AbstractA solution for buckling of a stiff strip of finite width bonded to a compliant elastic half-space and subjected to uniform axial compression is presented. Approximate semi-analytical and finite element solutions are obtained and compared with a two-dimensional case of a plate on elastic foundation. The comparison demonstrates that the two-dimensional solution can be applied to predict the buckling wavelength and critical compressive strain when the width of the strip is equal to or larger than the buckling wavelength. For narrow strips, the wavelength is smaller and critical strain is higher than that of a plate on foundation
AbstractThe precisely controlled buckling of stiff thin films (e.g., Si or GaAs nano ribbons) on the...
The paper proposes a finite element systematic study of a mechanical system composed by a soft elast...
The paper deals with the elasto-plastic buckling of thin-walled Fiber Metal Laminates short columns/...
AbstractA solution for buckling of a stiff strip of finite width bonded to a compliant elastic half-...
AbstractA finite-deformation theory is developed to study the mechanics of thin buckled films on com...
This study investigates the buckling of a uni-axially compressed neo-Hookean thin film bonded to a n...
AbstractElectronic systems with large stretchability have many applications. A precisely controlled ...
We investigate the buckling and post-buckling properties of a hyperelastic half-space coated by two ...
AbstractSystems consisting of a hard layer resting on an elastic graded soft substrate are frequentl...
AbstractThin, profiled steel sheets forming the skin of concrete-filled composite wall panels and si...
AbstractNonlinear buckling of elastic thin films on compliant substrates is studied by modeling and ...
AbstractControlled buckling can impart stretchable mechanics to brittle materials when integrated as...
AbstractTensile specimens of metal films on compliant substrates are widely used for determining int...
Note:This project deals with the bifurcation buckling of perfectly plane, simply supported rectangul...
The interface toughness of a thin coating/compliant substrate system is estimated based on the evolu...
AbstractThe precisely controlled buckling of stiff thin films (e.g., Si or GaAs nano ribbons) on the...
The paper proposes a finite element systematic study of a mechanical system composed by a soft elast...
The paper deals with the elasto-plastic buckling of thin-walled Fiber Metal Laminates short columns/...
AbstractA solution for buckling of a stiff strip of finite width bonded to a compliant elastic half-...
AbstractA finite-deformation theory is developed to study the mechanics of thin buckled films on com...
This study investigates the buckling of a uni-axially compressed neo-Hookean thin film bonded to a n...
AbstractElectronic systems with large stretchability have many applications. A precisely controlled ...
We investigate the buckling and post-buckling properties of a hyperelastic half-space coated by two ...
AbstractSystems consisting of a hard layer resting on an elastic graded soft substrate are frequentl...
AbstractThin, profiled steel sheets forming the skin of concrete-filled composite wall panels and si...
AbstractNonlinear buckling of elastic thin films on compliant substrates is studied by modeling and ...
AbstractControlled buckling can impart stretchable mechanics to brittle materials when integrated as...
AbstractTensile specimens of metal films on compliant substrates are widely used for determining int...
Note:This project deals with the bifurcation buckling of perfectly plane, simply supported rectangul...
The interface toughness of a thin coating/compliant substrate system is estimated based on the evolu...
AbstractThe precisely controlled buckling of stiff thin films (e.g., Si or GaAs nano ribbons) on the...
The paper proposes a finite element systematic study of a mechanical system composed by a soft elast...
The paper deals with the elasto-plastic buckling of thin-walled Fiber Metal Laminates short columns/...