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Self-Healing Processes of Metallized Film Capacitors in Overload Modes—Part 1: Experimental Observations

机译:过载模式中金属化薄膜电容器的自我修复过程 - 第1部分:实验观察

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Metallized film capacitors (MFCs) are used in many applications requiring high volumetric energy characteristics. Along with an increase in the dielectric permittivity of the polymer film, operating in overload mode is a simple way to dramatically increase the energy density of capacitors for relatively short periods. The unique feature of MFC, a self-healing (SH) ability, makes this possible. However, the task is complicated by the lack of information on the energy characteristics of SH in real capacitors, especially when they are voltage overstressed. Part 1 of this article contains the results of experimental investigations of SH processes in overload modes under the soft-training test. At the level of voltage up to 8 of nominal values, three types of SH were discovered: single, repetitive, and multiple. The energy characteristics of SH processes obtained in real MFCs varied widely from those in the literature data. The cumulative SH energy characteristic was introduced and proposed for diagnostic purposes. The reasons for repetitive SH were investigated and analyzed. Equivalent parallel resistance as a sensitive diagnostic parameter of the overloaded MFC was chosen and applied.
机译:金属化薄膜电容器(MFCs)用于许多需要高容量能量特性的应用。随着聚合物膜的介电常数的增加,在过载模式下操作是显着提高电容器的电容器的能量密度的简单方法。 MFC,自我修复(SH)能力的独特功能使得这成为可能。然而,由于在实际电容器中缺乏关于SH的能量特性的信息,任务是复杂的,特别是当它们是带电的电压时。本文第1部分包含软训练测试下的过载模式中SH流程的实验研究结果。在标称值高达8的电压水平上,发现了三种类型的SH:单​​,重复和多个。实际MFC中获得的SH过程的能量特性从文献数据中的那些广泛变化。介绍并提出了累积的SH能量特性以用于诊断目的。研究并分析了重复SH的原因。选择和应用作为过载的MFC的敏感诊断参数的等效并联电阻。

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