低能量脉冲电子束提取系统的研究

P. Chalise, M. Watanabe, A. Okino, E. Hotta, K. Ko
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引用次数: 3

摘要

研制了一种脉冲低能量(<100 keV)大截面离子诱导二次发射电子枪,用于分解NOx等气态污染物。发射的电子束通过由铝蜂窝(深8 mm,面积64.5 cm/sup /)支撑的薄箔提取,该铝蜂窝作为电子枪和大气压处理室之间的隔板。在本文中,我们报告了一个强大的电子窗的设计和结构,以及两种商用聚合物箔(SiO/ sub2 /涂层聚乙烯和铝涂层聚酯薄膜)作为窗口材料的性能。从能量沉积、电子传输、机械载荷和热载荷等提取机理方面,比较了聚合物箔与传统铝箔的性能。这两种聚合物箔都被认为符合机械要求,但在100 kV下,与SiO/sub 2/涂层聚乙烯(64%)和相同厚度(12 /spl mu/m)的铝(45%)相比,铝涂层Mylar窗口的电子透射率(78%)更高。通过新窗口的电流传输得到改善,电子枪的电效率从33%提高到58.7%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of a low energy pulsed electron beam extraction system
A pulsed low energy (<100 keV) large cross-section ion induced secondary emission electron gun has been developed to decompose gaseous pollutants such as NOx. The emitted electron beam has been extracted through a thin foil supported by an aluminum honeycomb (depth 8 mm and area 64.5 cm/sup 2/) that serves as a partition between electron gun and atmospheric pressure processing chamber. In this paper, we report a design and construction of a robust electron window as well as performance of two commercial polymer foils (SiO/sub 2/ coated polyethylene and aluminum coated Mylar) as a window material. The performance of these polymer foils are compared with conventional aluminum foil in terms of various extraction mechanisms such as energy deposition, electron transmission, mechanical and thermal loadings etc. Both the polymer foils have been judged to be consistent with mechanical requirements but aluminum coated Mylar window showed high electron transmission (78%) comparing to SiO/sub 2/ coated polyethylene (64%) and aluminum (45%) window of same thickness (12 /spl mu/m) at 100 kV. The improved current transmission through the new window enhances the electrical efficiency of the electron gun up to 58.7% (from 33%).
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