Microstructures and Phases in Electron Beam Additively Manufactured Ti-Al-Mo-Z-V/CuAl9Mn2 Alloy

Author:

Zykova Anna1,Nikolaeva Aleksandra1ORCID,Panfilov Aleksandr1ORCID,Vorontsov Andrey1ORCID,Nikonenko Alisa1,Dobrovolsky Artem1,Chumaevskii Andrey1ORCID,Gurianov Denis1ORCID,Filippov Andrey1ORCID,Semenchuk Natalya1ORCID,Savchenko Nikolai1ORCID,Kolubaev Evgeny1,Tarasov Sergei1ORCID

Affiliation:

1. Institute of Strength Physics and Materials Science, Siberian Branch of Russian Academy of Sciences, Tomsk 634055, Russia

Abstract

Electron beam additive manufacturing from dissimilar metal wires was used to intermix 5, 10 and 15 vol.% of Ti-Al-Mo-Z-V titanium alloy with CuAl9Mn2 bronze on a stainless steel substrate. The resulting alloys were subjected to investigations into their microstructural, phase and mechanical characteristics. It was shown that different microstructures were formed in an alloy containing 5 vol.% titanium alloy, as well as others containing 10 and 15 vol.%. The first was characterized by structural components such as solid solution, eutectic intermetallic compound TiCu2Al and coarse grains of γ1-Al4Cu9. It had enhanced strength and demonstrated steady oxidation wear in sliding tests. The other two alloys also contained large flower-like Ti(Cu,Al)2 dendrites that appeared due to the thermal decomposition of γ1-Al4Cu9. This structural transformation resulted in catastrophic embrittlement of the composite and changing of wear mechanism from oxidative to abrasive.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

General Materials Science

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