A numerical analysis for predicting the thermal conductivity of carbon nanotube reinforced copper-matrix nanocomposites

Afrooza, I.E. and Binti Megat Yusoff, P.S.M. and Ahmad, F. and Muhsan, A.S. (2014) A numerical analysis for predicting the thermal conductivity of carbon nanotube reinforced copper-matrix nanocomposites. In: UNSPECIFIED.

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Abstract

Thermal conductivity of carbon nanotubes (CNTs) copper-matrix nanocomposites was predicted by using numerical approach. In the present study, twenty representative volume elements (RVEs) were modeled by assuming that the CNTs are distributed homogeneously in the copper (Cu) matrix. It is assumed that each RVE contains different pattern of CNTs distribution while the direction, diameter and length of CNTs are held constant. The effect of the CNTs-matrix interfacial resistance was also negligible. Therefore, it was observed that the predicted values of thermal conductivity would reach to the upper-bound rule of mixtures. © 2014 Owned by the authors, published by EDP Sciences.

Item Type: Conference or Workshop Item (UNSPECIFIED)
Impact Factor: cited By 3
Uncontrolled Keywords: Carbon nanotubes; Copper; Nanocomposites, Interfacial resistances; Numerical approaches; Representative volume element (RVE); Rule of mixture; Upper Bound, Thermal conductivity
Depositing User: Ms Sharifah Fahimah Saiyed Yeop
Date Deposited: 29 Mar 2022 05:01
Last Modified: 29 Mar 2022 05:01
URI: http://scholars.utp.edu.my/id/eprint/32218

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