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Additional resources for Advanced heat resistant steels for power generation
Fujita: IMechE Conf. Trans. 1997-2, Advanced Steam Plant, IMechE, 1997, 115. 12. M. Igarashi and Y. Sawaragi: Proc. Int. Con! Power Engineering - '97, 1997, Vol. 2, 107. 13. F. Masuyama, T. Yokoyama, Y. Sawaragi and A. Iseda: PVP-Vol. 288, Service Experience and Reliability Improvement: Nuclear, Fossil and Petrochemical Plants, ASME, 1994. 14. Y. Minami, K. Kimura and M. Tanimura: ASM Int. Conf. , 17-21 Sept. 1984. 15. Y. Sawaragi, K. Ogawa, S. Kato, A. Natori and S. Hirano: Sumitomo Search, 1992, 48, 50.
8. F. B. Pickering: Physical Metallurgy and the Design of Steels, Applied Science Publishers, 1978. 9. K. J. Irvine and F. B. , 1960, 195, p. 386. 10. E. Smith and J. 1 1. 11. E. Tekin and P. M. , 1965, 203, p. 715. 12. F. B. 1 1959, Special Report, 64, p. 23. 13. R. G. Baker and J. , 1959, 192, p. 257. 14. G. , Dissertation, Matallurgy Department, Leeds University 1984. , 5-717-1, Fukahori-machi, Nagasaki 851-0392, Japan ABSTRACT Steam conditions in power plants are gradually being raised with a view to energy savings and environmental protection.
This is a promising direction for austenitic steel development, placing emphasis on creep strength. An example of the application of a new alloying element to improve creep strength is Super 304H. This steel uses an addition of Cu of about 3%, which is similar to the addition of Cu in 17-14CuMo steel. " 46 ADVANCED HEAT RESISTANT ••...... c 90 c " CI) / 70 ~ 60 Q. / Q. c 40 o. c ,.. •.. 1 , GENERATION ;r '. •....... --<. m e ti) . •.. ,, ", STEELS 321H} 3QH' "" " •.. • ..... 0 , , 7 8 Fig. 12 Effect of (Ti + Nb)/C Ratio on Creep Rupture Strength of 18Cr-8NiNb Ti Steel The 20-25Cr series steels are superior to the IBCr-BNi series in resistance to high-temperature corrosion, but their creep strengths (except for Alloy 800H) are lower than those of the IBCr-8Ni series steels.
Advanced heat resistant steels for power generation by R. Viswanathan