DocumentCode :
38474
Title :
The Effects of Size and Shape of Iron Particles on the Microwave Absorbing Properties of Composite Absorbers
Author :
Ruey-Bin Yang ; Wen-Fan Liang ; Siu-Tong Choi ; Chung-Kwei Lin
Author_Institution :
Dept. of Aerosp. & Syst. Eng., Feng Chia Univ., Taichung, Taiwan
Volume :
49
Issue :
7
fYear :
2013
fDate :
Jul-13
Firstpage :
4180
Lastpage :
4183
Abstract :
High values of magnetic permeability and dielectric permittivity of polymer composite containing flake-shaped iron particles were prepared by the mechanical milling of two batches of iron powders [Fe(A) and Fe(B)] under controlled conditions. The frequency-dependent complex permittivity (ε\´-jε") and permeability (μ\´-jμ") of resin composites with 40 wt.% of flake-shaped iron particles are investigated in 2-18 GHz. The results show that all ε\´, μ\´, μ" substantially increase due to the increase of milling time and the size of the flake-shaped particles. The enhancement of space-charge polarization increases the permittivity of the composite absorbers. The frequency dispersion μ" of of flake-shaped Fe/epoxy composites show a higher resonance frequency (around 3 GHz) which exceeds the Snoek\´s limit in the gigahertz range due to their low eddy current loss coming from the particle shape effects. For 40 wt.% composite with 2 mm thickness, the predicted reflection loss reaches -19.4 dB at 14.9 GHz for Fe(A)/2 hr, -28.0 dB at 8.96 GHz for Fe(A)/4 hr, -31.6 dB at 11.6 GHz and -42.9 dB for Fe(B)/2 hr at 7.84 GHz for Fe(B)/4 hr as magnetic fillers.
Keywords :
Snoek effect; dielectric polarisation; eddy current losses; electromagnetic wave absorption; iron; magnetic permeability; microwave materials; milling; particle reinforced composites; permittivity; polymers; powders; size effect; space charge; Fe; Snoek limit; composite absorbers; dielectric permittivity; eddy current loss; flake-shaped Fe-epoxy composites; flake-shaped iron particles; frequency 2 GHz to 18 GHz; frequency dispersion; frequency-dependent complex permittivity; iron powders; magnetic fillers; magnetic permeability; mechanical milling; microwave absorbing properties; polymer composite; resin composites; resonance frequency; shape effect; size 2 mm; size effect; space-charge polarization; Absorption; Iron; Milling; Permeability; Permittivity; Powders; Shape; Complex permeability; complex permittivity; flake-shaped iron powder; reflection loss;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2239973
Filename :
6558948
Link To Document :
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