Development and research of syntactic foams for antenna devices parts manufacture

L. I. Bakina, A. N. Golubev, V. L. Zefirov, L. A. Khasyanova, V. A. Shipulina
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Abstract

Foam plastics are always widely used in antenna-feeder systems due to the low values of the dielectric constant ε and the tangent of the dielectric loss angle tgδ. Structural elements of such antennas are usually made by gluing blanks cut from expanded polystyrene plates or from filling polyurethane foam. However, these methods turned out to be low-tech due to the high labor intensity of the process, the inhomogeneity of the dielectric properties of structures and the unsatisfactory quality of the painted surface due to the low chemical resistance of these materials to solvents of paint and varnish materials. Syntactic foams, which are a special type of gas-filled polymers, in which hollow spherical filler particles are distributed, in comparison with traditional foams, have increased mechanical strength, electrical strength, resistance to climatic factors, less density difference and better surface quality. It is the advantages of syntactic foams listed above that make them relevant materials in the manufacture of structural elements of antennas. The purpose of the work is to study the possibility of obtaining products from low-density syntactic foam by combining an expandable polymer matrix with a filler in the form of hollow glass microspheres. The limits of filling the polymer matrix by the filler have been established. The material dielectric characteristics (dielectric constant ε and the tangent of the dielectric loss angle tgδ) and strength (compression stress at 10% deformation) characteristics have been investigated. The resistance of the material to the influence of climatic factors has been investigated. The technology of manufacturing the product by the flooding method has been developed. Also the effect of paint and varnish coatings on surface quality and dielectric characteristics of foams of low density has been investigated. The obtained results can be used to create structural elements of antennas.
天线器件零件合成泡沫材料的开发与研究
泡沫塑料由于具有较低的介电常数ε和介电损耗角tgδ的正切值而被广泛应用于天线馈线系统中。这种天线的结构元件通常是用胶粘从膨胀的聚苯乙烯板或填充聚氨酯泡沫上切下的毛坯制成的。然而,由于该工艺的劳动强度高,结构的介电性能不均匀,以及由于这些材料对油漆和清漆材料的溶剂的耐化学性较低而导致涂漆表面质量不理想,这些方法被证明是低技术含量的。复合泡沫是一种特殊类型的充气聚合物,其内部分布着中空的球形填充颗粒,与传统泡沫相比,具有机械强度、电气强度、耐气候因素、密度差小、表面质量好等优点。正是上述复合泡沫材料的优点,使其成为制造天线结构元件的相关材料。这项工作的目的是研究通过将可膨胀的聚合物基质与中空玻璃微球形式的填料相结合,从低密度复合泡沫中获得产品的可能性。确定了填料填充聚合物基体的极限。研究了材料的介电特性(介电常数ε和介电损耗角的正切值tgδ)和强度(10%变形时的压缩应力)特性。研究了该材料对气候因素影响的耐受性。开发了用驱油法生产该产品的技术。研究了油漆和清漆涂层对低密度泡沫表面质量和介电特性的影响。所得结果可用于制作天线的结构元件。
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