A new gradient elasticity formulation is proposed for a one-dimensional linear elastic inhomogeneous rod. In the new formulation, similar to the differential relation between the local strain and the gradient enhanced strain in the classical models of gradient elasticity, a differential relation is proposed for the Young’s modulus. Analytical and finite element solutions of the proposed formulation are derived. Results of the proposed model are compared with a classical model of gradient elasticity for a model problem of carbon nanotube reinforced polymer composite
International audienceA computational homogenization method to determine the effective parameters of...
Theories on intrinsic or material length scales find applications in the modeling of size-dependent ...
Abstract: The behavior of most materials is influenced by inhomogeneously distributed microscale pro...
The one-dimensional modulus gradient (E-grad) model proposed in Gülaşık et al. (2018) is extended to...
Numerous contributions can be found in the recent literature exploiting the nonlocal strain gradient...
Some applications of the gradient theory of elasticity to composite materials are discussed. A brief...
The equivalence between nonlocal and gradient elasticity models is investigated by making reference ...
International audienceA new stress-gradient elasticity theory has recently been proposed by Forest &...
Small-scale effects in nanorods with Young moduli which are functionally graded in the cross-section...
Nowadays, the modified nonlocal strain gradient theory provides a mathematically well-posed and tech...
International audienceA stress-gradient material model was recently proposed by Forest and Sab [Mech...
Key words: gradient elasticity, higher-order continuum Summary. Gradient elasticity models have been...
AbstractA micromechanics-based approach for the derivation of the effective properties of periodic l...
International audienceA micromechanics-based approach for the derivation of the effective properties...
International audienceA computational homogenization method to determine the effective parameters of...
Theories on intrinsic or material length scales find applications in the modeling of size-dependent ...
Abstract: The behavior of most materials is influenced by inhomogeneously distributed microscale pro...
The one-dimensional modulus gradient (E-grad) model proposed in Gülaşık et al. (2018) is extended to...
Numerous contributions can be found in the recent literature exploiting the nonlocal strain gradient...
Some applications of the gradient theory of elasticity to composite materials are discussed. A brief...
The equivalence between nonlocal and gradient elasticity models is investigated by making reference ...
International audienceA new stress-gradient elasticity theory has recently been proposed by Forest &...
Small-scale effects in nanorods with Young moduli which are functionally graded in the cross-section...
Nowadays, the modified nonlocal strain gradient theory provides a mathematically well-posed and tech...
International audienceA stress-gradient material model was recently proposed by Forest and Sab [Mech...
Key words: gradient elasticity, higher-order continuum Summary. Gradient elasticity models have been...
AbstractA micromechanics-based approach for the derivation of the effective properties of periodic l...
International audienceA micromechanics-based approach for the derivation of the effective properties...
International audienceA computational homogenization method to determine the effective parameters of...
Theories on intrinsic or material length scales find applications in the modeling of size-dependent ...
Abstract: The behavior of most materials is influenced by inhomogeneously distributed microscale pro...