By D Gandy; J Shingledecker; Ramaswamy Viswanathan; Electric Power Research Institute.; et al
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5, by taking advantage of the memory effect of retained austenite and undertaking heat treatment so as to maintain the original prior austenite grains, grain refinement is avoided in the HAZ even of 9%Cr steel not including boron, and creep strength is not declined (7). Fig. 4 Effect of nitrogen on creep properties of B-added 9Cr steel Fig. 5 Creep life vs. heating temperature relationship for FG HAZ and HAZ with memory effect 16 The foregoing observations reflect the results of laboratory research, but developed steels must conform to the composition ranges of specification, meaning that there are strict limitations on chemical composition and heat treatment conditions in the context of expressing desired creep strength.
Accordingly, in the context of this project and as presented in Fig. ) and accurate creep strength prediction technologies together with existing data (strength/ structure/ chemical composition). The platform resulting from the alloy design guidelines and strength prediction technology developed in this project, as well as from databases and analysis tools, will support a plant development program that is proceeding separately, and will serve to shape fundamental technology not only for A-USC power plants, but for the overall development of power plant materials in Japan.
Tanaka, T. Takahashi, A. Shiibashi, J. Iwasaki, S. Takano and S. Izumi, “Refurbishment of Aged PC Power Plants with Advanced USC Technology”, Fifth Int. Conf. on Advances in Materials Technology for Fossil Power Plants, Marco Island, Florida, Oct. 3-5, (2007). 3. F. Masuyama, “Advanced Power Plant Developments and Material Experiences in Japan”, J. Lecomte-Beckers, et al. ), Materials for Advanced Power Engineering, Part I, Forschungszentrum Juerich GmbH, Germany, (2006), 175-187. 4. F. Abe, M.
Advances in materials technology for fossil power plants : proceedings from the sixth International Conference, August 31-September 3, 2010, Santa Fe, New Mexico, USA by D Gandy; J Shingledecker; Ramaswamy Viswanathan; Electric Power Research Institute.; et al