We develop rigorous bounds on the effective thermal conductivity oe e of dispersions that are given in terms of the phase contrast between the inclusions and matrix, the interface strength, volume fraction, and higher-order morphological information, including interfacial statistics. The new bounds give remarkably accurate predictions of the thermal conductivity of dispersions of metallic particles in epoxy matrices for various values of the Kapitza resistance. Corresponding results are obtained for the novel situation in which the inclusions possess a superconducting interface
Abstract. This work employs the self-consistent method to investigate the effective thermal conducti...
We study the asymptotic behavior of the effective thermal conductivity of a periodic two-phase dilut...
International audienceThe purpose of this work is to determine the effective conductivity of periodi...
New variational principles are introduced, describing the eective conductivity tensor for anisotropi...
The problem of bounding the effective conductivity of a two-phase composite with an imperfect interf...
We provide new bounds on the interfacial barrier conductivity for isotropic particulate composites b...
The problem of bounding the e¬ective conductivity of a two-phase composite with an imperfect interfa...
The predictions of major effective medium models and 2-dimensional numerical models implemented in A...
International audienceThe present work aims at determining the effective thermal conductivity of two...
Despite the importance of interface engineering in technological metal matrix composites, both syste...
New variational principles are developed for the effective heat conductivity tensor of anisotropic t...
The prediction of the effective thermal conductivity of composite materials is of paramount importan...
AbstractFor a composite with thin interface layers between inclusions and the matrix, the effective ...
International audienceThe particulate composite under consideration consists of arbitrarily shaped m...
International audienceEshelby's results and formalism for an elastic circular or spherical inhomogen...
Abstract. This work employs the self-consistent method to investigate the effective thermal conducti...
We study the asymptotic behavior of the effective thermal conductivity of a periodic two-phase dilut...
International audienceThe purpose of this work is to determine the effective conductivity of periodi...
New variational principles are introduced, describing the eective conductivity tensor for anisotropi...
The problem of bounding the effective conductivity of a two-phase composite with an imperfect interf...
We provide new bounds on the interfacial barrier conductivity for isotropic particulate composites b...
The problem of bounding the e¬ective conductivity of a two-phase composite with an imperfect interfa...
The predictions of major effective medium models and 2-dimensional numerical models implemented in A...
International audienceThe present work aims at determining the effective thermal conductivity of two...
Despite the importance of interface engineering in technological metal matrix composites, both syste...
New variational principles are developed for the effective heat conductivity tensor of anisotropic t...
The prediction of the effective thermal conductivity of composite materials is of paramount importan...
AbstractFor a composite with thin interface layers between inclusions and the matrix, the effective ...
International audienceThe particulate composite under consideration consists of arbitrarily shaped m...
International audienceEshelby's results and formalism for an elastic circular or spherical inhomogen...
Abstract. This work employs the self-consistent method to investigate the effective thermal conducti...
We study the asymptotic behavior of the effective thermal conductivity of a periodic two-phase dilut...
International audienceThe purpose of this work is to determine the effective conductivity of periodi...