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Statement of the problem and experimental study of the secondary arcing in the conditions of orbital space

机译:轨道空间条件下二次电弧的问题陈述和实验研究

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The problem of breakdowns in equipment of spacecrafts operating on the Earth's orbit is based on multifactor physics involving vacuum electronics, plasma physics, and gas discharge physics. The problem was strongly escalated with increase of operating voltages from 27 V to 100 V followed by even higher voltages in the future. The problem is studied intensively in the course of last ten years, and the present state of art came to standards regulating approaches to reduce the risks of secondary arcing and to regulate the test protocols. Nevertheless, the research work on the matter must be continued as far as a lot of factors are still omitted in the mentioned above standards. The present work contains results of measurements of threshold conditions of secondary arcing in various insulating gaps as the residual gas pressure goes down from atmosphere to high vacuum, and the primary discharge is similar to the fuse-triggered, low-current arc discharge. In such conditions, the results indicate the breakdown strength to correspond to the cathode voltage drop rather than the Paschen curve minimum. Experimental results are compared with results of computer simulation.
机译:在地球轨道上运行的航天器设备发生故障的问题是基于涉及真空电子,等离子物理学和气体放电物理学的多因素物理学。随着工作电压从27 V增加到100 V,此问题已严重升级,以后还会出现更高的电压。在过去的十年中,对该问题进行了深入研究,目前的技术水平已成为标准的调节方法,以减少二次电弧的风险并调节测试方案。尽管如此,只要上述标准中仍然忽略了许多因素,就必须继续进行有关此问题的研究工作。本文的工作结果是,随着剩余气压从大气压下降到高真空,各种绝缘间隙中二次电弧的阈值条件的测量结果,一次放电类似于保险丝触发的小电流电弧放电。在这样的条件下,结果表明击穿强度与阴极电压降相对应,而不是与帕申曲线最小值相对应。将实验结果与计算机仿真结果进行比较。

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