Evolution of precipitates in Ni-Co-Cr-W-Mo superalloys with different tungsten contents

来源期刊:Rare Metals2020年第6期

论文作者:Han-Sheng Bao Zhi-Hua Gong Zheng-Zong Chen Gang Yang

文章页码:716 - 724

摘    要:The Ni-Co-Cr-W-Mo system is critical for the design of nickel-based superalloys.This system stabilizes different topologically close-packed(TCP) phases in many commercially superalloys with high W and Mo contents.Scanning electron microscopy(SEM),transmission electron microscopy(TEM) and thermodynamic calculations were applied to investigate the thermodynamics of the precipitates in two different W-contained Ni-Co-Cr-WMo superalloys(Alloy 1 and Alloy 2).Computational thermodynamics verifies the experimental observation of the μ phase formation as a function of temperature and alloy chemistry,but the kinetics for the precipitation of the M6 C phase do not agree with the experimental findings.The major precipitates of Alloy 1 at temperatures of700℃ and 750℃ during long-time exposure are M23 C6,γ′ phase and MC;for Alloy 2,they are M23 C6,γ′ phase,MC,M6 C and μ phase.W addition is found to promote the precipitation of M6 C and μ phase during exposure.M6 C has higher W and lower Ni content than μ phase,whereas M6 C is an unstable phase that would transform into M12 C after 5000-h exposure at 750℃.A great quantity of needle-like μ phases precipitated after exposure at 750℃ for5000 h,which have no effect on the impact properties of Alloy 2.

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