Title :
Thin electromagnetic wave absorber for quasi-microwave band containing aligned thin magnetic metal particles
Author :
Matsumoto, Morihiko ; Miyata, Yoshimori
Author_Institution :
NTT Tech. Assistance & Support Center, Musashino, Japan
fDate :
11/1/1997 12:00:00 AM
Abstract :
Soft magnetic material has been produced in which flaky thin amorphous metal particles, about 2 μm thick, are aligned in polymer in the direction perpendicular to electromagnetic wave propagation. This material yields a permeability two to three times higher than the spinel-type ferrite system in the quasi-microwave band. We have designed a thin wave absorber composed of the present material by introducing a low-permittivity area such as a free space into the present metal-containing material. This decreases the average permittivity, striking a balance between complex permeability and permittivity values, and thus reducing the reflection coefficient of the absorber. A thin (about 3-mm thick) wave absorber with a reflection loss of over 30 dB in the quasi-microwave band was successfully obtained when the free space region was 5% of the total volume
Keywords :
amorphous magnetic materials; electromagnetic wave absorption; magnetic particles; magnetic permeability; soft magnetic materials; aligned flaky thin amorphous metal particles; electromagnetic wave absorber; permeability; permittivity; polymer matrix; quasi-microwave band; reflection loss; soft magnetic material; Amorphous materials; Electromagnetic propagation; Electromagnetic scattering; Inorganic materials; Magnetic materials; Permeability; Permittivity; Polymers; Reflection; Soft magnetic materials;
Journal_Title :
Magnetics, IEEE Transactions on