Repository of Research and Investigative Information

Repository of Research and Investigative Information

Shahid Sadoughi University of Medical Sciences

Total Shielding Efficiency, Reflection Loss and Absorption Loss of Nanoparticles/Paraffin Wax Absorber in the Shielding of Electromagnetic Pollution

(2022) Total Shielding Efficiency, Reflection Loss and Absorption Loss of Nanoparticles/Paraffin Wax Absorber in the Shielding of Electromagnetic Pollution. Transactions on Electrical and Electronic Materials. pp. 666-673.

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Official URL: https://www.scopus.com/inward/record.uri?eid=2-s2....

Abstract

The extensive development of diverse electronic/electrical systems has led to increased exposure to electromagnetic field and can result in many adverse effects on humans, other living beings, safety operation of various equipment, etc. Electromagnetic interference (EMI) shielding materials are in greater demand to suppress this electromagnetic pollution. The present study investigates the factors affecting the shielding efficiency of carbon black-based nanocomposite shields. Fe3O4/carbon black nanocomposite (CBN) with paraffin wax were fabricated by melt mixing methods in different weight percentages of the dispersants. The EMI shielding properties of the nanocomposites were measured using a vector network analyzer in the frequency range of 8.2 to 12.5 GHz (X band) based on the transfer/reflection method. The total shielding efficiency was used to assess the shield's protection performance. Based on the weight percentages of nanocomposite constituents, four samples were obtained. The highest average of total shielding efficiency in equal thickness belonged to the sample with 50 CBN and 15 Fe3O4 nanoparticles in weight. At different thicknesses, the highest average total shielding efficiency was related to the minimum thickness of 0.8 mm. Also, in with increasing the frequency decreased the mean total shielding efficiency in the samples. Depending on the type and weight percentage of nanocomposite compounds, one of the absorption or reflection mechanisms can be the main mechanism in reducing or eliminating electromagnetic waves in nanocomposite shields. The shield thickness and frequency of electromagnetic waves affect the protective performance of the shield. © 2022, The Korean Institute of Electrical and Electronic Material Engineers.

Item Type: Article
Keywords: Efficiency; Electric network analyzers; Electromagnetic fields; Electromagnetic pulse; Electromagnetic shielding; Electromagnetic wave interference; Magnetite; Mixing; Nanoparticles; Pollution; Signal interference, Carbon black nanocomposite; Electro magnetic pollution; Melt mixing; Reflection loss; Reflection methods; Reflection-absorption; Shielding efficiency; Total shielding efficiency; Transfer/reflection method; Weight percentages, Nanocomposites
Page Range: pp. 666-673
Journal or Publication Title: Transactions on Electrical and Electronic Materials
Volume: 23
Number: 6
Depositing User: ms soheila Bazm
URI: http://eprints.ssu.ac.ir/id/eprint/12494

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