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An Interdigital Capacitive Sensor for Nondestructive Evaluation of Wire Insulation

机译:用于数字绝缘无损评估的叉指式电容传感器

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A capacitive sensor has been developed for measuring the permittivity of wire insulation materials. The sensor consists of interdigital electrodes deposited on a thin polyimide substrate that conforms to the surface of the insulated wire or cable. The test piece was modeled theoretically by assuming a perfectly conducting cylindrical rod coated with two concentric dielectric layers. Constant potential difference $V$ between the electrodes was assumed. The method of moments and Green's function solution to the cylindrical Poisson equation were utilized to determine the charge distribution on the electrodes and hence the total charge $Q$, from which the capacitance was calculated from the relation $C=Q/V$. To validate the model, calculated capacitance was compared with that obtained from benchmark experiments performed on a set of three brass rods insulated with acetal copolymer, PTFE, and acrylic. The permittivity of these three polymers was measured independently and provided to the model. The mean difference between calculated capacitance and that measured experimentally was found to be ${<}{2%}$. Furthermore, a handheld prototype sensor suitable for clamping to aircraft wire was designed and measurements of capacitance were made on M5086 aircraft wire. This consists of tin-coated copper strands insulated with flexible PVC, a glass fiber braid, and finally coated with Nylon 6. After exposure to various common aircraft fluids (cleaner, deicer, distilled water, hydraulic fluid, isopropanol, and jet fuel), the measurements showed significant changes in measured capacitance, correlating well with the results of accelerated aging experiments on pure Nylon 6.
机译:已经开发出一种电容传感器来测量电线绝缘材料的介电常数。传感器由叉指式电极组成,叉指式电极沉积在与绝缘电线或电缆表面相符的薄聚酰亚胺基板上。在理论上通过假定一个涂覆有两个同心介电层的圆柱形导电棒对测试件进行建模。假定电极之间的电势差恒定为$ V $。利用矩量法和圆柱泊松方程的格林函数解来确定电极上的电荷分布,从而确定总电荷$ Q $,并根据关系$ C = Q / V $计算电容。为了验证该模型,将计算出的电容与通过对一组由乙缩醛共聚物,PTFE和丙烯酸绝缘的三根黄铜棒进行的基准实验获得的电容进行比较。分别测量这三种聚合物的介电常数并将其提供给模型。发现计算电容与实验测量电容之间的平均差为$ {<} {2%} $。此外,设计了一种适用于固定在飞机电线上的手持式原型传感器,并在M5086飞机电线上进行了电容测量。它由镀锡铜绞线组成,这些镀锡铜绞线用柔性PVC绝缘,用玻璃纤维编织层绝缘,最后用尼龙6涂覆。测量结果表明,测得的电容发生了显着变化,这与纯尼龙6上加速老化实验的结果密切相关。

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