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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Effects of magnetic field on electrical tree growth in silicone rubber under repetitive pulse voltage
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Effects of magnetic field on electrical tree growth in silicone rubber under repetitive pulse voltage

机译:重复脉冲电压下磁场对硅橡胶中电树生长的影响

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摘要

Electric field, accompanying with the magnetic field produced by high current, can generate electro-magnetic force in HVDC system, which enormously affects the treeing process. Electrical tree behavior of silicone rubber ???????????? SiR ???????????? was investigated by application of magnetic field with repetitive pulse voltage. The samples were made of silicone rubber with a pin-plane electrode system. The inserted needle had a tip radius of 3 μm and the pin-plane distance was 2 mm. The rise time and fall time of the repetitive pulse voltage were 100 and 120 μs respectively. The pulse frequency was 200 Hz, while the pulse amplitude ranging from 6 to 12 kV was applied. The magnetic flux density (B) of the magnetic field was 100, 200 and 400 mT respectively. The results were presented from experimental investigations in order to characterize electrical tree as a function of amplitude and polarities of the applied pulse voltage. The patterns of electrical tree, tree length, accumulated damage and tree breakdown characteristics were studied. It is revealed that both the pulse amplitude and polarity have a significant impact on electrical tree growth characteristics of silicone rubber. Results show that the pulse amplitude plays the leading role in electrical tree initiation, propagation and breakdown processes. Compared with the positive pulse, it is suggested that the larger tree accumulated damage is more easily to occur with the negative pulse. It also has been found that tree structure is greatly dependent on the B of magnetic field. Results show that magnetic field promotes tree growth and accelerates the treeing process.
机译:电场和高电流产生的磁场会在高压直流输电系统中产生电磁力,从而极大地影响树木生长过程。硅橡胶的电气树性能???????????? SiR ????????????通过施加具有重复脉冲电压的磁场进行研究。样品由具有针平面电极系统的硅橡胶制成。插入的针的针尖半径为3μm,针平面距离为2 mm。重复脉冲电压的上升时间和下降时间分别为100和120μs。脉冲频率为200 Hz,同时施加6至12 kV的脉冲幅度。磁场的磁通密度(B)分别为100、200和400 mT。从实验研究中得出结果,以便将电树表征为所施加脉冲电压的幅度和极性的函数。研究了电树的形态,树的长度,累积的损伤和树的破坏特征。结果表明,脉冲幅度和极性都对硅橡胶的电树生长特性有重要影响。结果表明,脉冲幅度在电树的启动,传播和击穿过程中起着主导作用。与正脉冲相比,建议负脉冲更容易发生较大的树木累积损害。还已经发现,树的结构在很大程度上取决于磁场的B。结果表明,磁场促进树木生长并加速树木生长过程。

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