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Effect of organic additives on electrical breakdown in transformer oil and liquid paraffin

机译:有机添加剂对变压器油和液体石蜡电击穿的影响

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The results of electric-breakdown tests with direct voltage on transformer oil containing additives known as hydrogen acceptors are given in the paper. The test samples were filtered and carefully degassed in a closed test apparatus with an incorporated test cell. The samples were also stress-conditioned for not less than 2h, using direct voltage. The oil and its solutions treated in this way were then tested with uniform and nonuniform electrode configurations. With the electric strength of the treated oil as a reference, the effect on its value of different additives at different concentrations was examined. It was found that the presence of all the additives which were used affected the breakdown strength of the oil. Optimum concentrations of additives were observed, which gave maximum increases in breakdown values. The paper also gives the results of electric-breakdown tests on liquid paraffin and its solutions, containing aromatic constituents of transformer oil as well as hydrogen acceptors. The test samples of liquid paraffin were treated in a similar way to those of transformer oil and tested in the same apparatus. Again using the electric strength of pure liquid paraffin as a reference, the effects of additives were examined. The hydrogen acceptors, when present in liquid paraffin, were found to be less effective than in transformer oil. More pronounced effects of these additives were found, however, when the solution of liquid paraffin also contained a small amount of aromatic constituents of transformer oil. A breakdown model is suggested for both liquids, based on the assumption of two types of gas bubbles which are formed when the liquids are subjected to high electric stresses. This model gives a reasonable explanation of the experimental observations.
机译:本文给出了在含添加剂的被称为氢受体的变压器油上用直流电压进行电击穿测试的结果。过滤测试样品,并在装有测试室的密闭测试设备中仔细脱气。还使用直流电压对样品进行了不少于2h的应力调节。然后用均匀和不均匀的电极构型测试以这种方式处理的油及其溶液。以处理后的油的电气强度为参考,研究了不同浓度下不同添加剂对其油值的影响。发现所有使用的添加剂的存在都会影响油的击穿强度。观察到最佳的添加剂浓度,可以最大程度地提高击穿值。本文还给出了对液体石蜡及其溶液进行电击穿测试的结果,该溶液包含变压器油的芳香族成分以及氢受体。以类似于变压器油的方式处理液态石蜡的测试样品,并在同一设备中进行测试。再次使用纯液体石蜡的电强度作为参考,检查添加剂的作用。当氢受体存在于液体石蜡中时,发现其效率比变压器油低。但是,当液体石蜡溶液还包含少量变压器油的芳族成分时,发现这些添加剂的作用更为明显。建议基于两种液体的击穿模型,假设是在液体受到高电应力时会形成两种气泡。该模型对实验观察给出了合理的解释。

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