4.7 Article

CeO2 doped Al2O3 composite ceramic coatings fabricated on γ-TiAl alloys via cathodic plasma electrolytic deposition

Journal

JOURNAL OF ALLOYS AND COMPOUNDS
Volume 788, Issue -, Pages 632-638

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2019.02.065

Keywords

gamma-TiAl alloy; Cathodic plasma electrolytic deposition; Composite coating; Doping

Funding

  1. Science and Technology Program for Research and Development of Shaanxi Province [2018JZ5004]

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CeO2 doped Al2O3 composite ceramic coatings were fabricated on TiAl alloys via cathodic plasma electrolytic deposition technique in 0.3 mol/L Al(NO3)(3) ethanol electrolytes containing different concentrations of Ce(NO3)(4). The effects of CeO2 doping contents on microstructures, elemental compositions, mechanical properties, high temperature oxidation resistance at 850 degrees C, and wear resistance against GCr15 balls at 200 degrees C of the coatings were investigated. The results indicated that the contents of CeO2 in composite coatings increased with increasing concentration of Ce(NO3)(4), and composite coatings were composed of alpha-Al2O3 mainly, gamma-Al2O3, and a little CeO2. The doping of CeO2 helped to improve the phase inversion from gamma-Al2O3 to alpha-Al2O3. The crystallization and wear resistance of composite coatings increased due to the doping of CeO2. In the electrolyte containing 0.015 mol/L Ce(NO3)(4), the coating was the most uniform and compact, and of the best high temperature oxidation resistance and mechanical properties. (C) 2019 Elsevier B.V. All rights reserved.

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