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      Quasistatic adhesive contact of visco-elastic bodies and its numerical treatment for very small viscosity

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          Abstract

          An adhesive unilateral contact of elastic bodies with a small viscosity in the linear Kelvin-Voigt rheology at small strains is scrutinized. The flow-rule for debonding the adhesive is considered rate-independent and unidirectional, and inertia is neglected. The asymptotics for the viscosity approaching zero towards purely elastic material involves a certain defect-like measure recording in some sense natural additional energy dissipated in the bulk due to (vanishing) viscosity, which is demonstrated on particular 2-dimensional computational simulations based on a semi-implicit time discretisation and a spacial discretisation implemented by boundary-element method.

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          Oscillations and concentrations in weak solutions of the incompressible fluid equations

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            Microlocal defect measures

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              Evolution of Rate-Independent Systems

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                Author and article information

                Journal
                2013-03-07
                Article
                1303.1709
                a84b7a0f-a4a8-4a2b-9cb5-fd0f5cbea438

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                math.NA

                Numerical & Computational mathematics
                Numerical & Computational mathematics

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