Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies

In our previous work, the lanthanum iron garnet-filled PVDF-polymer nanocomposite has been prepared. The reflection and transmission coefficients of PVDF/LIG were measured using rectangular waveguide in conjunction with a microwave vector network analyzer (VNA) at X-band frequencies (8 GHz 12 GHz)....

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Main Authors: Soleimani, Hasan, Yahya, Noorhana, Abbas, Zulkifly, Soleimani, Hojjatollah, Mohd Zaid, Hasnah
Format: Article
Language:English
English
Published: Trans Tech Publications 2013
Online Access:http://psasir.upm.edu.my/id/eprint/30379/
http://psasir.upm.edu.my/id/eprint/30379/1/Determination%20reflection%20and%20transmission%20coefficients%20of%20lanthanum%20iron%20garnet%20filled%20PVDF.pdf
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author Soleimani, Hasan
Yahya, Noorhana
Abbas, Zulkifly
Soleimani, Hojjatollah
Mohd Zaid, Hasnah
author_facet Soleimani, Hasan
Yahya, Noorhana
Abbas, Zulkifly
Soleimani, Hojjatollah
Mohd Zaid, Hasnah
author_sort Soleimani, Hasan
building UPM Institutional Repository
collection Online Access
description In our previous work, the lanthanum iron garnet-filled PVDF-polymer nanocomposite has been prepared. The reflection and transmission coefficients of PVDF/LIG were measured using rectangular waveguide in conjunction with a microwave vector network analyzer (VNA) at X-band frequencies (8 GHz 12 GHz). In this study, the distribution of electric field intensity of PVDF/LIG which was loaded in rectangular waveguide was simulated based on Finite Element Method (FEM) formulation to show the essential differences of intensity of emitted electrical field. The computations of reflection and transmission coefficients of PVDF/ LIG were determined by using implementation FEM modeling rectangular waveguide. The FEM results were compared with the experimental achievement results using the rectangular waveguide. An excellent agreement between measured and simulated results was obtained based on the values of mean relative errors.
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institution Universiti Putra Malaysia
institution_category Local University
language English
English
last_indexed 2025-11-15T09:06:14Z
publishDate 2013
publisher Trans Tech Publications
recordtype eprints
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spelling upm-303792016-02-03T03:00:01Z http://psasir.upm.edu.my/id/eprint/30379/ Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies Soleimani, Hasan Yahya, Noorhana Abbas, Zulkifly Soleimani, Hojjatollah Mohd Zaid, Hasnah In our previous work, the lanthanum iron garnet-filled PVDF-polymer nanocomposite has been prepared. The reflection and transmission coefficients of PVDF/LIG were measured using rectangular waveguide in conjunction with a microwave vector network analyzer (VNA) at X-band frequencies (8 GHz 12 GHz). In this study, the distribution of electric field intensity of PVDF/LIG which was loaded in rectangular waveguide was simulated based on Finite Element Method (FEM) formulation to show the essential differences of intensity of emitted electrical field. The computations of reflection and transmission coefficients of PVDF/ LIG were determined by using implementation FEM modeling rectangular waveguide. The FEM results were compared with the experimental achievement results using the rectangular waveguide. An excellent agreement between measured and simulated results was obtained based on the values of mean relative errors. Trans Tech Publications 2013 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/30379/1/Determination%20reflection%20and%20transmission%20coefficients%20of%20lanthanum%20iron%20garnet%20filled%20PVDF.pdf Soleimani, Hasan and Yahya, Noorhana and Abbas, Zulkifly and Soleimani, Hojjatollah and Mohd Zaid, Hasnah (2013) Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies. Journal of Nano Research, 21. pp. 151-157. ISSN 1662-5250 10.4028/www.scientific.net/JNanoR.21.151 English
spellingShingle Soleimani, Hasan
Yahya, Noorhana
Abbas, Zulkifly
Soleimani, Hojjatollah
Mohd Zaid, Hasnah
Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies
title Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies
title_full Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies
title_fullStr Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies
title_full_unstemmed Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies
title_short Determination reflection and transmission coefficients of lanthanum iron garnet filled PVDF-polymer nanocomposite using finite element method modeling at microwave frequencies
title_sort determination reflection and transmission coefficients of lanthanum iron garnet filled pvdf-polymer nanocomposite using finite element method modeling at microwave frequencies
url http://psasir.upm.edu.my/id/eprint/30379/
http://psasir.upm.edu.my/id/eprint/30379/
http://psasir.upm.edu.my/id/eprint/30379/1/Determination%20reflection%20and%20transmission%20coefficients%20of%20lanthanum%20iron%20garnet%20filled%20PVDF.pdf