Research Directed for Development of Coating Electrothermal Technology

E. Shcolnikov, S. Maslennikov, D. Shatilov, L. A. Sukhanova
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Abstract

The optimization of the discharge gap electrodes of electrothermal launcher operating in repetitive regime as well as the use of erosion-proof materials resulted in diminishing their erosion wear by more than an order. The analysis based on the developed physical models and performed experiments made it possible to determine the ablating layers dynamics as well as the ablation wear of corundum ceramic insulators which appeared to be equal to 1 mg/pulse. Resource tests of the discharge gap and accelerating channel elements revealed existence of self breakdowns in the discharge gap after 2000 operational pulses. They were caused by the modification of the ceramic bush surface and accumulation of electrode erosion products on the surface. The inclusion of a controlled vacuum switch in the electric supply circuit of the gap made it possible to maintain its electric strength over long period of time. The optimization of geometric dimensions of the discharge gap capillary part resulted in decreasing of the discharge current by more than one third and diminishing the equipment energy consumption.
涂层电热技术发展方向研究
通过对重复工况下电热发射装置放电间隙电极的优化设计和耐腐蚀材料的使用,使其腐蚀磨损降低了一个数量级以上。基于所建立的物理模型和所进行的实验分析,可以确定1 mg/脉冲时的烧蚀层动力学和刚玉陶瓷绝缘子的烧蚀磨损。放电间隙和加速通道元件的资源试验表明,在2000个工作脉冲后,放电间隙存在自击穿。它们是由陶瓷衬套表面的改性和电极侵蚀产物在表面的积累引起的。在间隙的供电电路中包含一个受控真空开关,使得在很长一段时间内保持其电强度成为可能。通过对放电间隙毛细管部分几何尺寸的优化,使放电电流减小了三分之一以上,降低了设备能耗。
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