微颗粒填料增强环氧复合材料的微波吸收性能研究

R. H. Thaher, Heba Hadi Ali
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引用次数: 1

摘要

环氧树脂是高压等绝缘领域中使用最多的材料之一。为了创造具有新性能的增强材料,环氧树脂可以通过使用不同的填料进行加工。研究了微颗粒CuO填料增强环氧复合材料的微波吸收性能。CuO金属氧化物以四种不同的百分比(5%、10%、15%和20%)占全样本量。样品被浇铸成边长为(10厘米)的方形,并根据每个加载值分别以1mm、2mm、3mm和4mm四种不同的厚度。在8-10 GHz的x波段频率范围内,对本文的目标进行了测试,以确定每个加载值在考虑其四种不同厚度值时的微波功率吸收量。制备了环氧树脂样品,并对各样品在x波段的微波功率吸收进行了测试。一般发现,无论是纯环氧复合材料还是增强复合材料,其微波功率吸收与厚度值成正比。此外,试验结果表明,与其他加载百分比相比,(5%)CuO金属氧化物填料的情况与最大功率吸收显著相关。所得结果为CuO填料对非填充环氧试样绝缘性能的影响提供了信息。因此,这种复合材料可以被认为是吸收微波能量的重要和最需要的应用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microwave Power Absorption Evaluation of Micro-Particles Cuo Filler Reinforced Epoxy Composites
Epoxy resin is of the most used materials in the field of insulating purposes such as in high voltage applications. In order to create an enhanced material with new properties, epoxy resin can be processed by using different fillers. In this paper, microwave power absorption evaluation of Micro-particles CuO filler reinforced epoxy composites is investigated. CuO metal oxide loadings were taken in four different percentages as (5%, 10%, 15%, and 20%) of the full sample size. Samples were casted in a square shape of (10 cm) side length along with four different thicknesses stated as 1mm, 2mm, 3mm, and 4mm for each loading value. Within an x-band frequency range of 8-10 GHz, the objectives of this paper were examined to determine the amount of microwave power absorption when each loading value is tested with its four different thickness values taken in consideration. The epoxy resin samples were prepared and tests were done to measure the microwave power absorption for each sample in the x-band frequency range. Generally, it has been found that the microwave power absorption is proportional to the thickness value whether it was a pure epoxy composite or a reinforced composite. Moreover, the test results revealed that the case of the (5%) CuO metal oxide filler is significantly related to the maximum power absorption when compared to other loading percentages. The obtained results provided information about the influence of the CuO filler on the insulating property of the non-filled epoxy specimens. Therefore, this composite could be regarded for applications where absorbing microwave energy is of importance and utmost necessity
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