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The Effect of In-Service Aerospace Contaminants on X-Band Dielectric Properties of a Bismaleimide/Quartz Composite

机译:在施工/石英复合材料的X波段电介质特性进行营养航空航天污染物的影响

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The impact of three common aerospace in-service liquid contaminants on the X-band dielectric properties of a polymer composite radar protecting structure (radome) is investigated and quantified. The dielectric properties of the composite laminate are critical to radar transparency, and thus performance, of the radome structure. Further, polymer composites are highly susceptible to absorption of liquids. As such, the effect of common aerospace contaminants on the dielectric properties of composite laminates is crucial. Measurement of relative permittivity and loss tangent via a split-post dielectric resonant technique at 10 GHz is used to determine the effect of water, deicing fluid, and propylene glycol absorption in a three-ply quartz-reinforced bismaleimide laminate. Additionally, fluid uptake kinetics are investigated as a function of liquid type. An approximately linear relationship between fluid content and relative permittivity is observed for all three contaminant types. A 1% increase in contaminant content by weight results in a 7.8%, 4.5%, and 2.5% increase in relative permittivity of the material due to water, deicing fluid, and propylene glycol, respectively. A more significant impact is seen in material loss tangent, where a 1% increase in contaminant content by weight is responsible for a 378.5%, 593.0%, and 441.5% increase in loss tangent due to the aforementioned fluids, respectively. A fluid uptake weight content of 1.31%, 3.41%, and 4.28% is achieved for water, deicing fluid, and propylene glycol respectively, at approximately 1300 hours exposure. Based on the reported observations, the dielectric property degradation of composite laminates due to these commonly used fluids is of significant concern for in-service aircraft radar systems routinely exposed to these contaminants.
机译:三种常见航天在役液体污染物上的聚合物复合物雷达的X波段的介电性能的保护结构(天线罩)的影响进行了研究和定量。复合层压板的介电性质是雷达透明度,因此性能,在天线罩结构的关键。此外,高分子复合材料是高度敏感的液体吸收。这样,共同航天污染物对复合材料层压板的介电性质的影响是至关重要的。通过在10GHz的分裂后介电共振技术相对介电常数和损耗角正切的测量被用来确定水的影响,在一个三层石英增强的双马来酰亚胺层压除冰流体,和丙二醇的吸收。此外,流体吸收动力学研究作为液型的函数。流体含量和相对介电常数之间的近似线性关系,观察到所有三种污染物类型。增加1%甲中污染物含量的重量导致7.8%,4.5%,并且由于水的2.5%增加在材料的相对介电常数,除冰流体,和丙二醇,分别。更显著影响分别见于材料损耗角正切,其中污染物含量增加1%(重量)是负责378.5%,593.0%和441.5%的损耗角正切增加由于上述流体,。的1.31%,3.41%,和4.28%的流体吸收重量含量为水分别实现除冰流体,和丙二醇,在大约有1300小时的暴露。基于所报告的观察,复合材料层压板由于这些常用的流体介电特性劣化为常规暴露于这些污染物在役飞机雷达系统显著关注。

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