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Aging evaluation of insulation materials for environmentally-friendly compact gas-insulated equipment

机译:环保型紧凑型气体绝缘设备的绝缘材料的老化评估

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This paper evaluates the aging of insulation materials such as insulators and dielectric coatings on high-voltage (HV) electrode for compact gas-insulated equipment that reduces the environmental impacts. This environmentally-friendly gas-insulated equipment features compact apparatus using minimum SF6 by utilizing the insulation techniques such as advanced dielectric coatings and functionally graded material (FGM). In this compact equipment, micro-size defects inside solid insulator would become more harmful than conventional equipment. It is also essential to evaluate the aging performance of the dielectric coatings. In addition, the equipment life extension is a great concern by applying new materials like FGM. Considering the above, the following three topics are discussed.Firstly, the influence of micro-size defects inside on solid insulator aging is investigated. Three kinds of micro-defects and their critical sizes, which cause small partial discharge (PD, defined as 1 pC) compared to PD levels specified in IEC (5 pC) and the Japanese standard (JEC, 10 pC), are studied. It is found that a crack is the most harmful micro-defect to be detected. Secondly, V-N and V-t characteristics of advanced thick and thin dielectric coatings on HV electrodes, which has 1.5 times higher dielectric performance than bare electrode, are investigated. The V-N characteristic of the thick dielectric coating shows that the degradation by repetitive discharges is not so severe. The insulation design of the coating for repetitive discharges for disconnecting switch and earthing switch can be carried out by using the V-N characteristic. The V-t characteristic of the thin dielectric coating suggests that the long-term degradation constant is comparable to that of casting epoxy. Lastly, extension of equipment lifetime by applying FGM to insulators is investigated. The lifetime is evaluated from the V-t characteristic of the fabricated FGM samples. The insulator lifetime made of FGM is expected to be around 2 - 8 times longer than that of a conventional insulator. It is concluded that the above aging evaluation method of solid insulation materials and the advanced dielectric coating is one of the essential techniques to realize compact gas-insulated equipment with low environmental impacts. Henceforth, the techniques can be the basis of the design of environmentally-friendly gas-insulated equipment to maintain its reliability and to extend its life.
机译:本文评估了用于减少气体对环境的影响的紧凑型气体绝缘设备的绝缘材料(例如绝缘体和高压(HV)电极上的电介质涂层)的老化情况。这种环保型气体绝缘设备的特点是采用先进的电介质涂层和功能梯度材料(FGM)等绝缘技术,使用最少的SF6制成了紧凑的设备。在这种紧凑的设备中,固体绝缘子内部的微小尺寸缺陷将比传统设备更具危害性。评估介电涂层的老化性能也很重要。此外,通过应用新材料(例如FGM)来延长设备寿命是一个非常令人关注的问题。考虑到上述情况,讨论了以下三个主题。 首先,研究了内部微小尺寸缺陷对固体绝缘子老化的影响。与IEC(5 pC)和日本标准(JEC,10 pC)规定的PD水平相比,研究了三种导致微小局部放电(PD,定义为1 pC)的微缺陷及其临界尺寸。发现裂纹是要检测的最有害的微缺陷。其次,研究了具有比裸电极高1.5倍的介电性能的HV电极上先进的厚,薄介电涂层的V-N和V-t特性。厚介电涂层的V-N特性表明,重复放电引起的退化不是那么严重。可以通过使用V-N特性对断开开关和接地开关进行重复放电的涂层进行绝缘设计。薄介电涂层的V-t特性表明,长期降解常数可与浇铸环氧树脂相媲美。最后,研究了通过将FGM应用于绝缘子来延长设备寿命。根据制造的FGM样品的V-t特性评估寿命。由FGM制成的绝缘子的寿命预计比传统绝缘子的寿命长约2至8倍。可以得出结论,上述固体绝缘材料和先进的电介质涂层的老化评估方法是实现对环境影响小的紧凑型气体绝缘设备的必要技术之一。今后,这些技术可以成为设计环保型气体绝缘设备的基础,以保持其可靠性并延长其使用寿命。

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