Life prediction approach based on the isothermal fatigue and creep damage under multiaxial thermo-mechanical loading

Author:

Ren Yan-Ping1,Shang De-Guang1,Li Fang-Dai1,Li Dao-Hang1,Tao Zhi-Qiang1,Zhang Cheng-Cheng2

Affiliation:

1. College of Mechanical Engineering and Applied Electronics Technology, Beijing University of Technology, Beijing, China

2. Commercial Aircraft Engine Ltd, Aero Engine Corporation of China, Shanghai, China

Abstract

Based on the isothermal fatigue and creep damage, a life prediction approach under multiaxial thermo-mechanical loading was proposed in this investigation. In the proposed method, the multiaxial thermo-mechanical fatigue damage during one cycle period was divided into the isothermal fatigue damage and the creep damage. In order to evaluate conservatively, the isothermal fatigue damage during one cycle period was calculated by using multiaxial fatigue damage model at the maximum temperature during the whole period, and the creep damage during one cycle period was calculated by accumulating the creep damage of all portions originated from the divided time history for the axial load component and temperature history. The life prediction results by the proposed model showed a good agreement with experimental data for nickel-base alloy GH4169 and cobalt-base Haynes188 under axial-torsional thermo-mechanical loading.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science,Computational Mechanics

Reference38 articles.

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3. An energetic approach in thermomechanical fatigue for silicon molybdenum cast iron

4. A multiresolution investigation on fatigue damage of aluminum alloys at micrometer level

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