Various beam theories are formulated in literature using the nonlocal differential constitutive relation proposed by Eringen. A new variational framework is derived in the present paper by following a consistent thermodynamic approach based on a nonlocal constitutive law of gradient-type. Contrary to the results obtained by Eringen, the new model exhibits the nonlocality effect also for constant axial load distributions. The treatment can be adopted to get new benchmarks for numerical analyses
In this article, eigenfrequencies of nanobeams under axial loads are assessed by making recourse to ...
The aim of this paper is to investigate the free and forced axial vibrations under the two various l...
A high-order nonlocal continuum beam model is proposed, which can be applied to study the transverse...
In literature various beam and rod theories are reformulated using the non- local differential const...
In this paper, the constitutive relations of nonlocal elasticity theory are presented for applicatio...
The Eringen model of nonlocal elasticity provides an effective theoretical tool to assess small-scal...
Small-scale effects in carbon nanotubes are effectively assessed by resorting to the methods of nonl...
Variational formulation for multi-walled carbon nanotubes subject to buckling is derived by the semi...
Carbon nanotubes (CNTs) are principal constituents of nanocomposites and nano-systems. CNT size-depe...
Nowadays, the modified nonlocal strain gradient theory provides a mathematically well-posed and tech...
10.1016/j.ijsolstr.2006.12.034International Journal of Solids and Structures44165289-530
Small-size effect and surface effect are two of the most specific intrinsic properties of nanostruct...
In the present paper, the non-conservative instability of a cantilever single-walled carbon nanotube...
This paper is concerned with the bending problem of nanobeams starting from a nonlocal thermodynamic...
AbstractInvestigations of wave and vibration properties of single- or multi-walled carbon nanotubes ...
In this article, eigenfrequencies of nanobeams under axial loads are assessed by making recourse to ...
The aim of this paper is to investigate the free and forced axial vibrations under the two various l...
A high-order nonlocal continuum beam model is proposed, which can be applied to study the transverse...
In literature various beam and rod theories are reformulated using the non- local differential const...
In this paper, the constitutive relations of nonlocal elasticity theory are presented for applicatio...
The Eringen model of nonlocal elasticity provides an effective theoretical tool to assess small-scal...
Small-scale effects in carbon nanotubes are effectively assessed by resorting to the methods of nonl...
Variational formulation for multi-walled carbon nanotubes subject to buckling is derived by the semi...
Carbon nanotubes (CNTs) are principal constituents of nanocomposites and nano-systems. CNT size-depe...
Nowadays, the modified nonlocal strain gradient theory provides a mathematically well-posed and tech...
10.1016/j.ijsolstr.2006.12.034International Journal of Solids and Structures44165289-530
Small-size effect and surface effect are two of the most specific intrinsic properties of nanostruct...
In the present paper, the non-conservative instability of a cantilever single-walled carbon nanotube...
This paper is concerned with the bending problem of nanobeams starting from a nonlocal thermodynamic...
AbstractInvestigations of wave and vibration properties of single- or multi-walled carbon nanotubes ...
In this article, eigenfrequencies of nanobeams under axial loads are assessed by making recourse to ...
The aim of this paper is to investigate the free and forced axial vibrations under the two various l...
A high-order nonlocal continuum beam model is proposed, which can be applied to study the transverse...