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Change of transmission characteristics of FSSs in hybrid composites due to residual stresses

机译:残余应力导致杂化复合材料中FSS传递特性的变化

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摘要

The frequency selective surface (FSS) embedded hybrid composite materials have been developed to provide excellent mechanical and specific electromagnetic properties. Radar absorbing structures (RASs) are an example material that provides both radar absorbing properties and structural characteristics. The absorbing efficiency of an RAS can be improved using selected materials having special absorptive properties and structural characteristics and can be in the form of multi-layers or have a certain stacking sequence. However, residual stresses occur in FSS embedded composite structures after co-curing due to a mismatch between the coefficients of thermal expansion of the FSS and the composite material. In this study, to develop an RAS, the thermal residual stresses of FSS embedded composite structures were analyzed using finite element analysis, considering the effect of stacking sequence of composite laminates with square loop (SL) and double square loop (DSL) FSS patterns. The FSS radar absorbing efficiency was measured in the K-band frequency range of 21.6 GHz. Residual stress leads to a change in the deformation of the FSS pattern. Using these results, the effect of transmission characteristics with respect to the deformation on FSS pattern was analyzed using an FSS Simulator.
机译:已经开发出频率选择表面(FSS)嵌入的混合复合材料,以提供出色的机械性能和特定的电磁性能。雷达吸收结构(RAS)是既提供雷达吸收特性又提供结构特性的示例材料。可以使用具有特殊吸收特性和结构特征的选定材料来提高RAS的吸收效率,并且可以采用多层形式或具有一定的堆积顺序。然而,由于FSS和复合材料的热膨胀系数之间的不匹配,在共固化之后在FSS嵌入的复合结构中会产生残余应力。在本研究中,为了开发RAS,考虑了具有正方形环(SL)和双正方形环(DSL)FSS图案的复合层板的堆叠顺序,使用有限元分析法分析了FSS嵌入式复合结构的热残余应力。在21.6 GHz的K频带频率范围内测量了FSS雷达的吸收效率。残余应力导致FSS图案变形的变化。使用这些结果,使用FSS Simulator分析了传输特性相对于变形对FSS模式的影响。

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