Improved understanding of solid surface energy and its role in the overall mechanical properties is of great interest due to the emerging manufacturing techniques of nanostructures, coatings, and synthetic/biological bilayer-polymer hybrids. Continuum numerical modeling of surface stresses efficiently incorporates a zero-thickness membrane bonded to a bulk, intrinsically accounting for surface tension and surface elasticity. Compressive surface stresses are not possible in a purely membrane formulation, ignoring the surface flexural resistance. The extension of material surfaces to account for flexural resistance, i.e., the Steigmann–Ogden model, requires spatial derivatives of second order, posing significant challenges to standard discret...
We present a computational study of bending models for the curvature elasticity of lipid bilayer mem...
We present an energy-based continuum model for the analysis of nanoscale materials where surface eff...
Experimentally measuring the elastic properties of thin biological surfaces is non-trivial, particul...
Due to larger surface to volume ratio, surfaces play a significant role at the nanoscale. Surface at...
Based on a finite element discretisation, the numerical form-finding of geometrically non-linear sur...
152 pagesThis dissertation presents part of my recent effort to understand complex surface mechanica...
AbstractLiquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes wh...
Surfaces of solids behave differently from the bulk due to different atomic rearrangements and proce...
Classical continuum mechanics often neglects the contribution of interfaces to the deformation of so...
Liquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes when expos...
International audienceA popular description of soft membranes uses the surface curvature energy intr...
With the growing interest in nanotechnology, it is becoming important to understand the nanoscale me...
Membranes have many engineering applications due to their light weight and low construction cost, as...
In this work, we present approximate analytical predictions for the contribution to the free energy ...
AbstractThe Gaussian curvature modulus κ¯ of lipid bilayers likely contributes more than 100 kcal/mo...
We present a computational study of bending models for the curvature elasticity of lipid bilayer mem...
We present an energy-based continuum model for the analysis of nanoscale materials where surface eff...
Experimentally measuring the elastic properties of thin biological surfaces is non-trivial, particul...
Due to larger surface to volume ratio, surfaces play a significant role at the nanoscale. Surface at...
Based on a finite element discretisation, the numerical form-finding of geometrically non-linear sur...
152 pagesThis dissertation presents part of my recent effort to understand complex surface mechanica...
AbstractLiquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes wh...
Surfaces of solids behave differently from the bulk due to different atomic rearrangements and proce...
Classical continuum mechanics often neglects the contribution of interfaces to the deformation of so...
Liquid crystalline elastomers (LCEs) can undergo extremely large reversible shape changes when expos...
International audienceA popular description of soft membranes uses the surface curvature energy intr...
With the growing interest in nanotechnology, it is becoming important to understand the nanoscale me...
Membranes have many engineering applications due to their light weight and low construction cost, as...
In this work, we present approximate analytical predictions for the contribution to the free energy ...
AbstractThe Gaussian curvature modulus κ¯ of lipid bilayers likely contributes more than 100 kcal/mo...
We present a computational study of bending models for the curvature elasticity of lipid bilayer mem...
We present an energy-based continuum model for the analysis of nanoscale materials where surface eff...
Experimentally measuring the elastic properties of thin biological surfaces is non-trivial, particul...