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Iron self-diffusion in FeZr/~(57)FeZr multilayers measured by neutron reflectometry: Effect of applied compressive stress

机译:用中子反射法测量FeZr /〜(57)FeZr多层膜中的铁自扩散:施加的压缩应力的影响

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摘要

Iron self-diffusion in nanocomposite FeZr alloy has been investigated using a neutron reflectometry technique as a function of applied compressive stress. A composite target of Fe+Zr and ~(57)Fe+Zr was alternatively sputtered to deposit chemically homogeneous multilayer (CHM) structure [~(natural)Fe_(75)Zr_(25)/~(57)Fe_(57)Zr_(25)]_(10). The multilayers were deposited onto a bent Si wafer using a three-point bending device. Post-deposition, the bending of the substrate was released which results in an applied compressive stress on to the multilayer. In the as-deposited state, the alloy multilayer forms an amorphous phase, which crystallizes into a nanocomposite phase when heated at 373 K. Bragg peaks due to isotopic contrast were observed from CHM, when measured by neutron reflectivity, while x-ray reflectivity showed a pattern corresponding to a single layer. Self-diffusion of iron was measured with the decay of the intensities at the Bragg peaks in the neutron reflectivity pattern after thermal annealing at different temperatures. It was found that the self-diffusion of iron slows down with an increase in the strength of applied compressive stress.
机译:使用中子反射技术研究了纳米复合FeZr合金中铁的自扩散与所施加压缩应力的关系。交替溅射Fe + Zr和〜(57)Fe + Zr的复合靶材,以沉积化学均质的多层(CHM)结构[〜(天然)Fe_(75)Zr_(25)/〜(57)Fe_(57)Zr_ (25)] _(10)。使用三点弯曲装置将多层沉积在弯曲的Si晶片上。沉积后,基板的弯曲被释放,这导致施加到多层上的压缩应力。在沉积状态下,合金多层形成无定形相,当在373 K加热时结晶成纳米复合相。通过中子反射率测量,从CHM观察到由于同位素对比引起的布拉格峰,而X射线反射率表明对应于单层的图案。通过在不同温度下进行热退火后,中子反射率图谱中布拉格峰强度的衰减来测量铁的自扩散。已经发现,铁的自扩散随着施加的压应力强度的增加而减慢。

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