Effect of Microstructure and Environment on Static Crack Growth Resistance in Alloy 706

Author:

Yang Ling,Hawk Jeffrey A.,Duquette David J.,Schwant Robin C.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference33 articles.

1. P.W. Schilke and R.C. Schwant, Alloy 706 Use, Process Optimization, and Future Directions for GE Gas Turbine Rotor Materials, Superalloys 718, 625, 706 and Various Derivatives, 2001, p 25–34

2. P.W. Schilke, J. Pepe, and R.C. Schwant, Alloy 706 Metallurgy and Turbine Wheel Application, Superalloys 718, 625, 706 and Various Derivatives, 1994, p 1–12

3. S.V. Thamboo, L. Yang, and R.C. Schwant, Large Forgings of Alloy 706 and Alloy 718 for Land Based Gas Turbines, 14thInternational Forgemasters Meeting Weisbaden, September 2000, p 330–335

4. S. Schubert, H.J. Penkalla, and J. Rösler, Wrought Ni-Base Alloys for Rotor Shafts in Advanced USC Power Plants, Proceedings from the Fourth International Conference on Advances in Materials Technology for Fossil Power Plants, Hilton Head Island, South Carolina, October 2004, p 587–601

5. C. Berger, J. Granacher, and A. Thoma, Creep Rupture Behaviour of Nickel Base Alloys for 700°C – Steam Turbines, Superalloys 718, 625, 706 and Various Derivatives, 2001, p 489–499

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