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大气压微尺度气体放电中热电子和热场发射的特性分析 被引量:1
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作者 孙丽 周雯 +2 位作者 姜巍 李和平 李增耀 《工程热物理学报》 EI CAS CSCD 北大核心 2023年第1期144-150,共7页
近年来的研究表明,场致电子发射在微尺度气体放电中作用显著。然而,当阴极被加热到高温,热发射也成为影响微尺度放电形成的重要因素。对大气压微尺度放电,热微等离子体的形成主要通过热电子发射和热场发射,气体电离得到的离子能在放电... 近年来的研究表明,场致电子发射在微尺度气体放电中作用显著。然而,当阴极被加热到高温,热发射也成为影响微尺度放电形成的重要因素。对大气压微尺度放电,热微等离子体的形成主要通过热电子发射和热场发射,气体电离得到的离子能在放电时产生足够的空间电荷,进而影响阴极附近的局部电场。在本文中,针对阴极高温大气压直流微尺度气体放电,采用一维隐式PIC-MC方法,分析了不同场增强因子和极板温度对热电子发射和热场发射产生的等离子体特性的影响。对气体击穿放电达到稳定之后的热微等离子体,分析了极板间电场强度、粒子平均温度、粒子数密度的分布以及电子能量概率分布函数。结果表明,当场增强因子为1时,阴极表面几乎没有场致电子发射,热场发射和热电子发射结果几乎重合;极板温度越高,热发射作用越强。 展开更多
关键词 大气压尺度气体放电 热微等离子体 隐式PIC-MC 特性分析
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CO_2 laser-micro plasma arc hybrid welding for galvanized steel sheets 被引量:6
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作者 C.H.KIM Y.N.AHN J.H.KIM 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第A01期47-53,共7页
A laser lap welding process for zinc-coated steel has a well-known unsolved problem-porosity formation. The boiling temperature of coated zinc is lower than the melting temperature of the base metal, which is steel. I... A laser lap welding process for zinc-coated steel has a well-known unsolved problem-porosity formation. The boiling temperature of coated zinc is lower than the melting temperature of the base metal, which is steel. In the autogenous laser welding, the zinc vapor generates from the lapped surfaces expels the molten pool and the expulsion causes numerous weld defects, such as spatters and blow holes on the weld surface and porosity inside the welds. The laser-arc hybrid welding was suggested as an alternative method for the laser lap welding because the arc can preheat or post-beat the weldment according to the arrangement of the laser beam and the arc. CO2 laser-micro plasma hybrid welding was applied to the lap welding of zinc-coated steel with zero-gap. The relationships among the weld quality and process parameters of the laser-arc arrangement, and the laser-arc interspacing distance and arc current were investigated using a full-factorial experimental design. The effect of laser-arc arrangement is dominant because the leading plasma arc partially melts the upper steel sheets and vaporizes or oxidizes the coated zinc on the lapped surfaces. Compared with the result from the laser-TIG hybrid welding, the heat input from arc can be reduced by 40%. 展开更多
关键词 galvanized steel CO2 laser micro plasma hybrid welding
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Low Temperature Plasma CVD Grown Graphene by Microwave Surface-Wave Plasma CVD Using Camphor Precursor 被引量:1
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作者 Hideo Uchida Hare Ram Aryal +1 位作者 Sudip Adhikari Masayoshi Umeno 《Journal of Physical Science and Application》 2016年第2期34-38,共5页
Hydrocarbon precursor such as methane has been widely used to grow graphene films and the methods of growing quality graphene films are dominated by thermal CVD (chemical vapor deposition) system. Graphene films gro... Hydrocarbon precursor such as methane has been widely used to grow graphene films and the methods of growing quality graphene films are dominated by thermal CVD (chemical vapor deposition) system. Graphene films grown by plasma process are generally highly defective which in turns degrade the quality of the films. Here, using a green precursor, camphor we demonstrate a simple and economical method to get high-quality graphene film on copper substrate by micro wave surface-wave plasma CVD at relatively low temperature 550℃. Graphene film grown using camphor shows superior quality than that of the film grown using methane. Results revealed that camphor precursor is a good alternative to hydrocarbon precursors for graphene research. 展开更多
关键词 CAMPHOR plasma CVD quality graphene plasma induced defects.
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