Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties
This paper is to study the performance of rice husk and carbon-nanotubes nanotubes (RH-CNTs) composite material as a microwave absorber. The rice husk (RH) is a lossy material that contains dielectric properties which suitable used as microwave absorber. The dielectric properties are playing a main...
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my-unisza-ir.31402022-01-09T02:50:20Z http://eprints.unisza.edu.my/3140/ Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties Seok, Ts. Dr. Yew Been TK Electrical engineering. Electronics Nuclear engineering This paper is to study the performance of rice husk and carbon-nanotubes nanotubes (RH-CNTs) composite material as a microwave absorber. The rice husk (RH) is a lossy material that contains dielectric properties which suitable used as microwave absorber. The dielectric properties are playing a main role in microwave absorption of any material. The dielectric properties of materials were measured using an Agilent dielectric probe. The microwave absorption performance of rice husk and CNTs composites was investigated by using rectangular waveguide transmission line in simulation. The microwave absorbers were designed and simulated using the Computer Simulation Technology Microwave studio software (CST-MWS). The ability of microwave absorption between rice husk and RH-CNTs was compared in 8.2–12.4 GHz. The microwave absorption with different thickness of RH-CNTs samples was investigated. The results show that the RH-CNTs composites have a better ability of microwave absorption compared than pure rice husk Springer International Publishing 2015 Book Section NonPeerReviewed text en http://eprints.unisza.edu.my/3140/1/FH05-FSTK-15-03855.pdf Seok, Ts. Dr. Yew Been (2015) Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties. In: Theory and Applications of Applied Electromagnetics. Lecture Notes in Electrical Engineering. Springer International Publishing, pp. 119-126. ISBN 978-3-319-17268-2 |
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TK Electrical engineering. Electronics Nuclear engineering Seok, Ts. Dr. Yew Been Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties |
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This paper is to study the performance of rice husk and carbon-nanotubes nanotubes (RH-CNTs) composite material as a microwave absorber. The rice husk (RH) is a lossy material that contains dielectric properties which suitable used as
microwave absorber. The dielectric properties are playing a main role in microwave absorption of any material. The dielectric properties of materials were measured using
an Agilent dielectric probe. The microwave absorption performance of rice husk and CNTs composites was investigated by using rectangular waveguide transmission line in simulation. The microwave absorbers were designed and simulated using the Computer Simulation Technology Microwave studio software (CST-MWS). The ability of microwave absorption between rice husk and RH-CNTs was compared in 8.2–12.4 GHz. The microwave absorption with different thickness of RH-CNTs samples was investigated. The results show that the RH-CNTs composites have a better ability of microwave absorption compared than pure rice husk |
format |
Book Section |
author |
Seok, Ts. Dr. Yew Been |
author_facet |
Seok, Ts. Dr. Yew Been |
author_sort |
Seok, Ts. Dr. Yew Been |
title |
Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties |
title_short |
Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties |
title_full |
Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties |
title_fullStr |
Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties |
title_full_unstemmed |
Investigation of Rice Husk/CNTs Composites Performance in Microwave Properties |
title_sort |
investigation of rice husk/cnts composites performance in microwave properties |
publisher |
Springer International Publishing |
publishDate |
2015 |
url |
http://eprints.unisza.edu.my/3140/1/FH05-FSTK-15-03855.pdf http://eprints.unisza.edu.my/3140/ |
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