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首页> 外文期刊>Journal of Materials Research >Erratum: 'A comparison of pseudomorphic bcc phase stability in Zr/Nb and Ti/Nb thin film multilayers' [J. Mater. Res. 19, 707 (2004]
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Erratum: 'A comparison of pseudomorphic bcc phase stability in Zr/Nb and Ti/Nb thin film multilayers' [J. Mater. Res. 19, 707 (2004]

机译:勘误表:“ Zr / Nb和Ti / Nb薄膜多层膜的拟晶bcc相稳定性比较” [J.母校Res。 19,707(2004)

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摘要

A series of Nb-rich Zr/Nb and Ti/Nb multilayers were sputter deposited. Upon a reduction in thickness, a pseudomorphic bcc phase was stabilized in the Zr and Ti layers. X-ray and electron diffraction techniques were used to confirm these phase transformations. The change in phase stability was modeled by the competition between volumetric and interfacial components of the total free energy of a unit bilayer representing the multilayer. An outcome of this model is the ability to plot phase stability diagrams for multilayers, referred to as biphase diagrams, as a function of bilayer thickness and volume fraction. A comparison of the phase stability boundary between hcp/bcc and bcc/bcc for these two systems has shown that the bcc Ti's pseudomorphic phase stabilization is maintained for a much larger layer thickness as compared to Zr. Atom probe compositional profiles of the Ti/Nb multilayers have indicated that the Nb layers interdiffused into the Ti layers thus helping to facilitate the bcc Ti phase stability in the Ti/Nb multilayers.
机译:溅射沉积了一系列富Nb的Zr / Nb和Ti / Nb多层膜。厚度减小后,Zr和Ti层中的拟晶bcc相得以稳定。 X射线和电子衍射技术用于确认这些相变。相稳定性的变化通过代表双层的单元双层的总自由能的体积和界面成分之间的竞争来建模。该模型的结果是能够绘制多层的相稳定性图(称为双相图)作为双层厚度和体积分数的函数。比较这两个系统的hcp / bcc和bcc / bcc之间的相稳定性边界,结果表明,与Zr相比,对于更大的层厚度,bcc Ti的拟晶相稳定度得以保持。 Ti / Nb多层的原子探针组成图表明,Nb层相互扩散到Ti层中,因此有助于促进Ti / Nb多层中bcc Ti相的稳定性。

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