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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Measurement of surface potential of non-uniformly charged insulating materials using a non-contact electrostatic voltmeter
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Measurement of surface potential of non-uniformly charged insulating materials using a non-contact electrostatic voltmeter

机译:使用非接触式静电电压表测量不均匀充电的绝缘材料的表面电势

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Non-contact measurements performed with the auto-compensated electrostatic induction probe of an electrostatic voltmeter are often employed to characterize the charging state of insulating materials, such as films or non-woven media. The aim of the paper is double: (i) describe a simple method for assessing the resolution of such a probe; (ii) discuss the significance that can be attributed to the value displayed by the electrostatic voltmeter when the charge is non-uniformly distributed at the surface of the bodies examined by the probe and no constant surface potential can be defined. The measurements were performed for some simple experimental models that simulate surface potential non-uniformity of constant-charge insulating bodies. By examining the different surface potential distribution curves that were obtained for each of the situations under study, it is possible to estimate the resolution of the probe. A commercial computer program based on the superficial charge simulation method was employed for the numerical analysis of the electric field in a simplified 2-D representation of the geometric system formed by the probe, the experimental model, and the grounded plate. The potential that anneals the electric field at the surface of the probe (to simulate its principle of operation) was calculated by an iterative method. A good agreement was found between the results of the numerical simulations and the experimental data. The errors that can be made in the interpretation of the results of surface potential measurements are illustrated by the case of a non-uniformly-charged non-woven polypropylene fabric.
机译:通常使用静电伏特计的自动补偿静电感应探针执行的非接触式测量来表征绝缘材料(例如薄膜或非织造介质)的充电状态。本文的目的是双重的:(i)描述一种评估这种探针分辨率的简单方法; (ii)讨论当电荷不均匀地分布在探头所检查的物体表面且无法定义恒定的表面电势时,静电电压表显示的值所具有的重要性。对一些简单的实验模型进行了测量,这些模型模拟了恒电荷绝缘体的表面电势不均匀性。通过检查针对每种研究情况获得的不同表面电势分布曲线,可以估计探针的分辨率。使用基于表面电荷模拟方法的商业计算机程序以简化的二维表示形式对电场进行数值分析,该二维表示由探针,实验模型和接地板形成。通过迭代方法计算退火探针表面电场(以模拟其工作原理)的电势。在数值模拟结果和实验数据之间找到了很好的一致性。在不均匀充电的非织造聚丙烯织物的情况下,说明了在解释表面电势测量结果时可能出现的错误。

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