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Phenomena on Cumulative Breakdown Process of Organic Glass under Microsecond Pulses

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【作者】 赵亮苏建仓

【机构】 西北核技术研究所

【摘要】 Tree shape ageing is a common failure pattern of polymers in high voltage devices.The cumulative breakdown process of PMMA under microsecond(μs) pulses were observed with an on-line microscope,a microsecond pulse generator,a needle-plane electrode and dozens of organic glass(PMMA) samples.Aside from the common phenomena,some interesting phenomena were observed and summarized,which include:(1) sub-trees grow from the tip of firstly-initiated tree rather than the needle;(2) dark region emerges in the vicinity of the needle and successive bubbles are ejected;(3) ‘growth-ring-shape’ mechanical crack increases in front of the needle pulse by pulse.These phenomena were compared with those under a dc nanosecond(ns)pulse and those under an ac voltage.Similarities and differences between these phenomena were generalized.By comparison,it is concluded that the local strong field around the tips of the trees and huge energy released in the cumulative breakdown process are the main dynamics for the tree growth under dc μs pulses.The local strong field corresponds to the electron breakdown mechanism and is responsible for the sub-tree initiation phenomenon.The huge energy corresponds to the thermal and the mechanical breakdown mechanisms,and is responsible for the gas release phenomenon and the ‘growth-ring’ phenomenon.

【Abstract】 Tree shape ageing is a common failure pattern of polymers in high voltage devices.The cumulative breakdown process of PMMA under microsecond(μs) pulses were observed with an on-line microscope,a microsecond pulse generator,a needle-plane electrode and dozens of organic glass(PMMA) samples.Aside from the common phenomena,some interesting phenomena were observed and summarized,which include:(1) sub-trees grow from the tip of firstly-initiated tree rather than the needle;(2) dark region emerges in the vicinity of the needle and successive bubbles are ejected;(3) ‘growth-ring-shape’ mechanical crack increases in front of the needle pulse by pulse.These phenomena were compared with those under a dc nanosecond(ns)pulse and those under an ac voltage.Similarities and differences between these phenomena were generalized.By comparison,it is concluded that the local strong field around the tips of the trees and huge energy released in the cumulative breakdown process are the main dynamics for the tree growth under dc μs pulses.The local strong field corresponds to the electron breakdown mechanism and is responsible for the sub-tree initiation phenomenon.The huge energy corresponds to the thermal and the mechanical breakdown mechanisms,and is responsible for the gas release phenomenon and the ‘growth-ring’ phenomenon.

【基金】 National Natural Science Foundation of China under Grant No.51377135
  • 【会议录名称】 第十八届全国等离子体科学技术会议摘要集
  • 【会议名称】第十八届全国等离子体科学技术会议
  • 【会议时间】2017-07-26
  • 【会议地点】中国陕西西安
  • 【分类号】TQ325.7
  • 【主办单位】中国力学学会等离子体科学技术专业委员会、中国物理学会等离子体物理分会、中国核学会聚变与等离子体物理学会、中国物理学会高能量密度物理专业委员会
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