Structure and phase composition of material based on vanadium alloy V-4.9Ti-4.8Cr and ferrite steel 17Cr-12Ni-Fe

Three-layer materials consisting of the V-4.9Ti-4.8Cr/ferrite steel 17Cr-12Ni-Fe /V-4.9Ti-4.8Cr were obtained in the paper. Phase composition and microstructure of the transition zone of the three-layer material of vanadium alloy V-4.9Ti-4.8Cr and ferrite steel 17Cr-12Ni-Fe were considered. The use...

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Bibliographic Details
Published in:MATEC Web of conferences Vol. 243. P. 00019 (1-5)
Other Authors: Kurzina, Irina A., Kalashnikov, Mark P., Popova, Natalia A. канд. техн. наук, Karakchieva, Natalia I., Dement, Taras V.
Format: Article
Language:English
Subjects:
Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000659281
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245 1 0 |a Structure and phase composition of material based on vanadium alloy V-4.9Ti-4.8Cr and ferrite steel 17Cr-12Ni-Fe  |c T. Dement, I. A. Kurzina, M. P. Kalashnikov [et al.] 
504 |a Библиогр.: 10 назв. 
520 3 |a Three-layer materials consisting of the V-4.9Ti-4.8Cr/ferrite steel 17Cr-12Ni-Fe /V-4.9Ti-4.8Cr were obtained in the paper. Phase composition and microstructure of the transition zone of the three-layer material of vanadium alloy V-4.9Ti-4.8Cr and ferrite steel 17Cr-12Ni-Fe were considered. The use of the method of direct laser growing allowed obtaining a three-layer material with qualitative interconnection of layers, as well as decreasing a multistage nature of deformation and thermal operations used when obtaining a three-layer material in earlier works. Additional thermal treatment of a three-layer alloy led to growth of matrix grains up to 100 m of the vanadium alloy. A uniform distribution of main elements V, Ti, Cr was observed in the transition zone both before and after annealing. A zone of interdiffusion of the metals amounted to 250-350 μm. 
653 |a ванадиевые сплавы 
653 |a ферритная сталь 
653 |a фазовый состав 
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655 4 |a статьи в журналах  |9 879358 
700 1 |a Kurzina, Irina A.  |9 99208 
700 1 |a Kalashnikov, Mark P.  |9 99197 
700 1 |a Popova, Natalia A.  |c канд. техн. наук  |9 105125 
700 1 |a Karakchieva, Natalia I.  |9 105452 
700 1 |a Dement, Taras V.  |9 958048 
773 0 |t MATEC Web of conferences  |d 2018  |g Vol. 243. P. 00019 (1-5)  |x 2261-236X 
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