A Numerical Procedure to Obtain the Creep Parameters of the Thermal Barrier Coating

Author:

Wen Shifeng1,Zeng Xiaohu1,Xie Gongnan2

Affiliation:

1. School of Mechanics and Civil Engineering & Architecture, Northwestern Polytechnical University, Xi'an, Shaanxi 710129, China

2. School of Mechanical Engineering, Northwestern Polytechnical University, Xi'an, Shaanxi 710072, China

Abstract

Three-point bending creep test was used to understand the creep behavior of typical thin film/substrate systems—thermal barrier coating (TBC) systems. Firstly, a simplified model, which does not consider the local effect, has been set up to get an analytical relationship. The important result is that creep stress exponent of materials is equal to the creep load exponent of the steady-state deflection rate of BC specimens. Secondly, in order to consider the local effect of bending, the finite element method (FEM) has been carried out. FEM calculation shows that there is a steady stage of the creep deflection under a constant applied load. And the exponent of the steady-state creep deflection rate to the applied load is found to be equal to the creep stress exponent of materials. The creep constant of the materials can be obtained by a set of trials with assumed creep constants of materials and can be finally determined by the best fit method. Finally, the finite element results show that the influences of the friction, the thickness of TBCs, and the modulus ratio of TBC to the substrate on stress distribution are important.

Funder

Northwestern Polytechnical University

Publisher

SAGE Publications

Subject

Mechanical Engineering

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