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Carbon fiber and void detection using high-frequency electromagnetic induction techniques

机译:使用高频电磁感应技术检测碳纤维和空隙

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Ultrawide band electromagnetic induction (EMI) instruments have been traditionally used to detect high electric conductivity discrete targets such as metal unexploded ordnance. The frequencies used for this EMI regime have typically been less than 100 kHz. To detect intermediate conductivity objects like carbon fiber, even less conductive saturated salts, and even voids embedded in conducting soils, higher frequencies up to the low megahertz range are required in order to capture characteristic responses. To predict EMI phenomena at frequencies up to 15 MHz, we first modeled the response of intermediate conductivity targets using a rigorous, first-principles approach, the Method of Auxiliary Sources. A newly fabricated benchtop high-frequency electromagnetic induction instrument produced EMI data at frequencies up to that same high limit. Modeled and measured characteristic relaxation signatures compare favorably and indicate new sensing possibilities in a variety of scenarios.
机译:传统上,超宽带电磁感应(EMI)仪器用于检测高电导率的离散目标,例如金属未爆炸弹药。用于此EMI机制的频率通常小于100 kHz。为了检测中间导电性的物体,例如碳纤维,甚至更少的导电饱和盐,甚至是嵌入导电土壤中的空隙,为了捕获特征响应,都需要更高的频率直至低兆赫兹范围。为了预测高达15 MHz的频率下的EMI现象,我们首先使用严格的第一原理方法(辅助源方法)对中间电导率目标的响应进行建模。一种新制造的台式高频电磁感应仪产生的EMI数据的频率高达同一上限。建模和测量的特征弛豫特征可以很好地进行比较,并在各种情况下指示出新的传感可能性。

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