4.6 Article

Magnetic Evaluation of Heat-Resistant Martensitic Steel Subjected to Microstructure Degradation

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Effect of Long-Term Thermal Aging on Microstructure Evolution and Creep Deformation Behavior of a Novel 11Cr-3W-3Co Martensite Ferritic Steel

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Summary: This paper focused on investigating the microstructure evolution and its effect on creep behavior in 11Cr-3W-3Co heat-resistant steel under different thermal aging times at 650 degrees C. Laves phase was found after short-term thermal aging, which gradually consumed adjacent M23C6 carbides as the aging time increased. Higher Si and P contents promoted the nucleation of Laves phase during long-term aging. The coarsening behavior of precipitated phases and the evolution of subgrain size and dislocation density were also analyzed. The creep performance of the material decreased significantly with increasing aging time, which was attributed to the coarsening of precipitates and subgrain during long-term aging.

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