J. Mater. Sci. Technol. ›› 2026, Vol. 264: 37-48.DOI: 10.1016/j.jmst.2025.09.046

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Unveiling the anomalous temperature-dependent corrosion behavior of nickel-based single-crystal alloy in a NaCl-aerosol atmosphere

Tiancheng Cuia, Shujiang Genga,*, Xiying Niub, Minghui Chena, Fuhui Wanga   

  1. aState Key Laboratory of Digital Steel, Northeastern University, Shenyang 110819, China;
    bHarbin Marine Boiler and Turbine Research Institute, Harbin 150078, China
  • Received:2025-06-16 Revised:2025-08-16 Accepted:2025-09-08 Published:2026-09-10 Online:2026-09-02
  • Contact: *E-mail address: gengsj@smm.neu.edu.cn (S. Geng) .

Abstract: The corrosion behavior of DD5 single crystal alloy in moist air and NaCl aerosol at 750 °C and 900 °C was investigated. At 750 °C, (Ni, Co)O is the main initial corrosion product, and the (Ni, Co)O formed on the γ phase is significantly thicker than that on the γ’ phase. After 168 h of corrosion, a bi-layer oxide scale consisting of an external (Ni, Co)O layer and an internal (Cr, Al)2O3 layer was finally formed, and the internal corrosion product was Al2O3. At 900 °C, although a thicker (Ni, Co)O layer was formed after 1 min of corrosion, the oxide scale finally developed into a multi-layer structure of (Ni, Co)O/spinel((Ni, Co)(Cr, Al)2O4)/Ta2O5/Al2O3. The continuous internal Al2O3 layer formed at 900 °C effectively reduced the corrosion rate than that at 750 °C. The corrosion mechanism of the alloy at 750 °C and 900 °C was also comprehensively discussed.

Key words: Ni-based single crystal alloy, NaCl aerosol atmosphere, High temperature corrosion, Temperature-dependent corrosion behavior