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Electrical Conductivity and Electromagnetic Shielding Effectiveness of Bio-Composites

机译:生物复合材料的电导率和电磁屏蔽效果

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In this paper, the electrical conductivity and electromagnetic shielding effectiveness of two bio-composites are studied by experimental testing and numerical models. Two monolithic composites with partly bio-based content were manufactured. The first bio-composite is made of a carbon fiber fabric prepreg and a partly bio-based (rosin) epoxy resin (CF/Rosin). The second bio-composite is a combination of prepregs of carbon fiber fabric/epoxy resin and flax fiber fabric/epoxy resin (CF-Flax/Epoxy). A single line infusion process was used prior to the curing step in the autoclave. Both variants are exemplary for the possibility of introducing bio-based materials in high performance CFRP. In-plane and out-of-plane electrical conductivity tests were conducted according to Airbus standards AITM2 0064 and AITM2 0065, respectively. Electromagnetic shielding effectiveness tests were conducted based on the standard ASTM D 4935-10. Materials were prepared at the German Aerospace Center (DLR), while characterization tests were conducted at the University of Patras. In addition to the tests, numerical models of representative volume elements were developed, using the DIGIMAT software, to predict the electrical conductivity of the two bio-composites. The preliminary numerical results show a good agreement with the experimental results.
机译:本文通过实验检测和数值模型研究了两种生物复合材料的电导率和电磁屏蔽效果。制造了两种具有部分生物基含量的单片复合材料。第一生物复合材料由碳纤维织物预浸料和部分生物基(松香)环氧树脂(CF /松香)制成。第二生物复合材料是碳纤维织物/环氧树脂和亚麻纤维织物/环氧树脂(CF-亚麻/环氧)的预浸料坯的组合。在高压釜中的固化步骤之前使用单线输液过程。两种变体都是在高性能CFRP中引入生物基材料的可能性。平面内和平面外导电性试验分别根据空气管标准AITM2 0064和AITM2 0065进行。基于标准ASTM D 4935-10进行电磁屏蔽效果试验。材料在德国航空航天中心(DLR)准备,而在帕特雷大学进行了表征测试。除了测试之外,使用DigiMat软件开发了代表体元素的数值模型,以预测两种生物复合材料的电导率。初步数值结果与实验结果吻合良好。

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