热处理如何影响薄膜电容器

D. Loescher, C. E. Gumley
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引用次数: 1

摘要

测定了74℃~ 130℃热处理对聚酯薄膜绝缘电容器直流击穿电压(V B)和电容随温度变化的影响。研究了热处理温度对电容放电寿命和脱水速率的影响。研究发现,在74°C条件下,绝缘厚度为50.8µm、0.4-/µF的电容器的击穿电压从11.5 kV降至9.9 kV。当温度从-55°C变化到74°C时,在74°C下处理的单元的电容变化为8.5%,在130°C下处理的单元的电容变化为6.5%。在放电试验失败后,在74°C热处理的电容器展开时,在标签处和沿着箔片的随机位置发现了燃烧的证据。在100°C处理并进行相同测试的单元中没有发现类似的证据。最后,水解吸研究的结果表明,在低于74℃的温度下,聚酯薄膜电容器的干燥可以在10小时或更短的时间内完成。因此,加工温度的选择必须基于对电容器的所有要求的考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How Heat Treatment Affects Film Foil Capacitors
The effects of heat treatment between 74°C and 130°C on the dc breakdown voltage (V B ) and the change of capacitance with temperature have been determined for capacitors with Mylar film insulation. Some effects of the temperature of heat treatment on discharge life and on the rate of water desorption from rolled capacitors were also determined. It was found that the breakdown voltage decreased from 11.5 kV dc for 0.4-/µF capacitors with 50.8 µm of insulation processed at 74°C to 9.9 kV for similar units processed at 130°C. The change in capacitance associated with a temperature change from -55°C to 74°C was 8.5 percent for the units processed at 74°C and 6.5 percent for units processed at 130°C. Evidence of burning at tabs and at random locations along the foils was found when capacitors heat-treated at 74°C were unrolled after failure in discharge tests. No similar evidence was seen in units processed at 100°C and subjected to the same tests. Finally, results from the water desorption studies show that drying of Mylar capacitors can be accomplished in 10 h or less at temperatures below 74°C. Hence the choice of temperature for processing must be based on a consideration of all requirements placed on a capacitor.
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