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Study on Dielectric Breakdown at DC Polarity Reversal in Oil/pressboard-composite Insulation System

机译:油/压板 - 复合绝缘系统DC极性逆转介电击穿研究

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By using Kerr electro-optic method, charge behavior in oil/pressboard (PB) composite insulation system, which is the basic insulation structure of a transformer, was investigated under DC voltage. Right after the DC voltage application, electric field became the capacitive distribution, and had a strong value which was determined by permittivity of materials. The field strength decreased gradually with time as charge in oil was accumulated on PB. When the voltage polarity was reversed, the applied electric field was superimposed by the electric field formed by the accumulated charge on PB, and very strong field appeared right after the polarity reversal. This could cause the discharge in the oil gap even when the independent applied voltage was insufficient to initiate discharge. It was found out that the critical value of the discharge initiation at the polarity reversal was determined by the breakdown field strength of the oil gap.
机译:通过使用Kerr电光方法,在DC电压下研究了油/压板(Pb)复合绝缘系统中的电荷行为(Pb)复合绝缘系统,即变压器的基本绝缘结构。在直流电压施加之后,电场成为电容分布,并且具有强的值,该值是通过材料介电常数决定的。随着油的电荷积累在Pb上,场强随着时间的推移随着时间的推移而逐渐降低。当电压极性反转时,施加的电场被通过PB上的累积电荷形成的电场叠加,并且在极性反转之后非常强的场出现非常强的场。即使独立施加的电压不足以引发放电,这也可能导致油间隙中的放电。发现,极性反转在极性反转的临界值由油间隙的击穿场强度决定。

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