A continuum mechanics theory is established for the in-surface buckling of one-dimensional nanomaterials on compliant substrates, such as silicon nanowires on elastomeric substrates observed in experiments. Simple analytical expressions are obtained for the buckling wavelength, amplitude and critical buckling strain in terms of the bending and tension stiffness of the nanomaterial and the substrate elastic properties. The analysis is applied to silicon nanowires, single-walled carbon nanotubes, multi-walled carbon nanotubes, and carbon nanotube bundles. For silicon nanowires, the measured buckling wavelength gives Young's modulus to be 140 GPa, which agrees well with the prior experimental studies. It is shown that the energy for in-surface...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
Nowadays, nanotubes and nanowires have been in the focus of materials research due to their unique e...
Nanobending tests are widely used in the mechanical characterization of nanomaterials. However, nano...
We describe experimental and theoretical studies of the buckling mechanics in silicon nanowires (SiN...
We describe experimental and theoretical studies of the buckling mechanics in silicon nanowires (SiN...
We describe experimental and theoretical studies of the buckling mechanics in silicon nanowires (SiN...
The surface effect in the bending of nanowires (nanobeams), including cantilever nanowires and fixed...
AbstractThis paper investigates the impact of surface energy and thermal loading on the static stabi...
We have studied the scaling of controlled nonlinear buckling processes in materials with dimensions ...
We present a theoretical model to calculate the flexural rigidity of nanowires from three-dimensiona...
This paper develops the classical strain gradient elasticity theory to investigate the scale-depende...
An ab initio core-shell model is proposed to evaluate the surface effect in bending nanowires, in wh...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
The present work analyses the effect of substrate deformation during the nanowire/nanotube bending t...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
Nowadays, nanotubes and nanowires have been in the focus of materials research due to their unique e...
Nanobending tests are widely used in the mechanical characterization of nanomaterials. However, nano...
We describe experimental and theoretical studies of the buckling mechanics in silicon nanowires (SiN...
We describe experimental and theoretical studies of the buckling mechanics in silicon nanowires (SiN...
We describe experimental and theoretical studies of the buckling mechanics in silicon nanowires (SiN...
The surface effect in the bending of nanowires (nanobeams), including cantilever nanowires and fixed...
AbstractThis paper investigates the impact of surface energy and thermal loading on the static stabi...
We have studied the scaling of controlled nonlinear buckling processes in materials with dimensions ...
We present a theoretical model to calculate the flexural rigidity of nanowires from three-dimensiona...
This paper develops the classical strain gradient elasticity theory to investigate the scale-depende...
An ab initio core-shell model is proposed to evaluate the surface effect in bending nanowires, in wh...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
The present work analyses the effect of substrate deformation during the nanowire/nanotube bending t...
This talk describes a recently derive continuum model for estimating the flexural rigidity of nanowi...
Nowadays, nanotubes and nanowires have been in the focus of materials research due to their unique e...
Nanobending tests are widely used in the mechanical characterization of nanomaterials. However, nano...