Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7988198 | Intermetallics | 2018 | 11 Pages |
Abstract
The developed as-cast AlNbTiZr high entropy alloy (HEA) resulted in the formation of solid solution bcc dendrites along with the inter-dendritic Zr2Al intermetallic phase. Due to low-density of 5.74â¯g/cm3 and high yield strength of about 1650â¯MPa (under compression testing), the alloy exhibited high specific yield strength of approximately 287â¯kPaâ¯m3/kg. Further, the AlNbTiZr HEA showed high fracture strength of 1950â¯MPa and substantial plastic strain of approximately 17.9%. During the isothermal thermo-gravimetry analysis in the synthetic air, at 873, 973, 1073, 1173 and 1273â¯K for 3â¯h, the mass gain behavior of the alloy was nearly parabolic indicating the formation of the protective oxide layer. Further, the long-term oxidation studies of the AlNbTiZr HEA carried out in open air atmosphere for 50â¯hâ¯at 873, 1073 and 1273â¯K confirmed that the oxide layers formed were protective, intact, and spallation did not occur. Formation of complex oxides such as AlNbO4 and Ti2ZrO6 along with Al2O3, NbO, ZrO2, and TiO2 as confirmed by X-ray diffraction could have led to the sluggish oxidation kinetics of the AlNbTiZr HEA. In contrast, the HfNbTiZr HEA showed poor oxidation resistance at 873â¯K.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
J. Jayaraj, Pramote Thirathipviwat, Junhee Han, Annett Gebert,