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Comparison of Electromagnetic-wave Shielding Effect in Glass Fiber Reinforced Nano Composites

Woo-Kyun Jung, Sung-Hoon Ahn, Myung-Sik Won
JKSPE 2005;22(10):121-128.
Published online: October 1, 2005
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The research on electromagnetic shielding has been advanced for military applications as well as for commercial products. Utilizing the reflective properties and absorptive properties of shielding material, the replied signal measured at the rear surface or at the signal source can be minimized. The shielding effect was obtained from materials having special absorptive properties and structural characteristics such as stacking sequence. Recently researchers studied the electromagnetic properties of nano size particles. In this research {glass fiber}/{epoxy}/{nano particle} composites(GFR-Nano composites) was fabricated using various nano particles, and their properties in electromagnetic shielding were compared. For the visual observation of the nano composite materials, SEM(Scanning Electron Microscope) and TEM(Transmission Electron Microscope) were used. For the measurement of electromagnetic shielding, HP8719ESS-parameter Vector Network Analyser System was used on the frequency range of 8 ㎓-12㎓. Among the nano particles, carbon black and Multi-Walled Carbon Nano-Tube (MWCNT) revealed outstanding electromagnetic shielding. Although silver nano particles (flake and powder) were expected to have effective electromagnetic shielding due to their excellent electric conductivities, test results showed little shielding characteristics.

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Comparison of Electromagnetic-wave Shielding Effect in Glass Fiber Reinforced Nano Composites
J. Korean Soc. Precis. Eng.. 2005;22(10):121-128.   Published online October 1, 2005
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Comparison of Electromagnetic-wave Shielding Effect in Glass Fiber Reinforced Nano Composites
J. Korean Soc. Precis. Eng.. 2005;22(10):121-128.   Published online October 1, 2005
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