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Effect of Ambient Temperature on Insulation Lifetime of Inverter Surge Resistant Enameled Wire Prepared with Organic/Inorganic Hybrid Nanocomposite

机译:环境温度对有机/无机杂化纳米复合材料制备的耐电涌漆包线绝缘寿命的影响

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Inverter surge resistant enameled wire was prepared with an organic/inorganic hybrid nanocomposite, and the effect of ambient temperature on the insulation lifetime of the enameled wire in the form of twisted pair was studied by a withstanding voltage tester. The organic polymer was Polyesterimide-polyamideimide (EI/AI) and the inorganic material was a Nano-sized silica (average particle size : 15 nm). The enamel thickness was 50 μm and the ambient temperature was 100, 150, 200, and 250, respectively. Transmission electron microscopy (TEM) observation showed that Nano-sized Silica were evenly dispersed in EI/AI. There were many air gaps in a twisted pair, therefore, when voltage was applied to the twisted pair, enamel erosion took place in the air gap area because of partial discharge accordi, ng to Paschen’s law. As ambient temperature increased, insulation lifetime decreased according to Arrhenius relationship, which was explained by the increasing mobility of polymer chains in EI or AI. And insulation breakdown voltage value at 10 kHz was 1,864.5 sec (31.1 min), which is 1.9 times higher than at 20 kHz, 981.6 sec (16.4 min).
机译:用有机/无机杂化纳米复合材料制备了耐逆变电涌漆包线,并用耐压测试仪研究了环境温度对双绞线漆包线绝缘寿命的影响。有机聚合物是聚酯酰亚胺-聚酰胺酰亚胺(EI / AI),无机材料是纳米尺寸的二氧化硅(平均粒径:15nm)。搪瓷厚度为50μm,环境温度分别为100、150、200和250。透射电子显微镜(TEM)观察表明,纳米尺寸的二氧化硅均匀分散在EI / AI中。双绞线中有很多气隙,因此,当电压施加到双绞线时,由于符合帕申定律的局部放电,在气隙区域发生了搪瓷腐蚀。随着环境温度的升高,绝缘寿命根据Arrhenius关系而降低,这可以通过EI或AI中聚合物链的迁移率增加来解释。 10 kHz时的绝缘击穿电压值为1,864.5秒(31.1分钟),是20 kHz时981.6秒(16.4分钟)的绝缘击穿电压值的1.9倍。

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