Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity

The effects of the nanoplatelet interphase region on the electric field intensity within a nanocomposite structures are presented in this paper. The modeling of the nanoplatelet and its interphases was performed by using the Finite Element Method Magnetics (FEMM) 4.2 software. Two possible structure...

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Main Authors: Sharip, M.R.M., Lau, K.Y., Zaidel, D.N.A.
Format: Article
Language:English
Published: UTEM 2017
Subjects:
Online Access:http://ir.unimas.my/id/eprint/15373/
http://ir.unimas.my/id/eprint/15373/1/Modeling%20of%20Nanocomposite%20Structures%20to%20Evaluate%20%28abstract%29.pdf
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author Sharip, M.R.M.
Lau, K.Y.
Zaidel, D.N.A.
author_facet Sharip, M.R.M.
Lau, K.Y.
Zaidel, D.N.A.
author_sort Sharip, M.R.M.
building UNIMAS Institutional Repository
collection Online Access
description The effects of the nanoplatelet interphase region on the electric field intensity within a nanocomposite structures are presented in this paper. The modeling of the nanoplatelet and its interphases was performed by using the Finite Element Method Magnetics (FEMM) 4.2 software. Two possible structures of the nanoplatelet were simulated – with and without interphases. In addition, two different models of interphase structures surrounding the nanoplatelet were analyzed – one with rectangular-shaped interphase and the other with circularly-shaped interphase. Both sets of the model interphase were assumed to have different thicknesses and radii. The results showed that the presence of the nanoplatelet interphase affected the electric field intensity of the nanocomposite.
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spelling unimas-153732017-02-20T06:43:38Z http://ir.unimas.my/id/eprint/15373/ Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity Sharip, M.R.M. Lau, K.Y. Zaidel, D.N.A. TK Electrical engineering. Electronics Nuclear engineering The effects of the nanoplatelet interphase region on the electric field intensity within a nanocomposite structures are presented in this paper. The modeling of the nanoplatelet and its interphases was performed by using the Finite Element Method Magnetics (FEMM) 4.2 software. Two possible structures of the nanoplatelet were simulated – with and without interphases. In addition, two different models of interphase structures surrounding the nanoplatelet were analyzed – one with rectangular-shaped interphase and the other with circularly-shaped interphase. Both sets of the model interphase were assumed to have different thicknesses and radii. The results showed that the presence of the nanoplatelet interphase affected the electric field intensity of the nanocomposite. UTEM 2017 Article PeerReviewed text en http://ir.unimas.my/id/eprint/15373/1/Modeling%20of%20Nanocomposite%20Structures%20to%20Evaluate%20%28abstract%29.pdf Sharip, M.R.M. and Lau, K.Y. and Zaidel, D.N.A. (2017) Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity. Journal of Telecommunication, Electronic and Computer Engineering, 8 (12). pp. 147-152. ISSN 2289-8131 http://journal.utem.edu.my/index.php/jtec/article/view/1451
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Sharip, M.R.M.
Lau, K.Y.
Zaidel, D.N.A.
Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity
title Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity
title_full Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity
title_fullStr Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity
title_full_unstemmed Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity
title_short Modeling of Nanocomposite Structures to Evaluate the Effect of Nanoplatelet Interphase Region on Electric Field Intensity
title_sort modeling of nanocomposite structures to evaluate the effect of nanoplatelet interphase region on electric field intensity
topic TK Electrical engineering. Electronics Nuclear engineering
url http://ir.unimas.my/id/eprint/15373/
http://ir.unimas.my/id/eprint/15373/
http://ir.unimas.my/id/eprint/15373/1/Modeling%20of%20Nanocomposite%20Structures%20to%20Evaluate%20%28abstract%29.pdf