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Validating computed grain boundary energies in fcc metals using the grain boundary character distribution

机译:使用晶界特征分布验证 fcc 金属中计算出的晶界能

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摘要

The grain boundary character distribution (GBCD) is a direct measurement that can be determined from a single planar section. Since the GBCD is inversely related to the grain boundary energy distribution, it offers a useful metric for validating grain boundary energy calculations. Comparisons between the measured GBCD and calculated energies for 388 grain boundaries in Al show that, for boundaries with a statistically reliable number of observations, including general, S3, 27, 211 and (1 1 1} twist boundaries, the GBCD and calculated grain boundary energy have weighted correlation coefficients of approximately 0.9, reproducing both qualitative and quantitative trends seen in simulations. GBCDs for Ni and Al are positively correlated, as predicted by simulation. By combining GBCD measurements with simulation results, we validate grain boundary energy simulations in both low and high stacking fault energy metals.
机译:晶界特征分布 (GBCD) 是一种直接测量,可以从单个平面截面确定。由于GBCD与晶界能量分布成反比,因此它为验证晶界能量计算提供了一个有用的指标。对Al中388个晶界的测量GBCD与计算能量的比较表明,对于具有统计上可靠的观测值的边界,包括一般边界、S3、27、211和(1 1 1}扭曲边界),GBCD和计算出的晶界能量的加权相关系数约为0.9,再现了模拟中看到的定性和定量趋势。正如仿真预测的那样,Ni 和 Al 的 GBCD 呈正相关。通过将GBCD测量结果与仿真结果相结合,我们验证了低堆积和高堆积断层能量金属的晶界能量模拟。

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