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Fracture mechanics and the adherence of viscoelastic bodies

Journal of Physics D Applied Physics · 1978 · Vol. 11(14) · pp. 1989–2023
D. MaugisM. Barquins

Abstract

The strain energy release rate G and its derivative delta G/ delta A are used to provide a general picture of the adherence of viscoelastic bodies. Two bodies in contact on an area A are in equilibrium if G=w, where w is the thermodynamic (or Dupre's) work of adhesion. The quasistatic force of adherence is the load corresponding to delta G/ delta A=0. When G>w, the separation of the two bodies starts, and can be seen as the propagation of a crack in mode I. Three geometries are investigated: adherence of spheres, adherence of punches, and peeling. The variation of energies with the area of contact is given, and the kinetics of crack propagation are studied. The theory is supported by experiments on the adherence of polyurethane to glass.

Adhesion, Friction, and Surface InteractionsForce Microscopy Techniques and ApplicationsMechanical Behavior of CompositesQuasistatic processViscoelasticityFracture mechanicsStrain energy release rateMaterials scienceWork (physics)Composite materialAdhesionMechanicsContact mechanics
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638
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References
32
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References
The effect of surface roughness on the adhesion of elastic solids
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1975 · 959 citations
Viscoelastic Properties of Polymers
Journal of The Electrochemical Society · 1961 · 13,470 citations
The adhesion and surface energy of elastic solids
Journal of Physics D Applied Physics · 1971 · 732 citations
Thin-film peeling-the elastic term
Journal of Physics D Applied Physics · 1975 · 834 citations
Surface energy and the contact of elastic solids
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1971 · 7,843 citations
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