Strain distribution of a fir‐tree tenon/mortise structure under combined high and low cycle fatigue loads

Author:

Yan Han1,Ding Xin2ORCID,Huang Dawei134,Yan Xiaojun1345,Yang Xingyu1,Liu Haohao1

Affiliation:

1. School of Energy and Power Engineering Beihang University Beijing China

2. Research and Development Center Gas Turbine Corporation Ltd. of Aviation Engine Corporation of China Shenyang China

3. National Key Laboratory of Science and Technology on Aero‐Engine Aero‐thermodynamics Beijing China

4. Beijing Key Laboratory of Aero‐Engine Structure and Strength Beijing China

5. Collaborative Innovation Center of Advanced Aero‐Engine Beijing China

Abstract

AbstractThe fir‐tree tenon/mortise structure in areo‐engine suffers from the combined high and low cycle fatigue (CCF) loads during service. The structural integrity of the tenon/mortise structure is significantly affected by the local strain distribution, while the strain value under the CCF loads is difficult to acquire. In this study, a simulated specimen of tenon/mortise structure is designed, and the CCF test is carried out using a divided‐path loading fixture to avoid interference between the high cycle fatigue (HCF) loads and the low cycle fatigue (LCF) loads. The high speed digital image correlation (DIC) method is adopted to acquire the real‐time strain distribution during CCF test. According to the strain results, the critical position of the mortise and its strain variation are determined. The high cycle strain of the mortise is proportional to the vibration amplitude of the tenon. The experimental results can provide basis for strength and life assessment.

Funder

National Science and Technology Major Project

Fundamental Research Funds for the Central Universities

Publisher

Wiley

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