Local-global method to predict distortion of aircraft panel caused in automated riveting process

Author:

Yang Di,Qu Weiwei,Ke Yinglin

Abstract

Purpose The riveting process is a metal forming process involving complex elastic-plastic deformation, which will induce a compressive residual stress field and cause local distortions in the connecting areas. Regarding to the aircraft panel assemblies with plenty of rivets, the global deformation is inevitable and undesired, leading difficulties to downstream assembly processes. This paper aims to present a new method for the local distortion calculation and the global deformation prediction of sheet panel assemblies during the automated riveting process. Design/methodology/approach In this paper, a simplified algebraic study is presented to analyze the local distortion of single countersunk rivet joint with the consideration of the barrel-like shape of the driven head and the through-thickness variations along the rivet shank. Then, an equivalent rivet unit is proposed based on the result of the algebraic study and embedded into the global-level model for the prediction of the overall distortions of riveted panels. Findings The algebraic study is able to reach a more precise contour of the deformed rivet than the traditional assumption of cylindrical deformations and rapidly determine the equivalent coefficients of the riveting unit. The result also shows an industrial acceptable accuracy of the prediction for the global deformations of the double-layered panel assemblies widely used in the aircraft panel structures. Originality/value A new local-global method for predicting the deformations of the riveted panel assembly based on the algebraic study of the local distortions is proposed to help the engineers in the early design stages or in the assembly process planning stage.

Publisher

Emerald

Subject

Industrial and Manufacturing Engineering,Control and Systems Engineering

Reference27 articles.

1. Numerical and experimental investigation of aircraft panel deformations during riveting process;Journal of Manufacturing Science and Engineering,2015

2. Study of the impact of riveting sequence, rivet pitch, and gap between sheets on the quality of riveted lap joints using finite element method;The International Journal of Advanced Manufacturing Technology,2013

3. Riveted assembly modelling: study and numerical characterisation of a riveting process;Journal of Materials Processing Technology,2006

4. Modeling and predicting of aeronautical thin-walled sheet metal parts riveting deformation;Assembly Automation,2016

5. Variation modeling of aeronautical thin-walled structures with multi-state riveting;Journal of Manufacturing Systems,2011

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