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http://dx.doi.org/10.4283/JKMS.2004.14.4.131

Microwave Absorbing Properties of Iron Particles-Rubber Composites in Mobile Telecommunication Frequency Band  

Kim, Sun-Tae (충북대학교 재료공학과, 컴퓨터정보통신연구소)
Kim, Sant-Keun (충북대학교 재료공학과, 컴퓨터정보통신연구)
Kim, Sung-Soo (충북대학교 재료공학과, 컴퓨터정보통신연구)
Yoon, Yeo-Choon (㈜창성 중앙연구)
Lee, Kyung-Sub (㈜창성 중앙연구)
Choi, Kwang-Bo (㈜창성 중앙연구소)
Abstract
For the aim of thin electromagnetic wave absorbers used in mobile telecommunication frequency band (0.8-2.0㎓), we investigate high-frequency magnetic, dielectric and microwave absorbing properties of iron particles dispersed in rubber matrix in this study. The major experimental variables are particle shape (sphere and flake) and initial particle size (in the range 5-70 $\mu\textrm{m}$) of iron powders. High value of magnetic permeability and dielectric permittivity can be obtained in the composites containing thin plate-shape (flake) iron particles (of which thickness is less than skin depth in ㎓frequency), which can be produced by mechanical forging of spherical iron powders using an attrition mill. This result is attributed to the reduction of eddy current loss (increase of permeability) and the increase of space charge polarization (increase of permeability). The optimum initial particle size is found to be about 10 $\mu\textrm{m}$ for the attainment of the material parameters (particularly, real part of complex permeability) satisfying the wave impedance matching. With the iron powders controlled in size and shape as absorbent fillers in rubber matrix, the thickness can be reduced to about 0.7mm with respect to -5㏈ reflection loss (70% power absorption) in mobile telecommunication frequency band.
Keywords
Microwave absorbers; iron particles; mobile telecommunication; complex permeability;
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