用于分配器阴极的多层加热器的进一步发展

J. Spicer, D. Busbaher
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摘要

为了在最佳发射电流密度下工作,分配器阴极必须达到特定的温度,同时施加特定的加热器功率。通常使用线圈加热器来产生这种能量。这些加热器通常由钨铼线制成,钨铼线缠绕在无感线圈中。由于加热器的几何形状受到材料特性和电线的电隔离需求的限制,线圈加热器通常是对可用空间的低效利用,并导致阴极组件的成本增加。印刷陶瓷加热器技术是存在的,但是,到目前为止,由于制造公差,还不能用于分配器阴极。本文讨论了在陶瓷基板上使用喷墨钨颗粒作为多层加热器设计的替代方法的项目现状。
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Further developments in multi-layer heaters for use in dispenser cathodes
In order to operate at optimum emission current density, dispenser cathodes must achieve a specific temperature while a specific heater power is applied. A coiled wire heater is commonly used to generate this power. These heaters are typically manufactured from Tungsten-Rhenium wire which is wound into a non-inductive coil. As the heater geometry is constrained by the material properties and electrical isolation needs of the wire, the coiled wire heater is often an inefficient use of available space and results in increased cost for the cathode assembly. Printed ceramic heater technology exists, but, to date, has not been usable in dispenser cathodes due to the manufacturing tolerances. This paper discusses the present status of a project to use ink-jetted tungsten particles on a ceramic substrate as an alternate approach to the multi-layer heater design.
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