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By D Gandy; J Shingledecker; Ramaswamy Viswanathan; Electric Power Research Institute.; et al

ISBN-10: 1615037241

ISBN-13: 9781615037247

ISBN-10: 1615038981

ISBN-13: 9781615038985

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Additional info for Advances in materials technology for fossil power plants : proceedings from the sixth International Conference, August 31-September 3, 2010, Santa Fe, New Mexico, USA

Example text

91, Fig. 6 presents the relationships between creep rupture strength and the Mo content, the Nb content in VX, the partitioning ratio of Mo in M23C6 and bcc (matrix), and the C content in VX. With respect to Mo, solid solution in M23C6 (rather than in the matrix) is shown to increase creep rupture strength. In creep strength enhanced ferritic steels, growth Fig. 6 Relationship between creep rupture strength and chemical content in matrix and precipitates 17 of the martensite lath structure occurs due to coarsening of M23C6 precipitated at the grain boundaries, accompanying the progress of creep.

9 presents the creep rate - time curves for the developed steel with and without boron. Although the creep rate is dramatically reduced in the transient creep region for both materials, the creep rate steadies after 3000h in the case of the boron-doped steel, and 19 then decreases. It is clear that this reduction in the long-term creep rate is due to increased grain boundary precipitation of the Laves phase, induced by the boron addition. Note that this borondoped steel is still undergoing testing (at over 14,000h).

Financial support from NEDO (New Energy and Industrial Technology Development Organization) is greatly acknowledged. The author is deeply indebted to the members of Subgroup on High Temperature Creep of the Consortium for their support in writing this paper. References 1. F. Masuyama, “History of Power Plants and Progress in Heat Resistant Steels”, ISIJ International, 41 (2001), 612 – 625. 2. M. Fukuda, H. Sone, E. Saito, Y. Tanaka, T. Takahashi, A. Shiibashi, J. Iwasaki, S. Takano and S. Izumi, “Refurbishment of Aged PC Power Plants with Advanced USC Technology”, Fifth Int.

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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

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