A thin, elastic sheet floating on the surface of a liquid bath wrinkles when poked at its center. We study the onset of wrinkling as well as the evolution of the pattern as indentation progresses far beyond the wrinkling threshold. We use tension field theory to describe the macroscopic properties of the deformed film and show that the system passes through a host of different regimes, even while the deflections and strains remain small. We show that the effect of the finite size of the sheet ultimately plays a key role in determining the location of the wrinkle pattern, and obtain scaling relations that characterize the number of wrinkles at threshold and its variation as the indentation progresses
We investigate the deformation of a thin elastic sheet floating on a liquid surface and subject to a...
This thesis presents an extensive study of wrinkling of thin polystyrene films, tens of nanometers i...
Wrinkle patterns in compressed thin sheets are ubiquitous in nature and technology, from the furrows...
A thin, elastic sheet floating on the surface of a liquid bath wrinkles when poked at its center. We...
The localized loading of an elastic sheet floating on a liquid bath occurs at scales from a frog sit...
We study the indentation of a thin elastic film floating at the surface of a liquid. We focus on the...
The localized loading of an elastic sheet floating on a liquid bath occurs at scales from a frog sit...
The wrinkling of thin elastic objects provides a means of generating regular patterning at small sca...
This thesis presents a study of two basic modes of deformation of a thin sheet: wrinkling and crumpl...
An ultrathin polymer sheet floating on a fluid forms a periodic pattern of parallel wrinkles when su...
A laterally confined thin elastic sheet lying on a liquid substrate displays regular undulations, ca...
The buckling and wrinkling of thin films has recently seen a surge of interest among physicists, bio...
The buckling and wrinkling of thin films has recently seen a surge of interest among physicists, bio...
We study the wrinkling instability induced in freely-floating polystyrene films, tens of nanometers ...
We study the dynamic coarsening of wrinkles in an elastic sheet that is compressed while lying on a ...
We investigate the deformation of a thin elastic sheet floating on a liquid surface and subject to a...
This thesis presents an extensive study of wrinkling of thin polystyrene films, tens of nanometers i...
Wrinkle patterns in compressed thin sheets are ubiquitous in nature and technology, from the furrows...
A thin, elastic sheet floating on the surface of a liquid bath wrinkles when poked at its center. We...
The localized loading of an elastic sheet floating on a liquid bath occurs at scales from a frog sit...
We study the indentation of a thin elastic film floating at the surface of a liquid. We focus on the...
The localized loading of an elastic sheet floating on a liquid bath occurs at scales from a frog sit...
The wrinkling of thin elastic objects provides a means of generating regular patterning at small sca...
This thesis presents a study of two basic modes of deformation of a thin sheet: wrinkling and crumpl...
An ultrathin polymer sheet floating on a fluid forms a periodic pattern of parallel wrinkles when su...
A laterally confined thin elastic sheet lying on a liquid substrate displays regular undulations, ca...
The buckling and wrinkling of thin films has recently seen a surge of interest among physicists, bio...
The buckling and wrinkling of thin films has recently seen a surge of interest among physicists, bio...
We study the wrinkling instability induced in freely-floating polystyrene films, tens of nanometers ...
We study the dynamic coarsening of wrinkles in an elastic sheet that is compressed while lying on a ...
We investigate the deformation of a thin elastic sheet floating on a liquid surface and subject to a...
This thesis presents an extensive study of wrinkling of thin polystyrene films, tens of nanometers i...
Wrinkle patterns in compressed thin sheets are ubiquitous in nature and technology, from the furrows...