Formation of Titanium Boride in the Surface Layer of an Iron–Carbon Alloy Casting

The main stages of titanium boride formation in alloyed surface layers on iron–carbon alloy castings are considered. Surface alloying was performed by self-propagating high-temperature synthesis in alloying compositions during lost-foam casting. Titanium and ferrotitanium are used in alloying compos...

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Veröffentlicht in:Russian metallurgy Metally 2017-11, Vol.2017 (11), p.980-983
Hauptverfasser: Ovcharenko, P. G., Leshchev, A. Yu, Chekmyshev, K. E., Makhneva, T. M.
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container_title Russian metallurgy Metally
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creator Ovcharenko, P. G.
Leshchev, A. Yu
Chekmyshev, K. E.
Makhneva, T. M.
description The main stages of titanium boride formation in alloyed surface layers on iron–carbon alloy castings are considered. Surface alloying was performed by self-propagating high-temperature synthesis in alloying compositions during lost-foam casting. Titanium and ferrotitanium are used in alloying compositions to ensure synthesis, which is initiated by the melt thermal energy during casting formation. The thermal effects of the main reactions of titanium boride formation in various alloying compositions are compared. The microstructure, the phase composition, and the hardness of the alloyed surface layers are studied.
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subjects Alloying effects
Casting alloys
Castings
Chemical synthesis
Chemistry and Materials Science
Ferrotitanium
Ferrous alloys
Lost foam casting
Materials Science
Metallic Materials
Phase composition
Self propagating high temperature synthesis
Surface alloying
Surface layers
Temperature effects
Thermal energy
Titanium base alloys
Titanium diboride
title Formation of Titanium Boride in the Surface Layer of an Iron–Carbon Alloy Casting
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