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Effects of Magnetic Field on Surface Flashover Behavior of Epoxy Resin for High-Field Magnets

机译:磁场对高场磁体环氧树脂表面闪湿行为的影响

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Surface flashover taken place along the epoxy resin at the terminal of high-field magnets is a serious defect which threatens the safety operation of the whole device. Flashover behavior is different from that in other traditional electric equipment due to the presence of high magnetic field. In this paper, a superconducting magnet system was set up to investigate the surface flashover behavior of epoxy resin in presence of different strengths and directions of external magnetic field. Experimental results show that flashover voltage decreases first and then shows reverse trend with the increase of magnetic field strength when Lorentz force drifts the electrons away from the surface. And the flashover voltage increases when Lorentz force drifts the electrons along or into the surface. High magnetic field restricts the polarization of epoxy resin and the initial electron emission at the triple junction is reduced. Lorentz force not only changes the collision ionization probability on the gas side but also affects the flashover path. This work will be helpful to the terminal insulation design of high-field magnets.
机译:沿着高场磁铁端子的环氧树脂沿着环氧树脂进行的表面闪络是一种严重的缺陷,威胁整个装置的安全操作。由于存在高磁场,闪络行为与其他传统电气设备不同。本文建立了超导磁体系统,以研究环氧树脂在外部磁场的不同强度和方向存在下的表面闪络行为。实验结果表明,闪络电压首先降低,然后在洛伦兹力漂移远离表面时,磁场强度的增加随着磁场强度的增加而变化。当洛伦兹力沿着或进入表面时,闪络电压增加。高磁场限制环氧树脂的偏振,并降低了三交界处的初始电子发射。洛伦兹力不仅改变了气体侧的碰撞电离概率,而且影响了闪络路径。这项工作将有助于高场磁铁的终端绝缘设计。

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