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An adaptive differential quadrature element method for large deformation contact problems involving curved beams with a finite number of contact points
Journal article   Peer reviewed

An adaptive differential quadrature element method for large deformation contact problems involving curved beams with a finite number of contact points

Yu-Jia Hu, Ming Liu, Weidong Zhu and Cheng Jiang
International journal of solids and structures, Vol.115-116, pp.200-207
01/06/2017

Abstract

ADQEM Contact points Curved beam Dragging method Large deformation
Contact problems involving large deformation of curved beams are difficult to analyze due to uncertainty of contact positions and strongnonlinearity. A nonlinear large-deformation model of curved beams is formulated in arc-length coordinates. A new adaptive differential quadrature element method (ADQEM) is proposed to predict contact positions of a curved beam with a finite number of contact points, where a dragging method and continuity conditions are combined to determine the contact positions. Simulationresultsshow that the ADQEM greatly improves efficiency and accuracy of the large-deformation contact problem of the curved beam. The number of iterations in the present method does not greatly increase with the number of contact points.

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