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Close-spaced thermionic converters with active spacing control and heat-pipe isothermal emitters

机译:具有主动间距控制和热管等温发射器的近距离热电子转换器

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Thermionic converters with interelectrode gaps smaller than 10 microns are capable of substantial performance improvements over conventional ignited mode diodes. Previous devices which have demonstrated operation at such small gaps have done so at low power densities and emitter temperatures. Higher power operation requires overcoming two primary design issues: thermal distortion of the emitter due to temperature gradients and degradation of the in-gap spacers at higher emitter temperatures. This work describes two innovations for solution of these issues. The issue of thermal distortion was addressed by an isothermal emitter incorporating a heat-pipe into its structure. Such a heat-pipe emitter, with a single-crystal emitting surface, was fabricated and characterized. Finite-element computational modeling was used to analyze its distortion with an applied heat flux. The calculations suggested that thermal distortion would be significantly reduced as compared with a solid emitter. Experimental results are described for a system of active interelectrode gap control. In the present design an integral transducer determines the interelectrode gap of the converter. Initial designs for spacing actuators and their required cesium vapor seals are discussed. A novel hotshell converter design incorporating active spacing control and low-temperature seals is presented. A converter incorporating the above features would be capable of near ideal-converter performance at high power densities. In addition, active spacing control can potentially completely eliminate short-circuit failures in thermionic converter systems.
机译:电极间间隙小于10微米的热电子转换器与传统的点火模式二极管相比,能够显着提高性能。已经证明在如此小的间隙下工作的先前设备已经在低功率密度和发射极温度下做到了。高功率工作需要克服两个主要的设计问题:由于温度梯度导致的发射极热变形和在更高发射极温度下间隙内隔离层的退化。这项工作描述了解决这些问题的两种创新。通过将热管结合到其结构中的等温辐射器解决了热变形的问题。制造并表征了具有单晶发射表面的这种热管发射器。使用有限元计算模型来分析其在施加热通量的情况下的变形。计算表明,与固态发射器相比,热畸变将大大减少。描述了主动电极间间隙控制系统的实验结果。在本设计中,集成换能器确定转换器的电极间间隙。讨论了间隔执行器及其所需的铯蒸气密封件的初始设计。提出了一种新颖的热壳转换器设计,该设计结合了主动间距控制和低温密封。具有上述特征的转换器将能够在高功率密度下接近理想的转换器性能。此外,主动间距控制可以潜在地完全消除热电子转换器系统中的短路故障。

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