期刊文献+

多脉冲雷电流下氧化锌压敏电阻损伤机理试验分析

Experimental Analysis on Damage Mechanism of Zinc Oxide Varistors under Multi-pulse Lightning Current
在线阅读 下载PDF
导出
摘要 依据相关标准确定多脉冲雷电流试验参数,在多脉冲雷电测试平台对氧化锌压敏电阻ZnO阀片开展3个系列的冲击试验。试验结果表明:多脉冲电流幅值、脉冲数量和间隔时间对氧化锌压敏电阻的电气性能、试品温升及热崩溃损伤机理均有显著影响。因而,目前在直击雷防护系统中使用的SPD耐受多脉冲雷电流冲击的能力可能较低,亟需加强SPD多脉冲动作计数与状态监测研究,完善相关防护标准。 Parameters of tests under the multi-pulse lightning current are fixed according to relevant standards,and three series of impulse tests on zinc oxide(ZnO)varistor valve plates are carried out on a multi-pulse lightning test platform.The test result shows that the multiple-pulse current amplitude,pulse number and interval significantly impact the electrical properties of the zinc oxide varistor,tested objects'temperature rise and the damage mechanism of thermal breakdowns.Therefore,the SPD currently used in direct lightning strike protection systems may have a low ability to withstand multi-pulse lightning current impulse,and it is urgent to strengthen the study on SPD multi-pulse action counting and condition monitoring and improve the relevant protection standards.
作者 张利华 李涵 赵军 ZHANG Lihua;LI Han;ZHAO Jun(Beijing Lightning Protection Device Test Center of Beijing Meteorological Service,Beijing 100176,China;School of Electrical Engineering and Automation,Wuhan University,Wuhan 430072,China)
出处 《建筑电气》 2025年第2期18-23,共6页 Building Electricity
关键词 雷击防护 多脉冲电流 冲击过电压 氧化锌压敏电阻 电涌保护器(SPD) 冲击试验 损伤机理 热崩溃 lightning strike prevention multi-pulseecurrent impulse overvoltage zinc oxide varistor surge protective device(SPD) impulse tests damage mechanism thermal breakdown
作者简介 张利华,女,北京市气象局北京雷电防护装置测试中心,高级工程师;李涵,男,武汉大学电气与自动化学院,副教授;赵军,男,北京市气象局北京雷电防护装置测试中心,高级工程师。
  • 相关文献

参考文献4

二级参考文献60

  • 1李飚,顾梦君.带电测试MOA阻性电流的基本分析方法探讨[J].高压电器,2004,40(3):235-236. 被引量:7
  • 2黄建明,鲍敏铎.换流阀避雷器损坏事故原因分析 直流避雷器在过电压下的热崩溃[J].电瓷避雷器,2000(2):37-41. 被引量:5
  • 3余芳,郭洁.温度对直流MOA电阻片V-A特性的影响[J].电瓷避雷器,2006(6):34-37. 被引量:5
  • 4Rakov V A, Rachidi F. Overview of recent progress in lightning re- search and lightning protection[J]. IEEE Transactions on Electromagnetic Compatibility, 2009, 51(3): 428-442.
  • 5Baba Y, Ishii M. Characteristics of electromagnetic return-stroke mod- els[J]. IEEE Transactions on Electromagnetic Compatibility, 2003, 45(1): 129-135.
  • 6Miki M, Rakov V A, Rambo K J, et al. Electric fields near triggered lightning channels measured with Pockels sensors[J]. Joumal of Geo- physical Research, 2002, 107(D16): 1-11.
  • 7Agrawal A K, Price H J, Gurbaxani S H. Transient response of multi- conductor transmission lines excited by a nonuniform electromagnetic field[J]. IEEE Transactions on Electromagnetic Compatibility, 1980, 22(2): 119-129.
  • 8Ren H M, Zhou B H, Rakov V A, et aL Analysis of lightning-induced voltages on overhead lines using a 2-D FDTD method and Agrawal coupling model[J]. IEEE Transactions on Electromagnetic Compatibil- ity, 2008, 50(3): 651-659.
  • 9Shoory A, Rachidi F, Rubinstein M, et al. Analytical expressions for zero-crossing times in lightning return-stroke engineering models[J]. IEEE Yransactions on Electromagnetic Compatibility, 2009, 51(4): 963-974.
  • 10Cooray V. On the accuracy of several approximate theories used in quantifying the propagation effects on lightning generated ectromag- netic fields[J]. IEEE Transactions on Antennas and Propagation, 2008, 56(7): 1960-1967.

共引文献49

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部