Effect of Aluminized Coating on Combined Low and High Cycle Fatigue Life of Turbine Blade at Elevated Temperature

Author:

Chen Cao1,Yan Xiaojun2,Zhang Xiaoyong3,Zhang Yingsong4,Gui Min5,Tao Min5

Affiliation:

1. School of Energy and Power Engineering, Beihang University, Beijing 100191, China; AVIC CAPDI Integration Equipment Co., Ltd., Beijing 102206, China

2. School of Energy and Power Engineering, Beihang University, Beijing 100191, China; Collaborative Innovation Center of Advanced Aero-Engine, Beijing 100191, China; National Key Laboratory of Science and Technology on Aero-Engine Aero-Thermodynamics, Beijing 100191, China; Beijing Key Laboratory of Aero-Engine Structure and Strength, Beijing 100191, China

3. School of Energy and Power Engineering, Beihang University, Beijing 100191, China; Collaborative Innovation Center of Advanced Aero-Engine, Beijing 100191, China; National Key Laboratory of Science and Technology on Aero-Engine Aero-Thermodynamics, Beijing 100191, China; Beijing Key Laboratory of Aero-Engine Structure and Strength, Beijing 100191, China e-mail:

4. School of Energy and Power Engineering, Beihang University, Beijing 100191, China; Xiangyang Hangtai Power Machinery Factory, Xiangyang 441002, Hubei, China

5. Xiangyang Hangtai Power Machinery Factory, Xiangyang 441002, Hubei, China

Abstract

Some cracks were detected on the fir-tree root of turbine blade in an in-service aero-engine, and the aluminized coating was considered to be the main cause of these cracks. To study the effect of aluminized coating on fatigue life of turbine blade, the combined low and high cycle fatigue (CCF) tests are carried out at elevated temperature on both aluminized and untreated turbine blades. Probability analysis of test data is conducted and the result indicates that the median life is decreased by 62.2% due to the effect of the aluminized coating. Further study on the mechanism of crack initiation and propagation has been conducted based on fractography and cross section morphology analysis by using scanning electron microscope (SEM), and the results indicate: (1) The aluminized coating consists of two layers, of which the inner layer is considered to contain the σ phase and it reduces the resistance to fatigue of blade. (2) Many cavities are found in the inner layer of aluminized coating, which lead to the initiation of cracks and result in the reduction of crack initiation life. (3) The marker band widths of aluminized and untreated blade are very close, which indicated the aluminized coating may have no effect on the crack propagation life of the blade.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference32 articles.

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2. The Oxidation Mechanism of Ni3Al Containing Yttrium;Oxid. Met.,1974

3. Daleo, J. A., and Boone, D. H., “Failure Mechanisms of Coating Systems Applied to Advanced Turbine Components,” ASME Paper No. 97-GT-486. 10.1115/1997-GT-486

4. Thermal Barrier Coatings for Aeroengine Applications;J. Propul. Power,2006

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