毫瓦级大功率脉冲磁控管阴极

Zhang Cui-wei
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引用次数: 0

摘要

本文介绍了一种新型海绵镍氧化物阴极的二极管试验及其用于2.6MW脉冲磁控管的显著优越性。对于前者,虽然阴极与阳极间距为10mm的普通真空模拟二极管结构简单,但测试二极管的阳极电流仍然测量到1.2A和1.32A,对应于1号和2号新型阴极。另外,对于大功率2.6MW脉冲磁控管,新型阴极的脉冲发射电流应在7.4 /spl sim/ 7.8A/cm/sup 2/范围内。3台大功率脉冲磁控管在Va=45 /spl sim/ 46KV、Ia=110A时,输出均大于2.6MW规定值。在/spl tau/=4/spl mu/s f=122Hz和/spl tau/=4/spl mu/s, f=250Hz的不同占空比条件下,用该磁控管测量整机的波束测量结果表明,电流包线性很好,运行很稳定。波束测量满足需求。在规定工作状态Va=45KV,脉冲电流110A的情况下,测束量可达823Ld,超过整机规定值-700Ld,可满足使用需要。利用AV4023B型频率谱仪对其进行了监测,得到了满意的谱形。磁控管对新型氧化物阴极的热负荷要求非常严格。因此,先用2.1MW磁控管仔细进行寿命试验,每天7 /spl sim/ 8 h,在/spl tau/=:2/spl mu/s, la=110A, P=2.1MW,持续50小时。在整个运行过程中,其性能和稳定性是完美的。阴极没有明显的蒸发、溅射现象和虚电流现象。随后,用2号管进行寿命试验,/spl tau/ 4/spl mu/s, Ia=110A, P=2.6MW, 7 /spl sim/ 8小时,每天持续23小时45分钟。测试还在继续。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cathode in pulse magnetron for MW grade high power
This paper introduced the diode test of a new type of oxide cathode of nickel sponge and the noticeable superiority when it was used for pulsed magnetron of 2.6MW. For the former, although common vacuum simulated diode with the space of 10mm between cathode and anode has simple structure ,the anode current of test diode was still measured up to 1.2A and 1.32A correspond to No.1 and No.2 new type of cathode. Otherwise, the pulsed emission current of the new type of cathode should be in range of 7.4 /spl sim/ 7.8A/cm/sup 2/for pulsed magnetron of 2.6MW high power. Three assembled pulsed magnetron of 2.6MW high power show that their output are more then 2.6MW specified value at Va=45 /spl sim/ 46KV and Ia=110A. In the condition of different duty cycle such as /spl tau/=4/spl mu/s f=122Hz and as /spl tau/=4/spl mu/s, f=250Hz, to measure beam meterage of complete machine with this magnetron show that current envelope is very good and operation is very stead. Beam meterage satisfies demand. In the case of specified operating status at Va=45KV and pulsed current 110A,beam meterage is up to 823Ld, more then the specified value of complete machine -700Ld and can satisfy applied need. Spectral shape is also satisfactory, which is monitored by means of AV4023B type of frequency spectrograph. The magnetron requires of heat load of the new type oxide cathode being very strict. So life test conducted carefully with 2.1MW magnetron first, 7 /spl sim/ 8 h a day, at /spl tau/=:2/spl mu/s, la=110A and P=2.1MW and continued 50 hours. During the whole operation, its performance and stabilization are perfect. The cathode has not obvious the phenomena of evaporation and sputter as well as virtual current. Later, life test conducted with No.2 tube, /spl tau/ 4/spl mu/s, Ia=110A and P=2.6MW, 7 /spl sim/ 8 hours a day and continued 23 hours 45 minutes. The test still keep on.
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