Mode I fracture behavior of edge- and centrally-cracked nanobeams is analyzed by employing both stress-driven non-local theory of elasticity and Bernoulli–Euler beam theory. The present formulation implements the size-dependency experimentally observed at material micro- and nano-scale, by assuming a non-local constitutive law, that relates the strain to the stress in each material point of the body, through an integral convolution and a kernel. It is observed that the energy release rate decreases by increasing the nonlocality, showing the superior fracture performance of nanobeams with respect to large-scale beams
A plethora of current applicative problems of Nano-Engineering involve nanostructures interacting wi...
Size-dependent buckling of compressed Bernoulli-Euler nano-beams is investigated by stress-driven no...
In the strain-driven model of nonlocal elasticity proposed by ERINGEN, the elastic strain is defined...
The aim of the present work is to employ the two-phase local/nonlocal Stress-Driven integral Model (...
Using the nonlocal elasticity theory, this paper presents a static analysis of a microbeam according...
The instability of nanobeams rested on two-parameter elastic foundations is studied through the Bern...
The aim of the present work is to extend the two-phase local/nonlocal stress-driven integral model (...
In the present paper, the mechanical behaviour of edge-cracked nanobeams under Mixed-Mode loading is...
The aim of the present work is to extend the two-phase local/nonlocal stress-driven integral model (...
Nonlocal elastic models have attracted an increasing amount of attention in the past years, due to t...
Local elasticity is inherently size-independent. In contrast, non-local continuum mechanics allows u...
The research at hand deals with the mechanical behavior of beam-like nanostructures. Nanobeams are a...
9 pages, 5 figures.-- PACS nrs.: 46.40.-f, 46.25.-y, 46.35.+z, 07.10.Cm, 46.70.De, 46.50.+a.In this ...
The present study analyses the range of nonlocal parameters’ interaction on the buckling behaviour o...
none1noThe rapid advances in nanotechnology, nanomaterials and nanomechanics will make manufacturing...
A plethora of current applicative problems of Nano-Engineering involve nanostructures interacting wi...
Size-dependent buckling of compressed Bernoulli-Euler nano-beams is investigated by stress-driven no...
In the strain-driven model of nonlocal elasticity proposed by ERINGEN, the elastic strain is defined...
The aim of the present work is to employ the two-phase local/nonlocal Stress-Driven integral Model (...
Using the nonlocal elasticity theory, this paper presents a static analysis of a microbeam according...
The instability of nanobeams rested on two-parameter elastic foundations is studied through the Bern...
The aim of the present work is to extend the two-phase local/nonlocal stress-driven integral model (...
In the present paper, the mechanical behaviour of edge-cracked nanobeams under Mixed-Mode loading is...
The aim of the present work is to extend the two-phase local/nonlocal stress-driven integral model (...
Nonlocal elastic models have attracted an increasing amount of attention in the past years, due to t...
Local elasticity is inherently size-independent. In contrast, non-local continuum mechanics allows u...
The research at hand deals with the mechanical behavior of beam-like nanostructures. Nanobeams are a...
9 pages, 5 figures.-- PACS nrs.: 46.40.-f, 46.25.-y, 46.35.+z, 07.10.Cm, 46.70.De, 46.50.+a.In this ...
The present study analyses the range of nonlocal parameters’ interaction on the buckling behaviour o...
none1noThe rapid advances in nanotechnology, nanomaterials and nanomechanics will make manufacturing...
A plethora of current applicative problems of Nano-Engineering involve nanostructures interacting wi...
Size-dependent buckling of compressed Bernoulli-Euler nano-beams is investigated by stress-driven no...
In the strain-driven model of nonlocal elasticity proposed by ERINGEN, the elastic strain is defined...