Abstract—The adhesion between thin elastic films/coatings and ductile substrates can be measured using a wedge test, wherein a long sharp edge is impressed through the film into the substrate. The resulting plastic deformation causes delamination between the film and the substrate. The extent of the delamination can be correlated with the crack driving force to determine the toughness of the interface. Results are presented that relate the energy release rate and mode-mixity to the stresses: both residual and those induced by the impression. Numerical and asymptotic results are presented for the strain transferred to the coating. The numerical results verify that the asymptotics provide accurate closed-form solutions when the delamina-tions...
Delamination of residually stressed thin film strips is analyzed to expose the dependence on strip w...
10.1016/j.engfracmech.2009.07.016Engineering Fracture Mechanics76142272-2280EFME
The interface toughness of a thin coating/compliant substrate system is estimated based on the evolu...
Surfaces are more and more used to add specific properties to materials towards multifunctional sys...
The objective of this work is to study indentation-induced delamination of a strong film from a duct...
The interface adhesion strength (or interface toughness) of a thin film/substrate system is often as...
Abstract. A cohesive zone model is proposed and analyzed for steady-state peeling of a thin rate-ind...
The wedge delamination test has been investigated using the finite element method (FEM). Results of ...
In this work, a finite element method was performed to simulate the spherical indentation of a ducti...
We present here a novel experimental/numerical protocol to extract the fracture toughness of the thi...
The effect on an interlayer on the toughness of an interface between a ductile thin film and an elas...
We present here a novel experimental/numerical protocol to extract the fracture toughness of the thi...
The effect on an interlayer on the toughness of an interface between a ductile thin film and an elas...
Scratching of thin coatings on hard substrates is studied experimentally and numerically, in the lat...
In the present work, the mechanics of the stress transfer from a ductile substrate to a brittle coat...
Delamination of residually stressed thin film strips is analyzed to expose the dependence on strip w...
10.1016/j.engfracmech.2009.07.016Engineering Fracture Mechanics76142272-2280EFME
The interface toughness of a thin coating/compliant substrate system is estimated based on the evolu...
Surfaces are more and more used to add specific properties to materials towards multifunctional sys...
The objective of this work is to study indentation-induced delamination of a strong film from a duct...
The interface adhesion strength (or interface toughness) of a thin film/substrate system is often as...
Abstract. A cohesive zone model is proposed and analyzed for steady-state peeling of a thin rate-ind...
The wedge delamination test has been investigated using the finite element method (FEM). Results of ...
In this work, a finite element method was performed to simulate the spherical indentation of a ducti...
We present here a novel experimental/numerical protocol to extract the fracture toughness of the thi...
The effect on an interlayer on the toughness of an interface between a ductile thin film and an elas...
We present here a novel experimental/numerical protocol to extract the fracture toughness of the thi...
The effect on an interlayer on the toughness of an interface between a ductile thin film and an elas...
Scratching of thin coatings on hard substrates is studied experimentally and numerically, in the lat...
In the present work, the mechanics of the stress transfer from a ductile substrate to a brittle coat...
Delamination of residually stressed thin film strips is analyzed to expose the dependence on strip w...
10.1016/j.engfracmech.2009.07.016Engineering Fracture Mechanics76142272-2280EFME
The interface toughness of a thin coating/compliant substrate system is estimated based on the evolu...