A weak formulation for a rate-independent delamination evolution with inertial and viscosity effects subjected to unilateral constraint
DOI10.4171/IFB/377zbMath1371.35287OpenAlexW2607040279MaRDI QIDQ2360098
Publication date: 23 June 2017
Published in: Interfaces and Free Boundaries (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.4171/ifb/377
viscoelasticitydelaminationunilateral constraintadhesionsecond order parabolic equationenergetic formulationrate-independent system
Monotone operators and generalizations (47H05) Small-strain, rate-independent theories of plasticity (including rigid-plastic and elasto-plastic materials) (74C05) Fracture and damage (74R99) Nonlinear constitutive equations for materials with memory (74D10) Existence problems for PDEs: global existence, local existence, non-existence (35A01) PDEs in connection with mechanics of deformable solids (35Q74) Initial-boundary value problems for first-order hyperbolic equations (35L04)
Related Items (2)
This page was built for publication: A weak formulation for a rate-independent delamination evolution with inertial and viscosity effects subjected to unilateral constraint