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Arc-plasma deposited dispenser cathode for use in powerful flow water vacuum electron heater

机译:电弧等离子体沉积的分配器阴极,用于强流水真空电子加热器

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A principal new design of vacuum electron heater is presented. The vacuum electronic heater (VEH) is developed as a vacuum diode and contains a thermionic cathode and an anode. The anode is cooled by flowing water. The thermonic dispenser cathode heated by tungsten heater emits an electron current. Kinetic energy of the electrons accelerated by the supply-line voltage of the anode is transformed to the anode heat. Therefore the flow water in the jacket is heated. Smooth control of output power is provided by variation of working temperature of the dispenser cathode in range of from 700 up to 1000/spl deg/C. Cathode is located in vacuum volume on the legs and hermetically fastened in an insulator. The cathode of VEH has form of cylinder with outer diameter of 22-24mm and height of not less than 100mm. Porous tungsten matrix with thickness of 0.5-0.7mm is built on the surface of molybdenum cylinder by arc-plasma deposition method. The matrix is impregnated by emission substance with composition of 3BaO-CaO-Al/sub 2/O/sub 3/ and then the emitting surface is formed by mechanical treatment to get needed dimensions. During VEH operation current density on the cathode emission surface isn't higher than IA/cm/sup 2/.
机译:介绍了真空电子加热器的主要新设计。真空电子加热器(VEH)被开发为真空二极管,并包含热电子阴极和阳极。阳极通过流动的水冷却。由钨加热器加热的热电分配器阴极发射电子电流。由阳极的供给线电压加速的电子的动能转化为阳极热。因此,夹克中的流动水被加热。通过分配器阴极的工作温度变化范围从700到1000 / spl deg / C,可以提供对输出功率的平稳控制。阴极位于腿部的真空区域,并密封固定在绝缘子中。 VEH的阴极呈圆柱状,外径为22-24mm,高度不小于100mm。采用电弧等离子体沉积法在钼圆柱体表面形成厚度为0.5-0.7mm的多孔钨基体。基质由组成为3BaO-CaO-Al / sub 2 / O / sub 3 /的发射物质浸渍,然后通过机械处理形成发射表面以获得所需的尺寸。在VEH操作期间,阴极发射表面上的电流密度不高于IA / cm / sup 2 /。

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