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Method and apparatus for a vacuum thermionic converter with thin film carbonaceous field emission

机译:具有薄膜碳质场发射的真空热电子转换器的方法和设备

摘要

A Vacuum Diode is constructed in which the electrodes of the Vacuum Diode are coated with a thin film of diamond-like carbonaceous material. The cathode and anode are separated by spacers and a rinse- able material, the rinse-able material which is later removed. Carbonaceous films and the related process for producing a thin film of ablated diamond are not previously known in connection with Vacuum Thermionic Converters, and provide a practical and improved means of constructing such devices. PPA Vacuum Thermionic Converter is optimized for the most efficient generation of electricity by utilizing a cathode and anode of very low work function. The relationship of the work functions of cathode and anode are shown to be optimized when the cathode work function is the minimum value required to maintain current density saturation at the desired temperature, while the anode's work function is as low as possible, and in any case lower than the cathode's work function. When this relationship is obtained, the efficiency of the original device is improved. It is further shown that contact potential difference between cathode and anode may be set against the effects of space charge, resulting in an improved device whereby anode and cathode may be set at a greater distance from each other than has been previously envisaged.
机译:构造真空二极管,其中真空二极管的电极涂覆有类金刚石碳质材料的薄膜。阴极和阳极之间由垫片和可冲洗材料隔开,该可冲洗材料随后被去除。碳质薄膜和用于生产烧蚀金刚石薄膜的相关工艺在真空热电子转换器方面尚不为人所知,它们提供了一种实用且改进的构造此类装置的方法。真空热电子转换器针对以下方面进行了优化:利用功函数非常低的阴极和阳极实现最高效的发电。当阴极功函数是在所需温度下保持电流密度饱和所需的最小值时,而阳极的功函数越低越好,在任何情况下,阴极和阳极的功函数之间的关系都显示出最佳关系。低于阴极的功函数当获得这种关系时,原始设备的效率得到提高。进一步表明,可以克服空间电荷的影响来设定阴极和阳极之间的接触电势差,从而得到一种改进的装置,由此可以将阳极和阴极彼此之间的距离设置得比先前设想的要大。

著录项

  • 公开/公告号US6064137A

    专利类型

  • 公开/公告日2000-05-16

    原文格式PDF

  • 申请/专利权人 BOREALIS TECHNICAL LIMITED;

    申请/专利号US19980414291

  • 发明设计人 RODNEY T. COX;

    申请日1998-02-05

  • 分类号H02N3/00;

  • 国家 US

  • 入库时间 2022-08-22 01:37:11

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