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Grain Boundary Curvature in a Model Ni-Based Superalloy

机译:镍基高温合金的晶界曲率

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摘要

The local grain boundary (GB) curvature in a model Ni-based superalloy was measured experimentally using Dehoff’s tangent count method. The results show that, in materials containing significant amounts of second-phase particles, the curvature parameter, κ, which relates the mean local curvature to the grain size, can adopt far lower values than have been reported previously. It is also shown that the value of κ is not a constant, as is usually assumed, but instead varies both with the volume fraction of second-phase particles and with the holding time during high-temperature annealing. The lowest values for κ were obtained for high particle volume fractions and long annealing times. Because the local boundary curvature constitutes the driving force for grain growth, these observations could help to explain grain growth phenomena in heavily pinned systems.
机译:使用Dehoff的切线计数法通过实验测量了镍基高温合金模型中的局部晶界(GB)曲率。结果表明,在含有大量第二相颗粒的材料中,将平均局部曲率与晶粒尺寸相关的曲率参数κ可以采用比以前报道的低得多的值。还表明,κ值不是通常所假设的常数,而是随第二相颗粒的体积分数和高温退火期间的保持时间而变化。对于高颗粒体积分数和较长的退火时间,可以获得最低的κ值。由于局部边界曲率构成了晶粒长大的驱动力,因此这些观察结果可以帮助解释高固定系统中的晶粒长大现象。

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    Kai Song; Mark Aindow;

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    Institute of Materials Science niversity of Connecticut Storrs CT 06269-3136 USA;

    Institute of Materials Science niversity of Connecticut Storrs CT 06269-3136 USA;

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