Publication | Open Access
Dynamic hemivariational inequality modeling viscoelastic contact problem with normal damped response and friction
98
Citations
23
References
2005
Year
Evolution ProblemEngineeringVariational AnalysisMechanical EngineeringDynamic Hemivariational InequalityComputational MechanicsEvolution EquationFunctional AnalysisCalculus Of VariationFriction ControlDynamic ContactPseudomonotone OperatorsMechanicsContact MechanicRheologyVariational InequalitiesNonlinear ElasticityMechanical ModelingParabolic EquationVariational InequalityRheological Constitutive EquationViscoelastic Contact ProblemMechanical SystemsStructural MechanicsVibration ControlMechanics Of Materials
In this article we examine an evolution problem, which describes the dynamic contact of a viscoelastic body and a foundation. The contact is modeled by a general normal damped response condition and a friction law, which are nonmonotone, possibly multivalued and have the subdifferential form. First we derive a formulation of the model in the form of a multidimensional hemivariational inequality. Then we establish a priori estimates and we prove the existence of weak solutions by using a surjectivity result for pseudomonotone operators. Finally, we deliver conditions under which the solution of the hemivariational inequality is unique.
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