An analytical model for thermal conductivity of composites with nanoparticles in a matrix is developed based on the effective medium theory by introducing the intrinsic size effect of thermal conductivity of nanoparticles and the interface thermal resistance effect between two phases. The model predicts the percolation of thermal conductivity with the volume fraction change of the second phase, and the percolation threshold depends on the size and the shape of the nanoparticles. The theoretical predictions are in agreement with the experimental results
New variational principles are developed for the effective heat conductivity tensor of anisotropic t...
AbstractA theoretical model has been developed for the calculation of the thermal conductivity of na...
Enhancing the thermal conductivity of polymer materials is actively being attempted by applying meta...
The thermal conductivity of particulate nanocomposites is strongly dependent on the size, shape, ori...
Abstract: In this paper, we investigated the effective thermal conductivity of three dimen-sional na...
In this article, we propose a computational heat conduction model to estimate the thermal conductivi...
http://ect-journal.kz/index.php/ectj/article/view/819This paper presents a semi-analytical model for...
Abstract. This work employs the self-consistent method to investigate the effective thermal conducti...
Adding dual kinds of nanoparticle fillers with higher thermal conductivity (TC) into matrix material...
The combination of various types of materials is often used to create superior composites that outpe...
A thermodynamic model for transient heat conduction in ceramic-polymer nanocomposites is proposed. T...
The making of composites has served as a working principle of achieving material properties beyond t...
In this paper, non-linear dependence of volume fraction of inclusions on the effective thermal condu...
This paper describes a numerical study on the thermal conductivity (TC) of core-shell nanoparticle p...
Highly conductive composites have found applications in thermal management, and the effective therma...
New variational principles are developed for the effective heat conductivity tensor of anisotropic t...
AbstractA theoretical model has been developed for the calculation of the thermal conductivity of na...
Enhancing the thermal conductivity of polymer materials is actively being attempted by applying meta...
The thermal conductivity of particulate nanocomposites is strongly dependent on the size, shape, ori...
Abstract: In this paper, we investigated the effective thermal conductivity of three dimen-sional na...
In this article, we propose a computational heat conduction model to estimate the thermal conductivi...
http://ect-journal.kz/index.php/ectj/article/view/819This paper presents a semi-analytical model for...
Abstract. This work employs the self-consistent method to investigate the effective thermal conducti...
Adding dual kinds of nanoparticle fillers with higher thermal conductivity (TC) into matrix material...
The combination of various types of materials is often used to create superior composites that outpe...
A thermodynamic model for transient heat conduction in ceramic-polymer nanocomposites is proposed. T...
The making of composites has served as a working principle of achieving material properties beyond t...
In this paper, non-linear dependence of volume fraction of inclusions on the effective thermal condu...
This paper describes a numerical study on the thermal conductivity (TC) of core-shell nanoparticle p...
Highly conductive composites have found applications in thermal management, and the effective therma...
New variational principles are developed for the effective heat conductivity tensor of anisotropic t...
AbstractA theoretical model has been developed for the calculation of the thermal conductivity of na...
Enhancing the thermal conductivity of polymer materials is actively being attempted by applying meta...