Finite Element Analysis of Axis Deviation between Rivet and Plate Hole

Author:

Yin Jun Qing1,Wang Zhong Qi1,Kang Yong Gang1,Li Ning1

Affiliation:

1. Northwestern Polytechnical University

Abstract

The riveting joint is the main connection method in aircraft assembly. There are some kind of rivets, such as slug rivet and protruding rivet, that riveting quality will be impacted while rivets axis are not coincident with the plate holes axis. By using the finite element method with ABAQUS software, this paper built the 3D riveting joint structure of finite element, and analyzed the axis deviation effect on the deformation, stress and strain of riveting. Through statistical data, the relationship among axis deviation value, deformation, stress and strain of rivet are built.

Publisher

Trans Tech Publications, Ltd.

Reference5 articles.

1. Li Yingjie. An Analysis of Riveting Process by Theoretical, Nonlinear Finite Element and Experimental Methods. Ph. D. Thesis. The Wichita State University, (1998).

2. Blanchot V, Daidie A. Riveted assembly modelling: study and numerical characterisation of a riveting process. Journal of Materials Processing Technology 2006; 180(1-3): 201-209.

3. Kelly B, Costello C. FEA modeling of setting and mechanical testing of aluminum blind rivets. Materials Processing Technology, 2004, 153-154: 74-79.

4. L Ping, L Yuan, et al. Stage Division and Upsetting Force Calculation for Pressing Rivet Connection. Mechanical Science and Technology for Aerospace Engineering, 2009(4): pp.514-516, In Chinese.

5. Aviation Manufacturing Engineering Handbook: Aircraft assembly. 2nd ed. Beijing: Aviation Industry Press, 2010, In Chinese.

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2. Prediction of Maximum Deformation of Single Nail Riveting Based on RBF Neural Network;Journal of Physics: Conference Series;2020-06-01

3. Finite Element Modelling and Model Updating of Riveted Joint Structure;Journal of Physics: Conference Series;2019-08-01

4. Finite element model updating of riveted joints of simplified model aircraft structure;AIP Conference Proceedings;2018

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