Abstract. This work employs the self-consistent method to investigate the effective thermal conductivity distribution in functionally graded materials (FGMs) considering the Kapitza interfacial thermal resistance. A heat conduction solution is first derived for one spherical particle embedded in a graded matrix with a prefect interface. The interfacial thermal resistance of a nanoparticle is simulated by a new particle with a lower thermal conductivity. A novel self-consistent formulation is developed to derive the averaged heat flux field of the particle phase. Then the temperature gradient can be obtained in the gradation direction. From the relation between the effective flux and temperature gradient in the gradation direction, the effec...
International audienceThe present work aims at determining the effective thermal conductivity of two...
Particle-laden composites are typical thermal interfacial materials (TIMs) in the electronic applica...
The effective thermal conductivity of composite materials with thermal contact resistance at interfa...
The thermal conductivity of particulate nanocomposites is strongly dependent on the size, shape, ori...
Colloidal suspensions of nanoparticles (nanofluids) are materials of interest for thermal engineerin...
An analytical model for thermal conductivity of composites with nanoparticles in a matrix is develop...
The prediction of the effective thermal conductivity of composite materials is of paramount importan...
http://ect-journal.kz/index.php/ectj/article/view/819This paper presents a semi-analytical model for...
Abstract: In this paper, we investigated the effective thermal conductivity of three dimen-sional na...
Adding dual kinds of nanoparticle fillers with higher thermal conductivity (TC) into matrix material...
The advent of nanotechnology in the 21st century opened a new branch of nanoscience known as nanoflu...
Enhancing the thermal conductivity of polymer materials is actively being attempted by applying meta...
The high thermal conductivity and structural strength of carbon nanotubes (CNTs) make them promising...
The making of composites has served as a working principle of achieving material properties beyond t...
The nanoscale properties of materials can have a great influence on their macroscopic behavior; for ...
International audienceThe present work aims at determining the effective thermal conductivity of two...
Particle-laden composites are typical thermal interfacial materials (TIMs) in the electronic applica...
The effective thermal conductivity of composite materials with thermal contact resistance at interfa...
The thermal conductivity of particulate nanocomposites is strongly dependent on the size, shape, ori...
Colloidal suspensions of nanoparticles (nanofluids) are materials of interest for thermal engineerin...
An analytical model for thermal conductivity of composites with nanoparticles in a matrix is develop...
The prediction of the effective thermal conductivity of composite materials is of paramount importan...
http://ect-journal.kz/index.php/ectj/article/view/819This paper presents a semi-analytical model for...
Abstract: In this paper, we investigated the effective thermal conductivity of three dimen-sional na...
Adding dual kinds of nanoparticle fillers with higher thermal conductivity (TC) into matrix material...
The advent of nanotechnology in the 21st century opened a new branch of nanoscience known as nanoflu...
Enhancing the thermal conductivity of polymer materials is actively being attempted by applying meta...
The high thermal conductivity and structural strength of carbon nanotubes (CNTs) make them promising...
The making of composites has served as a working principle of achieving material properties beyond t...
The nanoscale properties of materials can have a great influence on their macroscopic behavior; for ...
International audienceThe present work aims at determining the effective thermal conductivity of two...
Particle-laden composites are typical thermal interfacial materials (TIMs) in the electronic applica...
The effective thermal conductivity of composite materials with thermal contact resistance at interfa...