TY - JOUR
T1 - Microstructure and oxidation resistance of Si-modified aluminide coatings prepared by slurry sintering on K447A superalloy
AU - Wang, Xiyu
AU - Zhou, Kai
AU - Guo, Xiping
AU - Qiao, Yanqiang
N1 - Publisher Copyright:
© 2026 Elsevier B.V.
PY - 2026/9/15
Y1 - 2026/9/15
N2 - Si-modified aluminide coatings and pure aluminide coatings were prepared on K447A superalloy via slurry sintering method using Ni2Al3 alloy powders instead of Al powders. A double-layer coating mainly composed of β-NiAl phase was formed after sintering at 1100 °C for 1 h. Si addition promoted the growth of coating during the sintering process. A series of silicides including CrSi2, Cr5Si3, and Ni16Cr6Si7 were formed in Si-modified coatings and distributed along the NiAl grain boundaries. After oxidation at 1150 °C for 150 h, Al2O3 scale was formed on the surface of aluminide coatings and phase transformation of β-NiAl to γ’-Ni3Al occurred inside the coatings. Si addition in the coating had a significant impact on reducing oxidation mass gain and retarded the transformation of β-NiAl to γ’-Ni3Al phase during high temperature oxidation, thus improving high-temperature oxidation resistance. However, the addition of Si powders exceeding 7 wt% weakened the modification effect, and many brittle phases formed in the interdiffusion zone, thereby leading to decrease in oxidation resistance.
AB - Si-modified aluminide coatings and pure aluminide coatings were prepared on K447A superalloy via slurry sintering method using Ni2Al3 alloy powders instead of Al powders. A double-layer coating mainly composed of β-NiAl phase was formed after sintering at 1100 °C for 1 h. Si addition promoted the growth of coating during the sintering process. A series of silicides including CrSi2, Cr5Si3, and Ni16Cr6Si7 were formed in Si-modified coatings and distributed along the NiAl grain boundaries. After oxidation at 1150 °C for 150 h, Al2O3 scale was formed on the surface of aluminide coatings and phase transformation of β-NiAl to γ’-Ni3Al occurred inside the coatings. Si addition in the coating had a significant impact on reducing oxidation mass gain and retarded the transformation of β-NiAl to γ’-Ni3Al phase during high temperature oxidation, thus improving high-temperature oxidation resistance. However, the addition of Si powders exceeding 7 wt% weakened the modification effect, and many brittle phases formed in the interdiffusion zone, thereby leading to decrease in oxidation resistance.
KW - High-temperature oxidation
KW - Ni-based superalloy
KW - Si-modified aluminide coating
KW - Slurry sintering
UR - https://www.scopus.com/pages/publications/105045549981
U2 - 10.1016/j.surfcoat.2026.133797
DO - 10.1016/j.surfcoat.2026.133797
M3 - 文章
AN - SCOPUS:105045549981
SN - 0257-8972
VL - 536
JO - Surface and Coatings Technology
JF - Surface and Coatings Technology
M1 - 133797
ER -