Creep, fatigue and creep-fatigue behaviour of martensitic/bainitic steels and nickel-based alloys and their welded joints at the temperature range 500°C–750°C

Author:

Osorio Daniel1,Gotti Arianna2,Kauffmann Florian1,Klenk Andreas1,Weihe Stefan1

Affiliation:

1. Materials Testing Insitute - University of Stuttgart, Stuttgart, Germany

2. RINA Consulting - CSM S.p.A, Rome, Italy

Funder

Research Fund for Coal and Steel

Publisher

Informa UK Limited

Subject

Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Ceramics and Composites

Reference33 articles.

1. Materials for Advanced Ultra-Supercritical Fossil-Fuel Power Plants: Materials Properties, Microstructure, and Component Behavior

2. Di Gianfrancesco A, editor. Materials for ultra-supercritical and advanced ultra-supercritical power plants. woodhead Publishing; 2016. p. 469–510.

3. Zhang S, Takahashi Y (2014). Evaluation of high temperature strength of a Ni-base alloy 740H for advanced ultra-supercritical power plant. In Advances in Materials Technology for Fossil Power Plants: Proceedings from the Seventh International Conference, October 22-25, 2013 Waikoloa, Hawaii, USA (p. 242). ASM International.

4. Verification of Long-term Creep Rupture Properties and Microstructure Stability of Ni based Alloy 45Ni-24Fe-23Cr-7W-Ti Parent Metal and Weldment

5. Weld Behavior of Martensitic Steels and Ni-based Alloys for High Temperature Components

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