This work deals with the problem of modeling the effect due to an interphase zone between inclusion and matrix in particulate composites to better estimate the bulk modulus of materials with inclusions. To this end, in this paper the problem of a body containing a hollow or solid spherical inclusion subjected to a spherically symmetric loading is investigated in the framework of the elasticity theory. The interphase zone around the inclusion is modeled by considering the elastic properties varying with the radius moving away from the interface with inclusion and, asymptotically approaching the value of the homogeneous matrix. The explicit solutions are obtained in closed form by using hypergeometric functions and numerical investigations ar...
A matrix which contains an inclusion with different mechanical properties features a heterogeneous s...
This work focuses on the effects of inclusion proximity on the elastic behavior of dilute matrix-inc...
A three-phase self-consistent model is developed for particulate composites consisting of spherical ...
The effects of an inhomogeneous interphase zone on the effective bulk modulus of particulate composi...
The paper is focused on analytical prediction of the effective bulk and shear modulus for particulat...
Nanoparticle reinforced materials, hollow particle filled composites as well as concrete are only so...
The paper is concerned with the quantitative characterisation of the effective coefficient of therma...
Financial support of this research by the Royal Society of Edinburgh and the Italian Academy of Scie...
Based on the Mori--Tanaka method and a replacement scheme, a pair of coupled first order differentia...
Based on the Mori--Tanaka method and a replacement scheme, a pair of coupled first order differentia...
This work is a study of the thermal properties of composite materials containing isotropic spherical...
By transforming the governing equations for displacement components into Riccati equations, analytic...
Residual stresses in inclusions and interphases that are bonded to a matrix can significantly influe...
The overall elastic and viscoelastic properties of particulate composites with graded interphase hav...
A micromechanics-based nonlocal constitutive equation for a matrix containing a random distribution ...
A matrix which contains an inclusion with different mechanical properties features a heterogeneous s...
This work focuses on the effects of inclusion proximity on the elastic behavior of dilute matrix-inc...
A three-phase self-consistent model is developed for particulate composites consisting of spherical ...
The effects of an inhomogeneous interphase zone on the effective bulk modulus of particulate composi...
The paper is focused on analytical prediction of the effective bulk and shear modulus for particulat...
Nanoparticle reinforced materials, hollow particle filled composites as well as concrete are only so...
The paper is concerned with the quantitative characterisation of the effective coefficient of therma...
Financial support of this research by the Royal Society of Edinburgh and the Italian Academy of Scie...
Based on the Mori--Tanaka method and a replacement scheme, a pair of coupled first order differentia...
Based on the Mori--Tanaka method and a replacement scheme, a pair of coupled first order differentia...
This work is a study of the thermal properties of composite materials containing isotropic spherical...
By transforming the governing equations for displacement components into Riccati equations, analytic...
Residual stresses in inclusions and interphases that are bonded to a matrix can significantly influe...
The overall elastic and viscoelastic properties of particulate composites with graded interphase hav...
A micromechanics-based nonlocal constitutive equation for a matrix containing a random distribution ...
A matrix which contains an inclusion with different mechanical properties features a heterogeneous s...
This work focuses on the effects of inclusion proximity on the elastic behavior of dilute matrix-inc...
A three-phase self-consistent model is developed for particulate composites consisting of spherical ...