物理学报
物理學報
물이학보
2013年
9期
370-376
,共7页
膨胀石墨%石墨层间化合物%消光截面%矩量法
膨脹石墨%石墨層間化閤物%消光截麵%矩量法
팽창석묵%석묵층간화합물%소광절면%구량법
expanded graphite%graphite intercalation compound%extinction cross-section%method of moment
为探讨膨胀石墨作为3 mm波干扰材料的消光、散射特性及其影响因素,基于有限长度、有限电导率圆柱状导体的电磁散射,利用矩量法建立了膨胀石墨的消光、散射、吸收及后向散射截面(雷达散射截面RCS)的计算式.运用Mathematica编程计算并分析了膨胀石墨长度、半径、电导率、磁导率等因素与膨胀石墨消光、散射、吸收截面及RCS的关系.结果表明:当膨胀石墨的长度为1.5 mm、半径为0.05 mm时,具有较好的消光、散射效果;适当增大膨胀石墨的电导率、磁导率,有利于提高其消光、散射能力.本研究为探索增强膨胀石墨干扰3 mm波效果的技术途径提供了有价值的参考.
為探討膨脹石墨作為3 mm波榦擾材料的消光、散射特性及其影響因素,基于有限長度、有限電導率圓柱狀導體的電磁散射,利用矩量法建立瞭膨脹石墨的消光、散射、吸收及後嚮散射截麵(雷達散射截麵RCS)的計算式.運用Mathematica編程計算併分析瞭膨脹石墨長度、半徑、電導率、磁導率等因素與膨脹石墨消光、散射、吸收截麵及RCS的關繫.結果錶明:噹膨脹石墨的長度為1.5 mm、半徑為0.05 mm時,具有較好的消光、散射效果;適噹增大膨脹石墨的電導率、磁導率,有利于提高其消光、散射能力.本研究為探索增彊膨脹石墨榦擾3 mm波效果的技術途徑提供瞭有價值的參攷.
위탐토팽창석묵작위3 mm파간우재료적소광、산사특성급기영향인소,기우유한장도、유한전도솔원주상도체적전자산사,이용구량법건립료팽창석묵적소광、산사、흡수급후향산사절면(뢰체산사절면RCS)적계산식.운용Mathematica편정계산병분석료팽창석묵장도、반경、전도솔、자도솔등인소여팽창석묵소광、산사、흡수절면급RCS적관계.결과표명:당팽창석묵적장도위1.5 mm、반경위0.05 mm시,구유교호적소광、산사효과;괄당증대팽창석묵적전도솔、자도솔,유리우제고기소광、산사능력.본연구위탐색증강팽창석묵간우3 mm파효과적기술도경제공료유개치적삼고.
In order to explore the extinction and scattering characteristics of expanded graphite, which is a kind of 3 millimeter wave interference materials, the formula of extinction, scattering, absorption and backscattering cross sections (radar cross. section, RCS) are established based on the electromagnetic scattering theory of cylindrical conductor of finite length and finite conductivity by the method of moment. The extinction and scattering characteristics are calculated, and the influening factors of the characteristics including length, radius, conductivity and magnetic permeability of the expanded graphite are analyzed using Mathematica program. Results show that the expanded graphite has excellent extinction and scattering properties when its length and radius are 1.5 mm and 0.5 mm, respectively, and the properties can be improved when the conductivity and magnetic permeability of the expanded graphite are increased properly. This research provides a valuable insight into the improvement of interference performance of expanded graphite in 3 millimeter wave.