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首页> 外文期刊>IEEE Transactions on Magnetics >Insulator and electrode mass erosion and surface voltage holdoff recovery for transient, high current surface discharges
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Insulator and electrode mass erosion and surface voltage holdoff recovery for transient, high current surface discharges

机译:绝缘体和电极的质量腐蚀和表面电压释抑恢复,可实现瞬时大电流表面放电

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摘要

Several polymeric insulator materials commonly used as sidewall insulators in electromagnetic accelerators were subjected to repetitive (from approximately 0.1 to 1 discharge per second), high current (from approximately 100 to 300 kA peak or approximately 100 to 300 kA/cm), transient ( approximately 20 mu s pulse width) surface discharges. The insulator materials tested include the thermosetting polymers G-9, G-10, and G-11 (i.e., fiberglass reinforced melamine and epoxy) and the thermoplastic polymers Lexan (i.e., polycarbonate) and Delrin (i.e., polyacetyl). Empirical scaling relationships are given that relate the amount of insulator and electrode (i.e., molybdenum) mass erosion to the total amount of arc energy transferred. Scaling relationships are also given for the lifetime of the given polymer as a function of the initial discharge current. The lifetime of an insulator material is defined as the number of discharges required to reduce the initial surface holdoff voltage to its half-power level for three consecutive discharges and is a useful parameter when specifying insulator materials to be used in high-power switching devices.
机译:几种通常用作电磁加速器侧壁绝缘体的聚合物绝缘体材料经受重复性(每秒大约0.1至1次放电),高电流(峰值大约100至300 kA或大约100至300 kA / cm),瞬态(大约20μs的脉冲宽度)表面放电。测试的绝缘体材料包括热固性聚合物G-9,G-10和G-11(即玻璃纤维增​​强的三聚氰胺和环氧树脂)以及热塑性聚合物Lexan(即聚碳酸酯)和Delrin(即聚乙酰基)。给出了经验的比例关系,该关系将绝缘体和电极(即钼)的质量腐蚀量与转移的电弧能量总量相关联。还给出了给定聚合物寿命的比例关系,该比例关系是初始放电电流的函数。绝缘体材料的寿命定义为连续三个连续放电将初始表面释抑电压降低至其半功率水平所需的放电次数,并且在指定要在大功率开关设备中使用的绝缘体材料时是有用的参数。

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