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Effects of Hydrogen Annealing, Sulfur Segregation and Diffusion on the CyclicOxidation Resistance of Superalloys: A Review

机译:氢退火,硫离析和扩散对高温合金抗循环氧化性能的影响

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This review is based on the phenomenon of improved oxide scale adhesion fordesulfurized superalloys. The proposed adhesion mechanism involves sulfur interfacial segregation and scale-metal bond weakening. Sulfur surface segregation on superalloys is examined as a function of temperature and sulfur content and related to classical behavior predicted by the McLean isotherm. Effective desulfurization to less than 1 ppmw can be accomplished by hydrogen annealing and is governed by sulfur diffusion kinetics in nickel. Hydrogen annealing results in excellent cyclic oxidation resistance for a number of advanced superalloys. The concept of a critical sulfur content is discussed in terms of practical annealing conditions and section thicknesses.

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