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Microwave nondestructive detection and evaluation of disbonding and delamination in layered-dielectric slabs

机译:层状电介质板微波无损检测与脱层和分层评估

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摘要

A microwave nondestructive technique for the detection and evaluation of disbonding and delamination in layered-dielectric-slabs backed by a conducting plate is discussed. The theoretical development of the technique is given. An incident wave illuminating such a medium is first considered, and the characteristics of the wave reflected by the metal plate are then formulated. An effective reflection coefficient whose phase characteristics are used in the detection and evaluation of delaminations in the media is determined in this way. The characteristics of this phase as a function of several parameters, such as delamination dielectric constant and thickness, slab dielectric constant, and thickness and the frequency of operation are investigated. The experimental apparatus is described. It was used to perform several experiments to test and verify the theory. Very good agreement was obtained between the theoretical and experimental results. In general, it was concluded that higher frequencies, thicker dielectric plates, and lower values of delamination dielectric constants tend to produce better results for evaluating the nature of a delaminated layer. This technique is simple and easily applicable to environments where these types of layered-slab are used.
机译:讨论了一种微波无损检测技术,用于检测和评估以导电板为支撑的层状电介质板的剥离和分层。给出了该技术的理论发展。首先考虑照亮这种介质的入射波,然后制定由金属板反射的波的特性。以这种方式确定有效反射系数,该反射系数的相位特性用于检测和评估介质中的分层。研究了该相随几个参数变化的特性,例如分层介电常数和厚度,平板介电常数以及厚度和工作频率。描述了实验装置。它用于执行多个实验,以测试和验证该理论。理论和实验结果之间取得了很好的一致性。通常,可以得出结论,较高的频率,较厚的介电板和较低的分层介电常数值往往会产生更好的结果,以评估分层层的性质。此技术简单易行,适用于使用这些类型的分层楼板的环境。

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