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Choice of materials and problems of design of heavy-current toroidal discharge tubes

机译:大电流环形放电管的材料选择和设计问题

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摘要

One of the principal problems of heavy-current discharges is the contamination of the plasma by material eroded from the walls of the discharge tube. Erosion may occur by thermal evaporation, sputtering and¿in the case of metal walls¿the formation of arcs. These processes are examined in detail, with particular reference to the conditions which may exist in a thermonuclear reactor working on the pinched-discharge principle. It appears that, for stable discharges of long duration, thermal evaporation and sputtering should not be serious if materials of low atomic number are used. In the more severe transient initial conditions, sputtering may limit the duration of the first stage of the discharge. Metals are superior to insulators in thermal properties and ease of fabrication, but tend to form `unipolar¿ arcs when exposed to plasma. The mechanism of these arcs is discussed, and some experiments on the arcing properties of different materials are described. A critical review is given of a number of possible torus designs.
机译:大电流放电的主要问题之一是从放电管壁上腐蚀出来的材料对等离子体的污染。腐蚀可能是由于热蒸发,溅射和金属壁电弧形成而引起的。对这些过程进行了详细检查,特别是参考了在挤压排放原理下工作的热核反应堆中可能存在的条件。看起来,对于长时间的稳定放电,如果使用低原子序数的材料,则热蒸发和溅射不应严重。在更严重的瞬态初始条件下,溅射可能会限制放电第一阶段的持续时间。金属在绝缘性能和易于制造方面均优于绝缘子,但暴露于等离子体时往往会形成“单极”电弧。讨论了这些电弧的机理,并描述了不同材料的电弧特性的一些实验。对许多可能的圆环设计进行了严格的审查。

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