Екатерина Ильинична Суворова, Ф.Ю. Соломкин, Н. А. Архарова, Н. В. Шаренкова, Г. Н. Исаченко
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引用次数: 0

摘要

采用扫描、透射电镜、电子衍射和x射线能谱等方法研究了自发结晶(退火前后)得到的无序CrSi2-FeSi2固溶体的相组成、微观结构和界面。生长样品中含有P6422六边形结构的CrSi2相和P4/mmm四边形结构的FeSi2相。对样品进行退火处理后,FeSi2由四边形的FeSi2相变为正交改性的Cmca。在FeSi2晶粒内观察到空间群为P213的立方硅化铁FeSi的析出,以及四方结构为I4/mcm的Si和硅化硅Cr5Si3的纳米析出。在所有样品的硅化铁颗粒中均发现了浓度高达2.0 at%的间隙Cr原子杂质。退火后,CrSi2相的组织保持不变;杂质铁原子的浓度约为0.7%。建立了各相晶格间的取向关系,确定了晶格失配引起的应变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Микроструктура и фазовый состав сплава дисилицидов железа и хрома
The phase composition, microstructure, and interphase interfaces of the disordered CrSi2-FeSi2 solid solution obtained by spontaneous crystallization (before and after annealing) have been investigated by scanning, transmission electron microscopy, electron diffraction, and X-ray energy dispersive spectrometry. The as-grown samples contained the phases of CrSi2 with the P6422 hexagonal structure and FeSi2 with the P4/mmm tetragonal structure. Annealing of the samples led to the phase transformation of tetragonal FeSi2 into the orthorhombic modification Cmca. Precipitates of cubic iron monosilicide FeSi with space group P213, nano-precipitates of Si and silicon silicide Cr5Si3 with a tetragonal structure I4/mcm were observed inside the FeSi2 grains. Impurities of interstitial Cr atoms with a concentration up to 2.0 at% are found in iron (di)silicides grains in all samples. The structure of the CrSi2 phase remains unchanged after annealing; the concentration of impurity iron atoms is about 0.7 at%. Orientation relationships between the crystal lattices of the phases are established and strains due to the mismatch of the crystal lattices are determined.
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