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An Electromagnetic Sensor with a Metamaterial Lens for Nondestructive Evaluation of Composite Materials

机译:具有超材料透镜的电磁传感器,用于复合材料的无损评估

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This paper proposes the study and implementation of a sensor with a metamaterial (MM) lens in electromagnetic nondestructive evaluation (eNDE). Thus, the use of a new type of MM, named Conical Swiss Rolls (CSR) has been proposed. These structures can serve as electromagnetic flux concentrators in the radiofrequency range. As a direct application, plates of composite materials with carbon fibers woven as reinforcement and polyphenylene sulphide as matrix with delaminations due to low energy impacts were examined. The evaluation method is based on the appearance of evanescent modes in the space between carbon fibers when the sample is excited with a transversal magnetic along z axis (TMz) polarized electromagnetic field. The MM lens allows the transmission and intensification of evanescent waves. The characteristics of carbon fibers woven structure became visible and delaminations are clearly emphasized. The flaws can be localized with spatial resolution better than λ/2000.
机译:本文提出了一种在电磁无损评估(eNDE)中使用超材料(MM)透镜的传感器的研究和实现。因此,已经提出使用一种新型的,称为圆锥形瑞士劳斯莱斯(CSR)的MM。这些结构可以用作射频范围内的电磁通量集中器。作为直接应用,研究了复合材料板,其中碳纤维编织为增强材料,聚苯硫醚为基体,由于能量冲击小而分层。该评估方法基于当样品被沿z轴(TMz)极化电磁场的横向磁场激发时,碳纤维之间空间中出现的van逝模。 MM透镜可以传输和增强e逝波。碳纤维编织结构的特征变得可见,并且明显强调了分层。可以以比λ/ 2000更好的空间分辨率来定位缺陷。

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