Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7970802 | Materials Characterization | 2014 | 8 Pages |
Abstract
Microstructure evolution and mechanical properties of ultra-fine grained Ti15Mo alloy processed by high pressure torsion were investigated. High pressure torsion straining resulted in strong grain refinement as-observed by transmission electron microscopy. Microhardness and light microscopy showed two distinct regions - (i) a central region with radial material flow and low microhardness (340Â HV) and (ii) a peripheral region with rotational material flow and high microhardness (430Â HV). Positron annihilation spectroscopy showed that the only detectable defects in the material are dislocations, whose density increases with the radial distance and the number of high pressure torsion revolutions. The local chemical environment around defects does not differ significantly from the average composition.
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Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
MiloÅ¡ JaneÄek, Jakub ÄÞek, Josef Stráský, KristÃna Václavová, Petr HruÅ¡ka, Veronika Polyakova, Svetlana Gatina, Irina Semenova,