Title :
Study on the Granularity Effect on Electromagnetic Wave Absorbing Properties of Ni-SiC Composites
Author :
Yefa, Tan ; Liguang, Li ; Shanbiao, Zhang ; Xuexia, Liu ; Tieshuan, Zhuang ; Zhenyu, Liu
Author_Institution :
PLA Univ. of Sci. & Tech., Nanjing
Abstract :
In order to solve electromagnetic compatibility and interference problems in electromagnetic defence field, the Ni-SiC. composites were prepared. The effects of Ni-SiC particles with different granularities on absorbing properties at the frequency range from 8 GHz to 18.4 GHz and their absorption mechanism were studied. The research results show that the changes of granularities of Ni-SiC particles have obvious influences on absorbing properties. When the granularities of the same kind of particles reduce to a certain scale, the test results show different absorbing properties. In the Ni-SiC composites, the absorbing properties of 5.48 mum SiC are better than those of 10.39 mum SiC and 21 mum SiC under the same composition. It is found that the minimum reflectivity of 5.48 mum SiC is -16 dB and the bandwidth for -10 dB is 3 GHz. The absorption mechanism of the Ni-SiC composites is magnetic and dielectric loss and scattering effect.
Keywords :
composite materials; dielectric losses; electromagnetic compatibility; electromagnetic interference; electromagnetic wave absorption; electromagnetic wave scattering; granular materials; nickel compounds; silicon compounds; Ni-SiC; bandwidth 3 GHz; composite material preparation; dielectric loss; electromagnetic compatibility; electromagnetic interference; electromagnetic wave absorption; frequency 8 GHz to 18.4 GHz; granularity effect; magnetic loss; scattering effect; size 10.39 mum; size 31 mum; size 5.48 mum; Dielectric losses; Electromagnetic compatibility; Electromagnetic compatibility and interference; Electromagnetic fields; Electromagnetic scattering; Electromagnetic wave absorption; Frequency; Mechanical factors; Silicon carbide; Testing; Ni-SiC composite; granularity effect; wave absorbing;
Conference_Titel :
Electromagnetic Compatibility, 2007. EMC 2007. International Symposium on
Conference_Location :
Qingdao
Print_ISBN :
978-1-4244-1371-3
Electronic_ISBN :
978-1-4244-1372-0
DOI :
10.1109/ELMAGC.2007.4413481