Kinetics of diffusion interaction in the Ti-NiCr system layered composites

The results of investigation of the diffusion interaction kinetics at the boundary of explosion welded Ti-NiCr system compositions during heat treatment are presented. The structure, chemical and phase composition of the formed diffusion zones are also studied. It is shown that the layered diffusion...

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Main Authors: Bogdanov Artem, Kulevich Vitaliy, Shmorgun Victor, Kamalov Emil
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/50/e3sconf_interagromash2023_02023.pdf
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author Bogdanov Artem
Kulevich Vitaliy
Shmorgun Victor
Kamalov Emil
author_facet Bogdanov Artem
Kulevich Vitaliy
Shmorgun Victor
Kamalov Emil
author_sort Bogdanov Artem
collection DOAJ
description The results of investigation of the diffusion interaction kinetics at the boundary of explosion welded Ti-NiCr system compositions during heat treatment are presented. The structure, chemical and phase composition of the formed diffusion zones are also studied. It is shown that the layered diffusion zone is formed at a temperature below the eutectoid transformation. Diffusion zone consists of solid solutions based on Ti2Ni, TiNi, and TiNi3 intermetallic compounds, as well as chromium-based solid solution inclusions along the boundary with the NiCr alloy. An increase in temperature above the eutectoid transformation leads to an intensification of the growth of the diffusion zone and the diffusion of nickel into the titanium alloy with the formation of a eutectoid structure in it. The use of alloyed titanium alloys instead of commercially pure titanium does not affect the phase composition of the formed diffusion zones, but slows down the diffusion processes.
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spelling doaj.art-a6ffdc8817504969b06c2a2962bb2e9e2023-08-21T09:02:17ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014130202310.1051/e3sconf/202341302023e3sconf_interagromash2023_02023Kinetics of diffusion interaction in the Ti-NiCr system layered compositesBogdanov Artem0Kulevich Vitaliy1Shmorgun Victor2Kamalov Emil3Volgograd State Technical UniversityVolgograd State Technical UniversityVolgograd State Technical UniversityVolgograd State Technical UniversityThe results of investigation of the diffusion interaction kinetics at the boundary of explosion welded Ti-NiCr system compositions during heat treatment are presented. The structure, chemical and phase composition of the formed diffusion zones are also studied. It is shown that the layered diffusion zone is formed at a temperature below the eutectoid transformation. Diffusion zone consists of solid solutions based on Ti2Ni, TiNi, and TiNi3 intermetallic compounds, as well as chromium-based solid solution inclusions along the boundary with the NiCr alloy. An increase in temperature above the eutectoid transformation leads to an intensification of the growth of the diffusion zone and the diffusion of nickel into the titanium alloy with the formation of a eutectoid structure in it. The use of alloyed titanium alloys instead of commercially pure titanium does not affect the phase composition of the formed diffusion zones, but slows down the diffusion processes.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/50/e3sconf_interagromash2023_02023.pdf
spellingShingle Bogdanov Artem
Kulevich Vitaliy
Shmorgun Victor
Kamalov Emil
Kinetics of diffusion interaction in the Ti-NiCr system layered composites
E3S Web of Conferences
title Kinetics of diffusion interaction in the Ti-NiCr system layered composites
title_full Kinetics of diffusion interaction in the Ti-NiCr system layered composites
title_fullStr Kinetics of diffusion interaction in the Ti-NiCr system layered composites
title_full_unstemmed Kinetics of diffusion interaction in the Ti-NiCr system layered composites
title_short Kinetics of diffusion interaction in the Ti-NiCr system layered composites
title_sort kinetics of diffusion interaction in the ti nicr system layered composites
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/50/e3sconf_interagromash2023_02023.pdf
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AT shmorgunvictor kineticsofdiffusioninteractioninthetinicrsystemlayeredcomposites
AT kamalovemil kineticsofdiffusioninteractioninthetinicrsystemlayeredcomposites