交直流电压斜坡下浸渍油压板的电气击穿

A. Laifaoui, Mohand-Seghir Herzine, H. Ait Said, J. Reboul
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引用次数: 0

摘要

在这项工作中,我们对一种广泛用于油变压器和其他设备的绝缘材料的电击穿也称为介电破坏进行了实验研究。这种材料是浸渍了绝缘油的纸板。击穿试验在三种电压和几种电压上升速度下进行。介质击穿是一种随机现象,对大量样品进行了多次试验,所得结果进行了统计处理。材料从一组长度为2平方米,厚度为500微米的板材中切割成7.5厘米长的方形板材。在测试之前,样品在带有硅凝胶的干燥器中放置至少24小时,以消除任何水分的存在。然后用Borak22绝缘油浸渍至少一周。测试包括将有关样品置于两个圆柱形青铜电极之间,并以恒定速度施加电压斜坡直到击穿。故障后,取击穿电压值。这些试验是在实验室的室温下进行的。但是,我们已经尝试在所有测试中重现相同的条件。这些不同的试验涉及到施加电压的形式和上升速率对浸渍Borak22绝缘油的压纸板的介电强度的影响。使用两个测量装置,在正弦交流电、连续正极性和连续负极性三种电压形式下进行测试,并在8种不同的电压斜坡速度下进行测试:0,69;1、07;1、4;1, 89;2, 38岁;2, 94;3,28和4,17 kV/s。对于每个测点,使用35个纸板纸样品进行测试。采用双参数威布尔统计模型对840个结果进行了处理。为了验证该模型,这些结果经过Kolmogorov-Smirnov充分性检验,并由95%置信区间构成。采用极大似然法对威布尔参数进行估计,并对实验点进行平滑处理。对击穿电压测点的统计试验结果证实了双参数威布尔模型的应用。标称击穿电压作为三种施加电压形式的电压斜坡的函数的演变给出了相同形式的三个属性,这类似于字母“S”。击穿电压首先在低速时线性增加,然后在中速时增加并呈指数形式,然后在高速时趋于一定的饱和。直流电压斜坡下的击穿电压高于交流电压斜坡下的击穿电压,负极性电压下的击穿电压高于正极性电压下的击穿电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrical Breakdown of Oil-Impregnated Pressboard under AC and DC Voltages Ramp
In this work, we present an experimental study on electrical breakdown, also called dielectric failure on a material widely used as insulation in oil transformers and other equipment. This material is pressboard paper impregnated with insulating oil. The breakdown tests are carried out under three types of voltage and for several voltage rise speeds. Dielectric breakdown is a random phenomenon, many tests are carried out on a large number of samples and the results obtained have been subjected to statistical processing. The material is cut into square plates of 7.5 cm in length from a set of plates 2 m² in length and 500 µm in thickness. Prior to the tests, the samples were conditioned in a desiccator with silicone gel for at least 24 hours in order to eliminate any presence of moisture. Then they were impregnated with Borak22 insulating oil for at least one week. The tests consist of placing the sample concerned between two cylindrical bronze electrodes and applying a voltage ramp at constant speed until breakdown. After failure, the value of the breakdown voltage is taken. These tests are carried out in the laboratory at room temperature. However, we have tried to reproduce the same conditions for all the tests. These various tests relate to the effect of the form and the rate of rise of the applied voltage on the dielectric strength of the pressboard paper impregnated with Borak22 insulating oil. Two measuring devices were used, and the tests were carried out under three voltage forms: sinusoidal alternating current, continuous positive polarity, and continuous negative polarity, and at eight different voltage ramp speeds: 0,69; 1,07; 1,4; 1,89; 2,38; 2,94; 3,28 and 4,17 kV/s. For each measurement point, 35 samples of pressboard paper are used and tested. A total of 840 results were obtained and processed using the two-parameter Weibull statistical model. In order to validate this model, these results are subjected to a Kolmogorov-Smirnov adequacy test and are framed by 95% confidence bands. The maximum likelihood method is used for the estimation of the Weibull parameters and the smoothing of the experimental points. The results of the statistical tests on the breakdown voltage measurement points obtained confirm the use of the two-parameter Weibull model. The evolution of the nominal breakdown voltage as a function of the voltage ramp of the three forms of applied voltage gives three properties of the same form, which is akin to the letter 'S'. The breakdown voltage first increases linearly for low speeds, then increases and takes an exponential form for medium speeds, then tends towards a certain saturation for high speeds. The breakdown voltage under the DC voltage ramp is higher than the voltage obtained for the AC voltage ramp and are higher under negative polarity voltage than those under positive polarity voltage.
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来源期刊
EEA - Electrotehnica, Electronica, Automatica
EEA - Electrotehnica, Electronica, Automatica Engineering-Electrical and Electronic Engineering
CiteScore
0.90
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26
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