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Effect of Al addition on mechanical properties and microstructure of refractory AlxHfNbTaTiZr alloys
Journal article   Peer reviewed

Effect of Al addition on mechanical properties and microstructure of refractory AlxHfNbTaTiZr alloys

Chun-Ming Lin, Chien-Chang Juan, Chia-Hsiu Chang, Che-Wei Tsai and Jien-Wei Yeh
Journal of Alloys and Compounds, Vol.624, pp.100-107
05/03/2015

Abstract

High-entropy alloys Mechanical property Refractory alloys Solution hardening
This study developed a series of refractory Al x HfNbTaTiZr high-entropy alloys (HEAs) with an aim to improve strength, and reduce density of the very ductile base alloy HfNbTaTiZr. Despite the diversity of crystal structures among the constituent elements, all the HEAs are single solid solution phase with body-centered cubic (BCC) structure. The addition of Al significantly improves the strength but reduces the ductility due to large solution hardening. The linear relation between yield strength and atomic percentage of Al suggests that the strengthening effect of a certain element in a single-phase HEA alloy can be explained based on quasi-binary alloy concept. Crack formations in deformed AlHfNbTaTiZr alloy with the lowest fracture strain are mainly along the boundaries between dendrite and interdendrite. This agrees with its large deviation of Al content and thus strength between dendrite and interdendrite.

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