AbstractLiquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes when exposed to external stimuli, such as mechanical deformations, heating or illumination. The deformation of LCEs result from a combination of directional reorientation of the nematic director and entropic elasticity. In this paper, we study the energetics of initially flat, thin LCE membranes by stress driven reorientation of the nematic director. The energy functional used in the variational formulation includes contributions depending on the deformation gradient and the second gradient of the deformation. The deformation gradient models the in-plane stretching of the membrane. The second gradient regularises the non-convex membrane energy ...
We discuss methods of reversibly inducing non-developable surfaces from flat sheets of material at...
We develop a mathematical model that builds on the surprising nonlinear mechanical response observed...
Soft deformation paths and domain patterns in nematic elastomers are analyzed through the minimizati...
Liquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes when expos...
AbstractLiquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes wh...
We derive the effective energy density of thin membranes of liquid crystal elastomers as the Γ -limi...
Nematic elastomers and glasses deform spontaneously when subjected to temperature changes. This prop...
We develop a molecular model of non-uniform deformations within the framework of liquid crystal rubb...
Membrane structures have a rich history of use across many disciplines and are widely used in aerosp...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
Liquid crystalline elastomers (LCEs) are shape-changing materials that exhibit large deformations in...
We start from a variational model for nematic elastomers that involves two energies: mechanical and ...
The biaxial stretching of sheets of liquid crystalline neo-Hookean elastomer has been studied in the...
65 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1999.A nematic elastomer is a rubbe...
Abstract. In this article, we study minimization of the energy of a Landau-de Gennes liquid crystal ...
We discuss methods of reversibly inducing non-developable surfaces from flat sheets of material at...
We develop a mathematical model that builds on the surprising nonlinear mechanical response observed...
Soft deformation paths and domain patterns in nematic elastomers are analyzed through the minimizati...
Liquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes when expos...
AbstractLiquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes wh...
We derive the effective energy density of thin membranes of liquid crystal elastomers as the Γ -limi...
Nematic elastomers and glasses deform spontaneously when subjected to temperature changes. This prop...
We develop a molecular model of non-uniform deformations within the framework of liquid crystal rubb...
Membrane structures have a rich history of use across many disciplines and are widely used in aerosp...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
Liquid crystalline elastomers (LCEs) are shape-changing materials that exhibit large deformations in...
We start from a variational model for nematic elastomers that involves two energies: mechanical and ...
The biaxial stretching of sheets of liquid crystalline neo-Hookean elastomer has been studied in the...
65 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1999.A nematic elastomer is a rubbe...
Abstract. In this article, we study minimization of the energy of a Landau-de Gennes liquid crystal ...
We discuss methods of reversibly inducing non-developable surfaces from flat sheets of material at...
We develop a mathematical model that builds on the surprising nonlinear mechanical response observed...
Soft deformation paths and domain patterns in nematic elastomers are analyzed through the minimizati...