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机构地区:[1]西北工业大学机电学院,西安710072 [2]西北工业大学理学院,西安710072
出 处:《中国科学:物理学、力学、天文学》2012年第8期812-818,共7页Scientia Sinica Physica,Mechanica & Astronomica
基 金:国家自然科学基金(批准号:11002112);西北工业大学基础研究基金(编号:JC20110252)资助项目
摘 要:针对规则周期性介质蜂窝夹芯结构材料介电性能的等效计算,提出采用有限元数值仿真和反演计算的方法分析研究不同构型介质蜂窝单胞的几何参数对其等效介电性能的影响规律,并探讨了周期性介质蜂窝单胞的尺寸效应对介质蜂窝的等效介电性能的影响,数值结果表明周期性介质蜂窝结构材料的等效介电性能在面内具有明显的尺寸效应,随着介质蜂窝单胞数目的无限增大,介质蜂窝的等效介电性能将趋于一个均匀化值.The finite element numerical computation and the retrieval technique are adopted to evaluate the effective electromagnetic properties of the regular periodic dielectric honeycomb cores under the periodic boundary conditions. And then we compare the effective permittivities of dielectric honeycomb unit cells with the different configurations and the same dielectric materials. The size effect of dielectric honeycomb unit cells on the effective permittivity is pointed out. To simulate the periodic boundary conditions, the PEC (Perfect Electric Conductor) and PMC (Perfect Magnetic Conductor) are imposed on the unit cells in the different periodic dielectric honeycombs. Moreover, the requirement of effective media theory is satisfied that the unit cell dimension is the factor 6 smaller than the center wavelength at least. So the refractive index and the wave impedance are obtained by the scattering parameter retrieval method. On this basis, the effective permittivity and permeability of periodic electric honeycombs are calculated. Numerical results show that the configuration and size of dielectric honeycomb unit cells have the obvious influences on the effective electromagnetic properties. And the effective electromagnetic properties of the periodic dielectric honeycomb cores have the obvious in-plane size effect. With increasing infinitely the number of unit cells, the effective permittivity of dielectric honeycombs trends to the homogenization value. The research demonstrates that the size effect has the same action on the effective electromagnetic and mechanical properties of periodic honeycomb structures. It provides the analyzing foundation for the multifunctional design and application of honeycomb sandwich structures in the special fields (radomes, stealth structures and so on).
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