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High-temperature Oxidation Behavior of NbZrTiTa High-entropy Alloy
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National University of Defense Technology

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    Abstract:

    The high-temperature oxidation behavior of NbZrTiTa high-entropy alloy (HEA) were characterized by cyclic oxidation test, XRD and SEM. The results reveal that the oxidation kinetics curve of NbZrTiTa HEA in the temperature range of 1000-1400 °C satisfies the parabolic law. The oxidation rate constant and oxidation activation energy achieve 1.1×10-7~1×10-6 g2.cm-4.s和97 kJ/mol, respectively. The oxidation type is internal oxidation. During high-temperature oxidation, oxygen diffuses along the TiZr-rich region with the severe lattice distortion and a large number of dislocations, then reacts with the metal components to form unsaturated oxides and saturated oxides sequentially. Because of the high activity of constituent elements and the severe lattice distortion, NbZrTiTa HEA displays an extremely high oxidation activity then exhibits strong potential as structure energetic material.

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[Wang Ruixin, Tang Yu, Li Yongyan, Ai Yuanlin, Li Shun, Zhu li’an, Ye Yicong, Bai Shuxin. High-temperature Oxidation Behavior of NbZrTiTa High-entropy Alloy[J]. Rare Metal Materials and Engineering,2020,49(7):2417~2424.]
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History
  • Received:June 01,2019
  • Revised:June 26,2019
  • Adopted:July 02,2019
  • Online: August 31,2020
  • Published: