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Effects of Interlamianr Electrical Behavior on Eddy Currents in Carbon Fiber Composite Materials

机译:碳纤维复合材料涡流逆向电流逆向电流的影响

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The purpose of this paper is to thoroughly investigate interlaminar contact resistivity and its influence on eddy current (EC) in carbon fiber reinforced polymer (CFRP) laminates. Contact resistivity between adjacent laminae, together with the anisotropic bulk conductivity of a single-layer lamina, were measured. The measured values were then utilized in finite element (FE) models to study the effect of interlaminar electrical behavior on eddy currents in CFRPs. The numerically simulation results showed that eddy currents are highly concentrated around the interface between angled laminae when contact resistivity is taken into account, while a significant attenuation of the currents occurs in a noncontact model. The numerical results were verified by comparing the calculated voltages with the experimentally measured ones. It was found that the FE results considering contact resistivity are in accordance with experimental ones and will allow a better interfacial modeling of CFRPs.
机译:本文的目的是通过彻底研究碳纤维增强聚合物(CFRP)层压板的涡流(EC)对层间接触电阻率及其对涡流(EC)的影响。测定相邻薄片之间的接触电阻率,以及单层椎板的各向异性散装电导率。然后在有限元(Fe)模型中使用测量值,以研究InterlaMar电作量对CFRPS涡流的影响。数值仿真结果表明,当考虑接触电阻率时,涡流围绕成角薄层之间的界面围绕界面,而在非接触模型中发生了显着衰减。通过将计算出的电压与实验测量的电压进行比较来验证数值结果。结果发现,考虑接触电阻率的Fe结果符合实验性的,并将允许含有更好的CFRP界面建模。

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