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Fcc solid solution alloy films formed in immiscible Fe-Ag system and their mechanical behaviors

机译:Fe-Ag不混溶体系中形成的FCC固溶合金膜及其力学行为

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Fe-Ag alloy films were deposited by magnetron sputtering. Fe K edge X-ray absorption near-edge structure (XANES) was performed by synchrotron radiation to evidence the structure of the films. Annealing experiments were carried out to study their stability. The hardness and elastic modulus were measured by nanoindentation. The experimental and calculated XANES spectra both reveal that Fe atoms replace part of Ag atoms and supersaturated fcc Ag (Fe) solid solution alloy films are formed up to 38 at.% Fe. The solid solutions are stable and begin to precipitate at 400 ℃ The elastic modulus increases with the increase of Fe concentration and satisfies the rule of mixtures. The hardness of the as-deposited alloy film is larger than that calculated based on the rule of mixtures. The mechanism responsible for the enhancement of the hardness is discussed in terms of Labusch model of solid solution hardening.
机译:通过磁控溅射沉积Fe-Ag合金膜。 Fe K边缘X射线吸收近边缘结构(XANES)是通过同步辐射进行的,以证明薄膜的结构。进行了退火实验以研究其稳定性。硬度和弹性模量通过纳米压痕法测量。实验和计算得出的XANES光谱均表明,Fe原子代替了部分Ag原子,并且形成了高达38 at。%Fe的过饱和fcc Ag(Fe)固溶合金膜。固溶体稳定,在400℃时开始析出。弹性模量随Fe浓度的增加而增加,满足混合规则。所沉积的合金膜的硬度大于根据混合规则计算的硬度。根据固溶硬化的Labusch模型讨论了负责提高硬度的机理。

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