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Ogawa, T. Takahasi and T. Fujita: Thermal and Nuclear Power (in Japanese), 1987, 38, 84. 6. M. Ozaki, N. Nisimura and F. Masuyama: Abstracts of 120th Meeting of Japan Inst. Metals, 1997, 183. 7. G. Kalwa, K. Haarmann and J. K. Janssen: Metall. Soc. of AIME, Topical Conf Ferritic Alloys for Use in Nuclear Energy Technology, Snowbird, UT, 19-23 June 1983. 48 ADVANCED HEAT RESISTANT STEELS FOR POWER GENERATION 8. K. Yoshikawa, A. Iseda, H. Teranishi, F. Masuyama, T. Daikoku and H. Haneda: Int. Conf.
Subsequently, power plants with steam temperatures ranging from 593 to 610°C have been successively built, and a study is already under way to implement a temperature of 625°C class using ferritic steels. For steels used for high temperature components in power plants, good 33 34 ADVANCED HEAT RESISTANT STEELS FOR POWER GENERATION mechanical properties, corrosion resistance and fabric ability are generally required, and creep strength in particular is the most important property for high temperature and high pressure applications.
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. The steam temperature of 600°Cfor modern power plant has already been realised, and a goal for the future is the 625°C class with ferritic steels. T 91IP 91 was developed in the early 1980sand was subsequently widely used for the high-temperature components of power boilers.