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Crack face contact in X‐FEM using a segment‐to‐segment approach
53
Citations
25
References
2009
Year
Numerical AnalysisEngineeringFracture OptimizationMechanical EngineeringComputational MechanicsFracture ModelingMechanics ModelingMechanicsMesh SequencesDeformation ModelingBoundary Element MethodWhole Crack SegmentCrack Face ContactMechanical BehaviorMechanical ModelingSolid MechanicsFinite Element MethodX‐fem InterpolationCrack FormationStructural MechanicsDynamic Crack PropagationNumerical MethodsMechanics Of MaterialsFracture Mechanics
Abstract In this study, we propose a segment‐to‐segment contact formulation (mortar‐based) that uses Lagrange's multipliers to establish the contact between crack faces when modeled with the extended finite element method (X‐FEM) in 2D problems. It is shown that, in general, inaccuracies arise when the contact is formulated following a point‐to‐point approach. This is due to the non‐linear character of the X‐FEM interpolation along the crack faces that leads to crack face interpenetration. However, the segment‐to‐segment approach optimizes the fulfilment of the contact constraints along the whole crack segment, and in practice the contact is modeled precisely. Convergence studies for mesh sequences have been performed, showing the advantages of the proposed methodology. Copyright © 2009 John Wiley & Sons, Ltd.
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