首页> 外文会议>Pulsed Power Conference (PPC), 2011 IEEE >Study on self-healing and lifetime characteristics of metallized film capacitor under high electric field
【24h】

Study on self-healing and lifetime characteristics of metallized film capacitor under high electric field

机译:高电场下金属化薄膜电容器的自愈和寿命特性研究

获取原文
获取原文并翻译 | 示例

摘要

High energy density capacitor is a key device in power supply source in Electromagnetic Gun (EMG) system. In order to increase the reliability of the power source equipment, the lifetime of capacitors must be lengthened. The increasing of the capacitor's lifetime is mainly beneficial from its self-healing capability. Nevertheless the self-healing is the main reason for the capacitance loss of metallized film capacitors, and it might finally lead to the failure of a capacitor. Firstly, the research results show that the self-healing energy is the crucial factor which influences the self-healing process. Secondly, the paper analyzes the capacitance loss mechanism of metalized film capacitor, including the effect of electrode structure and interlayer air. And then, the corresponding methods of increasing the lifetime of the metalized film capacitors are proposed. At last, based on parameter optimization of electrode pattern construction and practical techniques, a dry-type compact metalized film capacitor with energy density of 2.0 MJ/m3 is designed and tested with a lifetime over 500 shots. And the impregnated metalized film capacitor can be expected to achieve a lifetime of 1000 shots. And the second type design with 1.5 MJ/m3 design with discharge current magnitudes up to 100 kA have already been testified in an Electromagnetic Gun (EMG) system application.
机译:高能量密度电容器是电磁枪(EMG)系统电源中的关键设备。为了提高电源设备的可靠性,必须延长电容器的使用寿命。电容器寿命的增加主要得益于其自愈能力。然而,自修复是金属化薄膜电容器电容损失的主要原因,并且最终可能导致电容器故障。首先,研究结果表明,自愈能量是影响自愈过程的关键因素。其次,分析了金属化薄膜电容器的电容损耗机理,包括电极结构和层间空气的影响。然后,提出了相应的延长金属化薄膜电容器寿命的方法。最后,基于电极图形结构的参数优化和实用技术,设计并测试了能量密度为2.0 MJ / m3的干式紧凑型金属化薄膜电容器,并进行了500次以上的寿命测试。浸渍金属化薄膜电容器的寿命有望达到1000次。第二种类型的设计具有1.5 MJ / m3的设计,其放电电流大小高达100 kA,已在电磁喷枪(EMG)系统应用中得到验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号