Hydrogen Storage Properties of Ti$_{15.4}$Zr$_{30.2}$Mn$_{44}$V$_{5.4}$Сr$_5$ Alloy Produced by Induction and Arc Melting
V. А. Dekhtyarenko
Abstract
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V. А. Dekhtyarenko
Abstract
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On the example of the alloy Ti 15.4 Zr 30.2 Mn 44 V 5.4 Сr 5 , the technological scheme of producing massive ingots by the technique of induction melting in open Al 2 O 3 crucibles, which can be used in industry, is developed.This scheme ensures the absence of significant interaction between the crucible material and the melt, while maintaining the allowable content of aluminium impurities in the alloy, and thus achieving the required structure, phase composition, and hydrogen storage properties. Key words: induction melting, phase composition, Laves phase,
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On the example of the alloy Ti 15.4 Zr 30.2 Mn 44 V 5.4 Сr 5 , the technological scheme of producing massive ingots by the technique of induction melting in open Al 2 O 3 crucibles, which can be used in industry, is developed.This scheme ensures the absence of significant interaction between the crucible material and the melt, while maintaining the allowable content of aluminium impurities in the alloy, and thus achieving the required structure, phase composition, and hydrogen storage properties. Key words: induction melting, phase composition, Laves phase,
Key concepts: Materials science, Arc melting, Vacuum induction melting, Alloy, Hydrogen storage, Induction furnace, Metallurgy, Arc (geometry)