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Interdiffusion at Room Temperature in Cu-Ni(Fe) Nanolaminates

机译:Cu-Ni(Fe)纳米层合物在室温下的相互扩散

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The decomposition of a one-dimensional composition wave in Cu-Ni(Fe) nanolaminate structures is quantified using X-ray diffraction to assess kinetics of the interdiffusion process for samples aged at room temperature for 30 years. Definitive evidence for growth to the composition modulation within the chemical spinodal is found through measurement of a negative interdiffusivity for each of sixteen different nanolaminate samples over a composition wavelength range of 2.1–10.6 nm. A diffusivity value ? of 1.77 × 10 ?24 cm 2 ·s ?1 is determined for the Cu-Ni(Fe) alloy system, perhaps the first such measurement at a ratio of melt temperature to test temperature that is greater than 5. The anomalously high diffusivity value with respect to bulk diffusion is attributed to the nanolaminate structure that features paths for short-circuit diffusion through interlayer grain boundaries.
机译:使用X射线衍射对在室温下老化30年的样品的互扩散过程的动力学进行定量,从而定量分析了Cu-Ni(Fe)纳米层状结构中一维成分波的分解。通过测量在16–10.6 nm的组成波长范围内的16个不同的纳米层压样品中的每个样品的负互扩散性,发现了化学旋节线内组分调制增长的明确证据。扩散值?对于Cu-Ni(Fe)合金系统,应确定1.77×10?24 cm 2·s?1的比率,这可能是在熔融温度与测试温度之比大于5的情况下首次进行这样的测量。异常高的扩散率值关于体扩散的原因在于纳米层压结构,其特征在于短路扩散通过层间晶界的路径。

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