Creep–fatigue crack development from short crack starters

Author:

Yan W-. T.,Holdsworth S.,Kühn I.,Mazza E.

Publisher

Informa UK Limited

Subject

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

Reference44 articles.

1. Growth of naturally initiated fatigue cracks in ferritic gas turbine rotor steels

2. Thermo-mechanical fatigue tests on uniaxial and component-like 1CrMoV rotor steel specimens

3. Holdsworth SR: ‘Factors influencing high temperature HSF crack growth rates in turbine casting steels’, in ‘Behaviour of defects at high temperatures’, 327–349; 1993, Sheffield, ESIS.

4. Viswanathan R: ‘Damage mechanisms and life assessment of high-temperature components’; 1989, Metals Park, OH, ASM International.

5. Dwell effects on high temperature fatigue damage mechanisms

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3. Characterizing crack growth behavior and damage evolution in P92 steel under creep-fatigue conditions;International Journal of Mechanical Sciences;2017-12

4. Crack opening and closure stress ratios at elevated temperatures;Materials at High Temperatures;2016-03-03

5. Creep-Fatigue Crack Growth in Power Plant Steels;Transactions of the Indian Institute of Metals;2015-12-15

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