An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, spontaneously morphs into curved shapes in the absence of external loads or constraints. Using experiments and numerical simulations, we explore the role of geometry for square and rectangular samples in determining the equilibrium shape of the system, for a fixed pre-stretch. We classify the observed shapes over a wide range of aspect ratios according to their curvatures and compare measured and computed values, which show good agreement. In particular, as the bilayer becomes thinner, a bifurcation of the principal curvatures occurs, which separates two scaling regimes for the energy of the system. We characterize the transition between thes...
We investigate how thin sheets of arbitrary shapes morph under the isotropic in-plane expansion of t...
Understanding and controlling the shape of thin, soft objects has been the focus of significant rese...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Cata...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We investigate how thin sheets of arbitrary shapes morph under the isotropic in-plane expansion of t...
Understanding and controlling the shape of thin, soft objects has been the focus of significant rese...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Cata...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
An elastic bilayer, consisting of an equibiaxially pre-stretched sheet bonded to a stress-free one, ...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We discuss spontaneously bent configurations of pre-stretched bilayer sheets that can be obtained by...
We investigate how thin sheets of arbitrary shapes morph under the isotropic in-plane expansion of t...
Understanding and controlling the shape of thin, soft objects has been the focus of significant rese...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Cata...