Formation of carbide phases upon the mechanosynthesis of the (Fe0.93Cr0.07)75C25 alloy compared with other carbide-forming processes
- 作者: Volkov V.A.1, Chulkina A.A.1, El’kin I.A.1, Elsukov E.P.1
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隶属关系:
- Physicotechnical Institute, Ural Branch
- 期: 卷 117, 编号 2 (2016)
- 页面: 178-187
- 栏目: Structure, Phase Transformations, and Diffusion
- URL: https://journals.rcsi.science/0031-918X/article/view/166212
- DOI: https://doi.org/10.1134/S0031918X15100142
- ID: 166212
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详细
Methods of X-ray diffraction, differential thermal analysis, and measurements of the dynamic magnetic susceptibility have been used to investigate the sequence of phase transformations upon the mechanical alloying of a mixture of powders of the initial components of the composition (Fe0.93Cr.07)75C25. It has been shown that, at later stages of mechanical alloying, the phase composition is determined by the conditions of the dynamic equilibrium between the crystalline and amorphous phases. A change in the conditions of mechanical alloying leads to a shift in this equilibrium and to a change in the phase composition of the alloy. A comparison of carbide formation in the Fe–C system upon the mechanosynthesis, tempering of martensite, the saturation of iron with carbon from the gaseous medium, the quenching of the melt, and the sputtering deposition of films has been performed. Some general regularities have been established, from which it follows that an important role in phase formation upon the mechanosynthesis, just as in other abovementioned processes, is played by the thermally activated phenomena.
作者简介
V. Volkov
Physicotechnical Institute, Ural Branch
编辑信件的主要联系方式.
Email: volkov@ftiudm.ru
俄罗斯联邦, ul. Kirova 132, Izhevsk, 426000
A. Chulkina
Physicotechnical Institute, Ural Branch
Email: volkov@ftiudm.ru
俄罗斯联邦, ul. Kirova 132, Izhevsk, 426000
I. El’kin
Physicotechnical Institute, Ural Branch
Email: volkov@ftiudm.ru
俄罗斯联邦, ul. Kirova 132, Izhevsk, 426000
E. Elsukov
Physicotechnical Institute, Ural Branch
Email: volkov@ftiudm.ru
俄罗斯联邦, ul. Kirova 132, Izhevsk, 426000
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