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The properties of artificial dielectrics comprising arrays of conducting elements

机译:包含导电元件阵列的人造电介质的特性

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Part 1 of the paper describes a theoretical analysis of the effective permittivity of arrays of perfectly conducting elements of simple geometric shapes????????e.g. cylindrical rods, thin strips, spheres and discs???????? and the results of a supporting experimental investigation on arrays of metallic elements of these shapes at a frequency of 1 000 c/s. Dielectric media of this type are being used for the construction of centimetre-wave lenses. It is shown that representation of the elements as simple dipoles is inadequate at high concentrations and that account must then be taken of higher-order multi-pole interaction between them. Where evaluation of the latter has proved practicable, the experimental and theoretical permittivity values are found to be in close agreement over the whole range of concentration investigated. Part 2 describes an experimental investigation of the permittivity and dielectric-loss characteristics over the frequency range 400????????10 000 c/s of a cubical array of spherical elements composed of imperfectly conducting material as a function of the concentration of these elements, and discusses the results in terms of the theoretical analysis given in Part 1. This investigation is an extension of earlier studies of the behaviour of composite dielectric materials.
机译:本文的第1部分描述了对具有简单几何形状的完美导电元件的阵列的有效介电常数的理论分析。圆柱棒,细条,球体和圆盘????????以及以1000 c / s的频率对这些形状的金属元素阵列进行支持性实验研究的结果。这种类型的介电介质被用于构造厘米波透镜。结果表明,在高浓度下将元素表示为简单偶极子是不够的,因此必须考虑它们之间的高阶多极子相互作用。如果对后者进行评估是可行的,则发现实验和理论介电常数值在所研究的整个浓度范围内都非常一致。第2部分描述了一个实验研究,该实验研究了由不完全导电材料组成的球形元素的三次方阵列在400 cC的频率范围内的介电常数和介电损耗特性随浓度的变化,其浓度为400这些元素,并根据第1部分中给出的理论分析讨论结果。该研究是对复合介电材料性能的早期研究的扩展。

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