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Thermal expansion of a glassy alloy studied using a real-space pair distribution function

机译:使用实空间对分布函数研究玻璃态合金的热膨胀

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Thermal expansion of a glassy Cu_(55)Hf_(25)Ti_(15)Pd_5 alloy studied by using reciprocal space functions is verified using a real-space pair distribution function. The experimental results obtained by real-time diffraction during heating in a synchrotron beam and their Fourier transformation processing to derive radial distribution functions indicate that both reciprocal and real-space distribution functions give good agreement in the calculation of thermal expansion data. In addition to providing structural information, these findings indicate that the change in the average atomic nearest-neighbor distance evaluated from the variation of the position of the main broad diffraction maximum can provide good thermal expansion data for metallic glasses.
机译:使用实空间对分布函数验证了使用倒数空间函数研究的玻璃态Cu_(55)Hf_(25)Ti_(15)Pd_5合金的热膨胀。在同步加速器光束加热过程中通过实时衍射获得的实验结果及其傅里叶变换处理得出的径向分布函数表明,在热膨胀数据的计算中,倒数分布函数和实空间分布函数均具有良好的一致性。除了提供结构信息之外,这些发现还表明,根据主要宽衍射最大值的位置变化评估的平均原子最近邻距离的变化可以为金属玻璃提供良好的热膨胀数据。

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