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Automation of finite element formulations for large deformation contact problems
59
Citations
26
References
2010
Year
EngineeringMechanical EngineeringComputer-aided DesignStructural OptimizationComputational MechanicsMechanics ModelingIsogeometric AnalysisMechanicsContact MechanicAutomatic Code GenerationDeformation ModelingFinite Element FormulationsMechanical ModelingSolid MechanicsMaterial MechanicsUnstructured Mesh GenerationFinite Element MethodContact MechanicsContact FormulationsStructural MechanicsMechanics Of Materials
Abstract The aim of this paper is to present a general method for automation of finite element formulations of large deformation contact problems. A new automatic‐differentiation‐based notation is introduced that represents a bridge between the classical mathematical notation of contact mechanics and the actual computer implementation of contact finite elements. Automation of derivation of the required formulas (e.g. element residual and tangent matrix) combined with automatic code generation makes the finite element implementation possible at a moderate effort. Accordingly, several 3D contact formulations have been implemented in this work, including penalty and augmented Lagrangian treatments of contact constraints, and several contact smoothing techniques. A typical benchmark problem could thus be executed in an objective way leading to a comprehensive study of the efficiency and the accuracy of various formulations of 3D contact finite elements. Copyright © 2010 John Wiley & Sons, Ltd.
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