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Electrical and capacitive methods for detecting degradation in wire insulation.

机译:用于检测电线绝缘性能下降的电气和电容方法。

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摘要

Motivated by a need within the aerospace industry to detect and characterize degradation in the insulation of onboard wires, this thesis reports testing of several extant methods and development of novel capacitive sensors. This work focuses on measuring the electrical parameters resistance and capacitance that are directly related to the material parameters conductivity and permittivity, respectively, of the insulation. It is shown that the measured electrical parameters successfully indicate degradation in the wire insulation.;Insulation resistance tests were performed on 17 wire samples, removed from various locations on a retired aircraft, and compared with those conducted on pristine wire samples, in order to assess any change in conductivity exhibited by degraded insulation. Timed resistance tests were also performed to determine the dielectric absorption of the insulation. Curved patch-electrode sensors were applied in order to measure the capacitance and dissipation factor of the same wires. Results from the resistive and capacitive tests both identified wire samples that were apparently significantly degraded, as indicated qualitatively by visual inspection.;Further, a novel cylindrical interdigital capacitive sensor was developed. The interdigital sensor is designed with the goal of achieving a good signal-to-noise ratio, the lowest instrument error possible at 1 MHz, full circumferential coverage of the wire, and the ability to adjust the penetration depth of the electric field into the insulation layer by adjusting the separation of the sensor digits. With the aim, ultimately, of quantitative measurement of insulation complex permittivity, a numerical model was developed using a cylindrical Green's function and the Method of Moments to calculate theoretically the capacitance of the interdigital sensor. Benchmark experiments were carried out on large-scale dielectric-coated conductive cylinders to test the validity of the model. Experimental results agreed with measured results to within 5% for sensor configurations with 22 and 30 digits of each polarization, tested on insulation polymers acetal copolymer, acrylic and polytetrafluoroethylene. A design method by which the penetration depth of the electric field into the insulation layer may be optimized is also introduced.;Plans for future work, to develop interdigital capacitive sensors with a convenient hand-held clamp design for in-situ testing of aircraft wiring insulation, are also presented.
机译:出于航空航天工业中检测和表征机载电线绝缘性能下降的需求,本论文报告了几种现有方法的测试以及新型电容传感器的开发。这项工作专注于测量分别与绝缘材料参数电导率和介电常数直接相关的电参数电阻和电容。结果表明,测得的电气参数成功地表明了电线绝缘性能的下降。;对17个电线样品进行了绝缘电阻测试,将其从退休飞机的各个位置移开,并与原始电线样品进行了比较,以评估绝缘性能下降会导致电导率发生任何变化。还进行了定时电阻测试,以确定绝缘体的介电吸收。为了测量同一根导线的电容和耗散系数,使用了弯曲的贴片电极传感器。电阻测试和电容测试的结果均确定了明显退化的导线样品,如通过肉眼检查定性地指出的那样。进一步,开发了新型的圆柱形叉指电容传感器。叉指式传感器的设计目标是实现良好的信噪比,在1 MHz时可能出现的最低仪器误差,导线的整个周向覆盖范围以及调节电场进入绝缘层的穿透深度的能力通过调整传感器数字的间距来设置图层。最终,为了定量测量绝缘复介电常数,使用圆柱格林函数和矩量法开发了一个数值模型,以从理论上计算叉指式传感器的电容。在大型介电涂层导电圆柱体上进行了基准实验,以测试模型的有效性。在绝缘聚合物缩醛共聚物,丙烯酸和聚四氟乙烯绝缘材料上进行测试,实验结果与传感器配置的测量结果一致,误差在5%以内,传感器配置分别为22和30位数。还介绍了一种可以优化电场进入绝缘层的穿透深度的设计方法。未来的工作计划,是开发具有方便的手持式夹具设计的叉指式电容传感器,用于飞机接线的现场测试绝缘,也介绍。

著录项

  • 作者

    Sheldon, Robert T.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Electronics and Electrical.;Engineering Materials Science.
  • 学位 M.S.
  • 年度 2012
  • 页码 75 p.
  • 总页数 75
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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