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Effects of magnetic field on treeing process in silicone rubber considering pulse voltage

机译:考虑脉冲电压硅橡胶在硅橡胶中的磁场对树木过程的影响

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Magnetic field, produced by high current, accompanying with the electric field can generate electro-magnetic force in HVDC system, which enormously affects the treeing growth characteristics. Electrical tree behavior of silicone rubber(SiR)was investigated by stressed with repetitive pulse voltage considering magnetic field. The pulse frequency was set to 200 Hz, while the stressed pulse amplitude was ranged from 6 to 12 kV. The magnetic flux density (B) of the magnetic field was 100, 200 and 400 mT respectively. Electrical tree patterns, tree length and tree breakdown characteristics were fully studied. The results were presented from experimental investigations in order to characterize electrical tree as a function of the stressed pulse amplitude. Results show that the pulse amplitude plays a leading role in the propagation and breakdown processes of the electrical tree. It also indicates that tree structure is greatly dependent on the B of magnetic field. Results show that magnetic field promotes the tree propagation and accelerates the treeing process.
机译:通过高电流产生的磁场,伴随电场可以在HVDC系统中产生电磁力,这极大地影响了树木生长特性。考虑磁场的重复脉冲电压应力研究了硅橡胶(SIR)的电气树行为。脉冲频率设定为200Hz,而应力脉冲幅度范围为6至12kV。磁场的磁通密度(B)分别为100,200和400mt。完全研究了电气树图案,树长和树击穿特性。结果从实验研究中提出,以表征电曲线作为应力脉冲幅度的函数。结果表明,脉冲幅度在电气树的传播和击穿过程中起着主导作用。它还表明树结构极大地依赖于磁场的B.结果表明,磁场促进树传播并加速树木过程。

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