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Performance of Aluminium Electrolytic Capacitors and Influence of Aluminium Cathode Foils

机译:铝电解电容器的性能及铝阴极箔的影响

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摘要

The performance of large screw terminal aluminium electrolytic capacitors, constructed with three different commercial aluminium cathode foils, was evaluated by capacitor endurance and internal pressurization tests; the latter using in-situ pressure transducers to monitor the pressure build-up continuously. In-situ pressure measurements showed that the pressurization process features three distinctive pressure regions: Region 1 with a steep increase in pressure; region 2 has slow pressure build up reaching a pressure off-set time and coming to region 3 when pressure increases rapidly until testing termination. The pressure off-set time varied between 200 to over 2300 hours depending on the cathode foil used. The mechanisms of internal pressurization in these three pressure regions are discussed. Capacitance measurement and SEM-EDS examination of the foils revealed that the foil with the least capacitance and morphological changes, before and after capacitor endurance test, had the longest off-set time. Presence of micro-alloying elements (Mn, Fe, Cu, etc.) detected by ICP-OES has significant effect on the performance of the foils. The internal pressurization is mainly associated with the electrochemical reactions, such as dissolution of aluminium substrate and evolution of hydrogen.
机译:通过电容器耐久性和内部加压测试评估了由三种不同的商用铝阴极箔制成的大型螺旋端子铝电解电容器的性能;后者使用原位压力传感器连续监测压力的累积。现场压力测量表明,加压过程具有三个独特的压力区域:压力急剧上升的区域1;压力急剧上升的区域1。区域2具有缓慢的压力累积,达到压力补偿时间,并且当压力迅速增加直到测试终止时,区域2就会到达区域3。取决于所使用的阴极箔,压力补偿时间在200到2300多个小时之间变化。讨论了在这三个压力区域内的内部增压机理。箔片的电容测量和SEM-EDS检查表明,在电容器耐久试验前后,具有最小电容和形态变化的箔片具有最长的胶印时间。 ICP-OES检测到的微合金元素(Mn,Fe,Cu等)对箔片的性能有重要影响。内部加压主要与电化学反应有关,例如铝基质的溶解和氢的释放。

著录项

  • 来源
    《CARTS USA 2010 》|2010年|p.203-218|共16页
  • 会议地点 New Orleans LA(US);New Orleans LA(US)
  • 作者单位

    Electrolytic Innovation Centre, BHC Components LTD (KEMET), 20 Cumberland Drive, Granby Industrial Estate, Weymouth, Dorset DT4 9TE, United Kingdom;

    Electrolytic Innovation Centre, BHC Components LTD (KEMET), 20 Cumberland Drive, Granby Industrial Estate, Weymouth, Dorset DT4 9TE, United Kingdom;

    Electrolytic Innovation Centre, BHC Components LTD (KEMET), 20 Cumberland Drive, Granby Industrial Estate, Weymouth, Dorset DT4 9TE, United Kingdom;

    KEMET Electronics Corporation, 2835 KEMET Way, Simpsonville, SC 29681 USA;

    KEMET Electronics Corporation, 2835 KEMET Way, Simpsonville, SC 29681 USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 半导体技术 ;
  • 关键词

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