Experimental and numerical investigations on fretting fatigue in a bridge‐flat component using a stress life prediction model

Author:

Zhang Xiyuan1234,Wei Dasheng1234,Yang Shun1234ORCID

Affiliation:

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

2. Collaborative Innovation Center for Advanced Aero‐Engine Beijing China

3. Laboratory of Structural Strength and Vibration of Aero‐ & Astro‐Engines Beijing China

4. Jiangxi Research Institute Beihang University Nanchang China

Abstract

AbstractThe study investigated the fretting fatigue behavior of a bridge‐flat component, utilizing a flat specimen with two bridge‐type pads tested under cyclic loading. Numerical simulations were also carried out using the finite element method. Firstly, precise calculations of contact stress were performed with the material's elastoplastic model. Secondly, the stress distribution on the maximum stress cross‐section was extracted, and the stress gradient was computed. Finally, a stress fatigue life prediction model considering the stress gradient was proposed, and the predicted life was compared with the test life. The results of the study revealed that the specimens exhibited high stress gradients at the edges of the contact region during the bridge‐flat tests. In comparison with plain fatigue, fretting fatigue life was significantly reduced. The life prediction model proposed in this paper demonstrated good accuracy for predicting fretting fatigue.

Funder

National Major Science and Technology Projects of China

National Natural Science Foundation of China

Publisher

Wiley

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