Koiter\u27s nonlinear plate theory is used to simulate the wrinkling patterns observed in stretched thin elastic sheets. The phenomenon considered is associated with wrinkle patterns distributed over the interior of the sheet, in regions where the stretching and bending energies are of the same order of magnitude. Numerical solutions to several equilibrium boundary-value problems are obtained by the method of dynamic relaxation based on a dissipative dynamical system and compared with existing experimental, numerical, and analytical results
textA finite element analysis approach is used to determine the susceptibility to wrinkles for thin ...
The wrinkling of a thin elastic bi-annular plate with piecewise-constant mechanical properties, subj...
The buckling and wrinkling of thin films has recently seen a surge of interest among physicists, bio...
Koiter\u27s nonlinear plate theory is used to simulate the wrinkling patterns observed in stretched ...
A two-dimensional theory of plates and shells derived from three-dimensional finite elasticity is pr...
Numerically simulating deformations in thin elastic sheets is a challenging problem in computational...
AbstractA thin sheet clamped at opposite ends and stretched develops wrinkles parallel to the direct...
A thin sheet clamped at opposite ends and stretched develops wrinkles parallel to the direction of t...
AbstractWrinkles are commonly observed in stretched thin sheets and membranes. This paper presents a...
Thin elastic sheets develop surface undulations, or wrinkles, in the presence of small compressive s...
When a thin rectangular sheet is clamped along two opposing edges and stretched, its inability to ac...
A laterally confined thin elastic sheet lying on a liquid substrate displays regular undulations, ca...
Short-wavelength wrinkles that appear on an initially stretched thin elastic plate under transverse ...
textThin sheets and membrane structures are widely used in space applications such as solar sails, s...
A two-dimensional plate theory, valid for finite elastic deformations with small strains, is derived...
textA finite element analysis approach is used to determine the susceptibility to wrinkles for thin ...
The wrinkling of a thin elastic bi-annular plate with piecewise-constant mechanical properties, subj...
The buckling and wrinkling of thin films has recently seen a surge of interest among physicists, bio...
Koiter\u27s nonlinear plate theory is used to simulate the wrinkling patterns observed in stretched ...
A two-dimensional theory of plates and shells derived from three-dimensional finite elasticity is pr...
Numerically simulating deformations in thin elastic sheets is a challenging problem in computational...
AbstractA thin sheet clamped at opposite ends and stretched develops wrinkles parallel to the direct...
A thin sheet clamped at opposite ends and stretched develops wrinkles parallel to the direction of t...
AbstractWrinkles are commonly observed in stretched thin sheets and membranes. This paper presents a...
Thin elastic sheets develop surface undulations, or wrinkles, in the presence of small compressive s...
When a thin rectangular sheet is clamped along two opposing edges and stretched, its inability to ac...
A laterally confined thin elastic sheet lying on a liquid substrate displays regular undulations, ca...
Short-wavelength wrinkles that appear on an initially stretched thin elastic plate under transverse ...
textThin sheets and membrane structures are widely used in space applications such as solar sails, s...
A two-dimensional plate theory, valid for finite elastic deformations with small strains, is derived...
textA finite element analysis approach is used to determine the susceptibility to wrinkles for thin ...
The wrinkling of a thin elastic bi-annular plate with piecewise-constant mechanical properties, subj...
The buckling and wrinkling of thin films has recently seen a surge of interest among physicists, bio...