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Electrical Breakdown and Recovery of Water and Propylene Carbonate

机译:电击穿和水和碳酸丙酯的回收

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Polar liquids, especially water, offer the advantages of high permittivity, a high dielectric strength and a fast dielectric recovery. These benefits make them appealing dielectrics for use in high-energy storage systems and as high-power switching media. In certain applications, however, the use of water is limited by its relatively high freezing point of 0degC and low boiling point 100degC. In comparison, propylene carbonate (C4H6O3) has a freezing temperature of -55degC and boiling point of 243degC in addition to its high permittivity of 65. The dielectric strength was found to be 2.3 MV/cm, slightly higher than that of water tested under the same conditions. As an alternative to water in high repetition rate systems we studied the dielectric recovery of propylene carbonate after breakdown. We found the recovery time to be more than one order of magnitude longer than for water. Moreover, the breakdown in propylene carbonate gives rise to a polymer formation in the liquid.
机译:极性液体,尤其是水,提供高介电常数,高介电强度和快速介电回收的优点。这些益处使其具有吸引力的电介质,用于高储能系统和高功率开关介质。然而,在某些应用中,水的使用受其相对较高的0DEGC和低沸点100degc的限制。相比之下,碳酸亚丙酯(C 4 h 6 o 3 )除了其外,还具有-55degc和243degc的沸点的冷冻温度。高介电常数为65.发现介电强度为2.3mV / cm,略高于在相同条件下测试的水。作为高重复率系统中的水的替代方案,我们研究了崩溃后丙烯碳酸亚丙酯的介电恢复。我们发现恢复时间比水更长的数量级。此外,碳酸亚丙酯中的缩小产生液体中的聚合物形成。

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