Title :
The three-layered core model permittivity of polymer nano-composites in electrostatic field
Author :
Su Zijian ; Li Xuguang ; Yin Yi
Author_Institution :
Dept. of Electr. Eng., Shanghai Jiao Tong Univ., Shanghai, China
Abstract :
Multi-layered core model of nanoparticle was supposed to have advantage in analyzing dielectric characteristic of polymer nano-composites by many researchers. However this model cannot be verified effectively from the view of mathematic. This paper focused on solving this problem. First the three-layered core physical model was built based on physical phenomenon and former research results, and then mathematical model was built by taking different densities into Maxwell Garnett Approximation (MGA). Permittivity of each layer was established by integrals mean value point of supposed three different functions in respective thickness. At last three-layered core mathematical model of diffusion system was built and the equivalent permittivity was calculated. The calculated results have a better coincidence with experimental result and all of this show that three-layer core model and arc-tangent function have a good description of character of interaction zone.
Keywords :
filled polymers; nanocomposites; nanoparticles; permittivity; MGA; Maxwell Garnett approximation; arc-tangent function; dielectric characteristics; diffusion system; electrostatic fields; equivalent permittivity; integral mean value point; multi-layered core model; nanoparticles; polymer nanocomposites; three-layered core mathematical model; three-layered core physical model; Chemicals; Dielectrics; Electrostatics; Mathematical model; Permittivity; Polymers; Scanning electron microscopy; Equivalent permittivity; Multi-layered core model; Nano-composites; Nano-particles;
Conference_Titel :
Electrical Insulating Materials (ISEIM), Proceedings of 2011 International Conference on
Conference_Location :
Kyoto
Print_ISBN :
978-4-88686-074-3
DOI :
10.1109/ISEIM.2011.6826291