The one-dimensional modulus gradient (E-grad) model proposed in Gülaşık et al. (2018) is extended to more general three-dimensional inhomogeneous materials with isotropic linear elastic constituents. In addition to the constitutive equations and balance relations, length scale dependent differential relations for the material parameters of isotropic linear elasticity are provided. The finite element formulation for axisymmetric problems is derived and a model problem of a soft cylindrical rod with a stiff spherical inclusion is solved. It is seen that discontinuities and/or very sharp changes in the modulus, displacement, strain and stress fields that exist in local formulations are smoothed with the proposed gradient model. Furthermore, a ...
International audienceA computational homogenization method to determine the effective parameters of...
International audienceThis paper aims at developing homogeneous, anisotropic strain-gradient continu...
International audienceMindlin's second strain gradient continuum theory for isotropic linear elastic...
The one-dimensional modulus gradient (E-grad) model proposed in Gülaşık et al. (2018) is extended to...
A new gradient elasticity formulation is proposed for a one-dimensional linear elastic inhomogeneous...
International audienceA stress-gradient material model was recently proposed by Forest and Sab [Mech...
A new model to evaluate the elastic modulus of polymer nanocomposites is developed with emphasising ...
A size-dependent strain gradient Mori-Tanaka model (SGMT) is developed by applying strain gradient e...
We present explicit upper bound estimates of the microstructural length used in simple gradient elas...
International audienceThe stress-gradient model was introduced by Forest and Sab(Mech. Res. Comm. 40...
Classical effective descriptions of heterogeneous materials fail to capture the influence of the spa...
We present a strain gradient (SG) theory to explain the strongly inverse size dependence between the...
Based on Takayanagi's two-phase model, a three-phase model including the matrix, interfacial region,...
A molecular dynamics approach based on a small-deformation mechanical response has been extended fro...
International audienceA new stress-gradient elasticity theory has recently been proposed by Forest &...
International audienceA computational homogenization method to determine the effective parameters of...
International audienceThis paper aims at developing homogeneous, anisotropic strain-gradient continu...
International audienceMindlin's second strain gradient continuum theory for isotropic linear elastic...
The one-dimensional modulus gradient (E-grad) model proposed in Gülaşık et al. (2018) is extended to...
A new gradient elasticity formulation is proposed for a one-dimensional linear elastic inhomogeneous...
International audienceA stress-gradient material model was recently proposed by Forest and Sab [Mech...
A new model to evaluate the elastic modulus of polymer nanocomposites is developed with emphasising ...
A size-dependent strain gradient Mori-Tanaka model (SGMT) is developed by applying strain gradient e...
We present explicit upper bound estimates of the microstructural length used in simple gradient elas...
International audienceThe stress-gradient model was introduced by Forest and Sab(Mech. Res. Comm. 40...
Classical effective descriptions of heterogeneous materials fail to capture the influence of the spa...
We present a strain gradient (SG) theory to explain the strongly inverse size dependence between the...
Based on Takayanagi's two-phase model, a three-phase model including the matrix, interfacial region,...
A molecular dynamics approach based on a small-deformation mechanical response has been extended fro...
International audienceA new stress-gradient elasticity theory has recently been proposed by Forest &...
International audienceA computational homogenization method to determine the effective parameters of...
International audienceThis paper aims at developing homogeneous, anisotropic strain-gradient continu...
International audienceMindlin's second strain gradient continuum theory for isotropic linear elastic...