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首页> 外文期刊>AIP Advances >TEM observation of nitrogen-tunable bcc–bct–fcc transformation of iron-cobalt with added vanadium
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TEM observation of nitrogen-tunable bcc–bct–fcc transformation of iron-cobalt with added vanadium

机译:钒铁 - 钴的氮可调谐BCC-BCT-FCC转化的TEM观察

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摘要

We used transmission electron microscopy (TEM) to observe tunable bcc–bct–fcc transformation of FeCo films caused by the addition of auxiliary elements. The crystal structure of the FeCo with added V was bcc, and the transformation of the bcc structure through the bct to fcc was found to depend on the N content ( x ). TEM observation revealed that bct structure with c / a = 1.12 was obtained for x = 1.7 atomic%, while fcc structure with c / a = 2 was obtained for x = 9.6 atomic%. The c/a -values depended on x , so the bcc–bct–fcc transformation of the FeCoV was tunable by N content. This research was made possible by special preventative measures taken during preparation to avoid compressive stress, which could otherwise induce the bct FeCo lattice of axial ratio c / a 1.00 to transform to bcc structure. A FeCo coating of thickness 20 nm was therefore deposited directly on a MgO substrate without any other metallic layers.
机译:我们使用透射电子显微镜(TEM)观察由添加辅助元件引起的可调谐BCC-BCT-FCC变换。添加v的FECO的晶体结构是BCC,发现通过BCT转换到FCC的BCC结构取决于N含量(x)。 TEM观察显示,对于X = 1.7原子%,获得了具有C / A = 1.12的BCT结构,而X = 9.6原子%获得C / A = 2的FCC结构。 C / A-A值依赖于X,因此FECOV的BCC-BCT-FCC转换被N内容可调。通过在准备期间采取的特殊预防措施来实现这一研究,以避免压缩应力,否则可以诱导轴向比C / A> 1.00的BCT FECO格子转变为BCC结构。因此,在没有任何其他金属层的MgO衬底上直接沉积厚度20nm的FECO涂层。

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