期刊文献+

结构型吸波材料电磁特性的设计计算 被引量:9

Design and Calculation of Electromagnetic Characteristics of Structure Absorbent Materials
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摘要 结构型吸波材料兼具吸波与承载的双重功能,且具有可设计性,是一个重要的吸波材料的研究方向。夹芯结构吸波复合材料因其质轻、强度高,又能较好地吸收电磁波而广泛应用于飞机的机翼、尾翼和机身等部位。应用时域有限差分法(FDTD)建立正六边形蜂窝夹芯结构和波纹板型夹芯结构的电磁散射模型,通过数值仿真手段,计算了两种夹芯吸波结构和全金属结构的RCS值,对不同结构形状的夹芯结构的吸波性能进行了分析。 Structural radar absorption material possesses both wave absorption and load bearing functions. Microwell as perfect property of electromagnetic wave absorption. The finite-difference time-domain(FDTD) method has been applied to the numerical simulation of electromagnetic scattering for equilateral-hexagon honeycomb sandwich structure and corrugated plate sandwich structure radar absorbing materials. RCS( radar cross section) values of two types of structural wave absorbing materials as well as complete metal structure, which have the same dimension, have been computed by means of numerical simulation. Moreover, electromagnetic scattering characteristics of different shape honeycomb and corrugated plate structures are also studied respectively. Finally, stealth performance curves of honeycomb structure are obtained with respect to different incident frequencies (X-band).
出处 《机械科学与技术》 CSCD 北大核心 2008年第11期1387-1391,共5页 Mechanical Science and Technology for Aerospace Engineering
关键词 吸波材料 夹芯结构 时域有限差分法 RCS radar absorption material sandwich structure FDTD RCS(radar cross section)
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参考文献7

  • 1Parker E A, Hamdy S M A. Rings as elements for frequency selective surfaces[ J]. Electron. Lett., 1981 ;17(8) :612 -614
  • 2Kunz K, Luebbers R. The Finite Difference Time Domain for Eiectromagnetics[ M ]. CRC Press, 1993
  • 3Mur G. The modeling of singularities in the finite-difference approximation of the time-domain electromagnetic-field equation[ J]. IEEE Trans. Microwave Theory Tech., 1981,29(10) : 1073 - 1077
  • 4Berenger J P. A perfectly matched layer for the absorption of electromagnetic waves [ J ]. Journal of Computational Physics, 1996,127(2) :363 -379
  • 5黄爱凤,余雄庆,姚卫星.翼面隐身结构电磁散射特性的数值模拟[J].航空学报,2005,26(4):422-425. 被引量:17
  • 6吴晓光 车晔秋.国外吸波材料[M].湖南:国防科技大学出版社,1992.171-178.
  • 7黄远,李家俊,马铁军,王玉林.一种新型结构吸波材料的设计与制备[J].兵器材料科学与工程,1999,22(4):7-12. 被引量:13

二级参考文献12

  • 1赵伯琳,高正平,饶克谨.电磁波斜入射到分层有耗媒质上的反射和传输系数[J].电子科技大学学报,1993,22(5):483-489. 被引量:11
  • 2余雄庆,杨景佐.FDTD法的计算机可视化技术[J].微波学报,1995,11(4):316-322. 被引量:4
  • 3吴晓光(译),国外微波吸收材料,1993年
  • 4李承祖,国防科技大学学报,1991年,13卷,4期,341页
  • 5施景芳,宇航材料工艺,1989年,4/5期,104页
  • 6Brown A C, Fundamentals of low radar cross-sectional aircraft design[J]. Journal of Aircraft, 1993,30(3):289-290.
  • 7Taflove A. Review of formulation and applications of the finite-difference time domain method for numerical modeling of electromagnetic wave interactions with arbitrary structures [J]. Wave Motion, 1988, 10(6): 547-582.
  • 8Kunz K, Luebbers R. The finite difference time domain for electromagnetics[M]. CRC Press ,19923.
  • 9Schneider J, Hudson S. The finite-difference time-domain method applied to anisotropic material [J]. IEEE Trans AP, 1993, 41(7): 994-999.
  • 10吴晓光 车晔秋.国外吸波材料[M].湖南:国防科技大学出版社,1992.171-178.

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