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Study of temperature rise of metallized capacitors applied in repetitive pulse

机译:重复脉冲中金属化电容器温升的研究

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摘要

When metallized capacitors are applied to pulsed power applications with frequency less than 1 Hz, heat induced by current can be ignored. However, it is necessary to consider the accumulation effect of heat on temperature rise of capacitors which are applied to repetitive pulsed systems. The paper mainly study the influence of frequency and line current density on temperature rise of metallized capacitors applied to repetitive pulsed systems. The experiment results show that temperature increases with line current density and frequency increasing, and when surface temperature of capacitor is higher than 110 u000b0;C, the melted PP film would blow out from the middle location of capacitors, and the highest temperature in the capacitor is calculated. The capacitor segment location and line current density on the single discharge energy of the capacitor are influenced and has been analyzed by ATP. Temperature rise of each segment location of capacitor caused by single discharge was calculated, the results show that temperature rise is very small.
机译:当金属化电容器应用于频率小于1 Hz的脉冲功率应用时,电流引起的热量可以忽略。但是,有必要考虑热量的积累对电容器的温升的影响,电容器应用于重复脉冲系统。本文主要研究频率和线电流密度对应用于重复脉冲系统的金属化电容器温升的影响。实验结果表明,温度随着线电流密度和频率的增加而升高,并且当电容器的表面温度高于110 u000b0; C时,熔化的PP膜将从电容器的中间位置吹出,电容器中的最高温度计算。电容器的位置和线电流密度对电容器单次放电能量的影响,并已通过ATP进行了分析。计算了一次放电引起的电容器各段位置的温升,结果表明温升很小。

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