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不同掺杂对可加工陶瓷二次电子发射及沿面闪络特性的影响
引用本文:于开坤,张冠军,田杰,郑楠,黄学增,马新沛,李光新,山纳康,小林信一. 不同掺杂对可加工陶瓷二次电子发射及沿面闪络特性的影响[J]. 电工技术学报, 2011, 0(1): 23-28,33
作者姓名:于开坤  张冠军  田杰  郑楠  黄学增  马新沛  李光新  山纳康  小林信一
作者单位:西安交通大学电力设备电气绝缘国家重点实验室;河南省电力勘测设计院;西安交通大学材料与工程学院;埼玉大学电气电子系统学部;
基金项目:国家自然科学基金重点项目(50911140103);国家自然科学基金(50777051); 国家高技术发展计划(863)资助项目
摘    要:固体绝缘材料的表面特性极大地影响着其真空沿面闪络特性,长期以来这一现象极大地制约着真空绝缘系统的整体性能,限制了高压电真空设备的发展进程.本文针对一种具有良好加工性能及表面耐电特性的低熔点可加工微晶玻璃陶瓷引入真空绝缘的背景,在不明显降低可加工性能的前提下,通过在可加工陶瓷原材料内掺杂不同的低二次电子发射系数金属氧化物...

关 键 词:沿面闪络  可加工陶瓷  二次电子发射系数  真空

Effect of Different Dopant in Machinable Ceramic on Its Secondary Electron Emission and Surface Flashover Characteristics in Vacuum
Yu Kaikun, Zhang Guanjun Tian Jie Zheng Nan Huang Xuezeng Ma Xinpei Li Guangxin Yasushi Yamano Shinichi Kobayashi. Effect of Different Dopant in Machinable Ceramic on Its Secondary Electron Emission and Surface Flashover Characteristics in Vacuum[J]. Transactions of China Electrotechnical Society, 2011, 0(1): 23-28,33
Authors:Yu Kaikun   Zhang Guanjun Tian Jie Zheng Nan Huang Xuezeng Ma Xinpei Li Guangxin Yasushi Yamano Shinichi Kobayashi
Affiliation:Yu Kaikun1,4 Zhang Guanjun1 Tian Jie1 Zheng Nan1 Huang Xuezeng1 Ma Xinpei2 Li Guangxin2 Yasushi Yamano3 Shinichi Kobayashi3(1.State Key Lab of Electrical Insulation and Power Equipment,Xi'an Jiaotong University Xi'an 710049 China 2.Xi'an Jiaotong University Xi'an 710049 China 3.Saitama University Saitama 338-8570 Japan 4.Henan Electric Power Survey and Design Institute Zhengzhou 450007 China)
Abstract:Secondary electron emission(SEE) yield is one important factor for the flashover phenomena of solid materials under high electric field in vacuum.On the basis of the novel low melting temperature machinable glass ceramics for vacuum insulation system,which has excellent machinable performance and good electrical properties,different low SEE yield metal oxides including Cu2O and Cr2O3 are doped into the original glass ceramics while keeping its machinable performance,to investigate the effects of different p...
Keywords:Flashover  machinable ceramic  SEE yield  vacuum  
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