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The Relationship Between Grain Boundary Energy, Grain Boundary Complexion Transitions, and Grain Size in Ca-doped Yttria

机译:钙掺杂氧化钇中晶界能量,晶界过渡转变与晶粒尺寸的关系

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The thermal groove technique has been used to measure relative grain boundary energies in two 100 ppm Ca-doped yttria samples. The first has a normal grain size distribution and the boundaries have a bilayer of segregated Ca. In the second sample, there is a combination of large grains and small grains. The boundaries around the large grains are known to have an intergranular film. The results show that the relative energies of boundaries in the sample with normal grain growth and the boundaries around small grains far from larger grains in the second sample are similar. Also, boundaries surrounding the largest grains and small grains immediately adjacent to them have the same and significantly lower energies. The results indicate that grain boundaries with an intergranular film have a lower energy than those with bilayer segregation and that the intergranular film extends beyond the periphery of the largest grains, but not throughout the entire sample.
机译:热沟技术已用于测量两个100 ppm的掺Ca氧化钇样品中的相对晶界能。第一个具有正常的晶粒尺寸分布,并且边界具有一层隔离的Ca。在第二个样本中,有大颗粒和小颗粒的组合。已知大晶粒周围的边界具有晶间膜。结果表明,在第二个样品中,具有正常晶粒生长的样品中的边界的相对能量与远离较大晶粒的小晶粒周围的边界的能量相似。同样,围绕最大晶粒和紧邻它们的小晶粒的边界具有相同且明显较低的能量。结果表明,具有晶间膜的晶界比具有双层偏析的晶界具有更低的能量,并且晶间膜延伸超过最大晶粒的外围,但不贯穿整个样品。

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