AbstractThis paper presents a closed-form expression for the homogenized longitudinal shear moduli of a linear elastic composite material reinforced by long, parallel, radially-graded circular fibres with a periodic arrangement. An imperfect linear elastic fibre-matrix interface is allowed. The asymptotic homogenization method is adopted, and the relevant cell problem is addressed. Periodicity is enforced by resorting to the theory of Weierstrass elliptic functions. The equilibrium equation in the fibre domain is solved in closed form by applying the theory of hypergeometric functions, for new wide classes of grading profiles defined in terms of special functions. The effectiveness of the present analytical procedure is proved by convergenc...
In Parnell & Abrahams (2008 Proc. R. Soc. A 464, 1461–1482. (doi:10.1098/rspa.2007.0254)), a homogen...
In this paper, the mechanical behavior of composite materials with periodic microstructure is analys...
Standard effective properties of heterogenous materials can no longer be used when strain gradients ...
AbstractThis paper presents a closed-form expression for the homogenized longitudinal shear moduli o...
This paper presents a homogenization method for unidirectional periodic composite materials reinforc...
AbstractThis paper presents a homogenization method for unidirectional periodic composite materials ...
The homogenization problem for random composites comprising radially-graded fibres is dealt with, in...
In the present work we embrace a three scales asymptotic homogenization approach to investigate the ...
This paper develops a semi-analytic model for periodically structured composites, of which each peri...
AbstractIn this article a fibre-reinforced composite material is modelled via an approach employing ...
In this article a fibre-reinforced composite material is modelled via an approach em-ploying a Repre...
In this article a fibre-reinforced composite material is modelled via an approach employing a Repres...
International audienceThe present work deals with the modeling of non-ageing linear viscoelastic com...
ABSTRACT: A fiber-reinforced periodic elastic composite with hexagonal cell, where the constituents ...
In this contribution, effective elastic moduli are obtained by means of the asymptotic homogenizatio...
In Parnell & Abrahams (2008 Proc. R. Soc. A 464, 1461–1482. (doi:10.1098/rspa.2007.0254)), a homogen...
In this paper, the mechanical behavior of composite materials with periodic microstructure is analys...
Standard effective properties of heterogenous materials can no longer be used when strain gradients ...
AbstractThis paper presents a closed-form expression for the homogenized longitudinal shear moduli o...
This paper presents a homogenization method for unidirectional periodic composite materials reinforc...
AbstractThis paper presents a homogenization method for unidirectional periodic composite materials ...
The homogenization problem for random composites comprising radially-graded fibres is dealt with, in...
In the present work we embrace a three scales asymptotic homogenization approach to investigate the ...
This paper develops a semi-analytic model for periodically structured composites, of which each peri...
AbstractIn this article a fibre-reinforced composite material is modelled via an approach employing ...
In this article a fibre-reinforced composite material is modelled via an approach em-ploying a Repre...
In this article a fibre-reinforced composite material is modelled via an approach employing a Repres...
International audienceThe present work deals with the modeling of non-ageing linear viscoelastic com...
ABSTRACT: A fiber-reinforced periodic elastic composite with hexagonal cell, where the constituents ...
In this contribution, effective elastic moduli are obtained by means of the asymptotic homogenizatio...
In Parnell & Abrahams (2008 Proc. R. Soc. A 464, 1461–1482. (doi:10.1098/rspa.2007.0254)), a homogen...
In this paper, the mechanical behavior of composite materials with periodic microstructure is analys...
Standard effective properties of heterogenous materials can no longer be used when strain gradients ...