围内,但仍比常规扩散实验的结果大一些。使用现有的Ni_3Ge示踪剂扩散系数数据估算的理论与实验之间的定量一致性是合理的,计算出的速率常数比测得的常数大约15倍。颗粒大小分布与任何预测值均不太吻合理论。在最近的理论和观察的背景下讨论了这些结果。

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