B0770 Advances in material technology for fossil power by R. Viswanathan, W. T. Bakker, J. D. Parker

By R. Viswanathan, W. T. Bakker, J. D. Parker

The greater than forty papers during this quantity disguise the improvement and trying out of ferritic steels for complex energy plant, microstructure and creep habit, fabrication and houses. harm improvement and engineering purposes

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Unfortunately the tested heat of IN783 suffered from notch embrittlement under creep conditions at 550°C. The second candidate material Haynes242 did not show sufficient relaxation strength in uniaxial relaxation and model tests. INCO recently supplied a modified heat of IN783, which showed no notch sensitivity in short-term tests. This modified version will again be evaluated within COST 522. 7. • • • • Summary and Conclusions The 9-12% Cr steels have been improved so far in the last 15-20 years that today thermal power plant with live steam parameters of 610°C/300bar and re-heat temperatures of up to 630°C can be built.

High Temperature Forged Components for Advanced Steam Power Plants, 6th COST Conference, 5-7. , Modified 9Cr-lMo Cast Steels for Casings of improved Coal-fired Power Plants; 3rd International EPRI-Conference on Improved Coal-Fired Power Plants, 2-4. , Steam Turbine Materials- High Temperature Castings, SthLiege COST Conference, 3-6. , Long-Term Investigations of specimens of 24 Production Components manufactured from the Advanced Martensitic 10%Cr-Steels for 600°C Steam Turbines, Sth International Charles Parsons Conference, 3-7.

Thereby the permanent energy supply for mankind shall also become realistic. 1. Introduction Development activity of 12% Cr heat resistant steels increased significantly in the early 1940's in England in response to the need for gas turbine disks and steam turbine blades. These activities continued through the 1950's, resulting in the development of H46[1][3], FV 448[2][3],and other steels which provide higher creep rupture strength. In the United States at that time, AISI-422[3], and other super 12% Cr steels were introduced and have been used for steam turbine blades and bolting materials for turbine cylinders.

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