Manufacturing Experience in an Advanced 9%CrMoCoVNbNB Alloy for Ultra-Supercritical Steam Turbine Rotor Forgings and Castings

Author:

Vanstone Rod,Chilton Ian1,Jaworski Pawel2

Affiliation:

1. Alstom Power Ltd., Rugby CV21 2NH, UK

2. Alstom Power Sp. z.o.o., Elblag 82-300, Poland

Abstract

Advanced 9–12%Cr martensitic stainless steels to enable extension of steam turbine operating temperatures beyond 565 °C have been under development since the 1980s. Steam turbines with operating temperatures approaching 600 °C based on the first generation of these improved alloys, which exploited optimized levels of Mo, W, V, Nb, and N, entered service in the 1990s. Around the same time, a second generation of advanced alloys was developed incorporating additions of Co and B to further enhance creep strength. These alloys have recently been exploited to enable steam turbines with operating temperatures of up to 620 °C, and this new generation of steam turbines is now beginning to enter service. This paper describes the background to the development of these alloys and the experience gained in their application to the manufacture of high temperature rotor forgings and castings.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference12 articles.

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3. Scarlin, R. B., Berger, C., Mayer, K. H., Thornton, D. V., and Beech, S. M., 1994, “Steam Turbine Materials: High Temperature Castings,” Proceedings of the Liege Materials for Advanced Power Engineering, COST Conference, Liege, Belgium, October 3–6.

4. Taylor, M., and Thornton, D. V., 1996, “Experience in the Manufacture of Steam Turbine Components in Advanced 9-12% Chromium Steels,” Proceedings of the IMechE Conference, Advanced Steam Plant, London.

5. Pirscher, A., Scarlin, B., and Vanstone, R., 2007, “Material Development and Mechanical Integrity Analysis for Advanced Steam Turbines,” Proceedings of the 5th International EPRI Conference on Advances in Materials Technology for Fossil Power Plant, Marco Island, FL, October 3–5.

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