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电极分布对织物触摸垫电容及触控信号的影响
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作者 甘行 杨旭东 +1 位作者 董洪强 胡吉永 《软件导刊》 2020年第4期23-27,共5页
为优化投射式电容织物触摸垫结构,以得到优异的触控性能,针对条形电极形式,以触摸前后电容的相对变化率表示触控信号,运用仿真和实验验证相结合的方法研究不同电极宽度与不同电极间间隙对投射式电容织物触摸垫初始电容及分布的影响。结... 为优化投射式电容织物触摸垫结构,以得到优异的触控性能,针对条形电极形式,以触摸前后电容的相对变化率表示触控信号,运用仿真和实验验证相结合的方法研究不同电极宽度与不同电极间间隙对投射式电容织物触摸垫初始电容及分布的影响。结果表明,电极宽度和电极间间隙的增加使触摸垫驱动电极和感应电极间的初始电容增加,但电极宽度影响更为显著,并且触摸垫电极间的互电容呈边缘小中间大的分布状态。在电极导电率为61.6×10^6S/m,电极宽度约为2mm^3mm,电极间间隙在3mm左右情况下实验,结果显示,触摸垫在触摸前后的电容变化率较大,触控信号较强。 展开更多
关键词 织物触摸垫 电极宽度 电极间间隙 互电容 触控信号
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微细孔电解加工控制方法及试验研究 被引量:10
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作者 王明环 朱荻 张朝阳 《中国机械工程》 EI CAS CSCD 北大核心 2007年第6期646-650,共5页
基于微细电解加工的特点,介绍了一种微细电解加工系统。该系统能够将加工间隙控制到几微米到几十微米的范围内。根据电解加工以离子形式对材料去除的特性,进行微细电极、微细群电极的制备研究,并将其用于微细孔、群孔的加工中。试验分... 基于微细电解加工的特点,介绍了一种微细电解加工系统。该系统能够将加工间隙控制到几微米到几十微米的范围内。根据电解加工以离子形式对材料去除的特性,进行微细电极、微细群电极的制备研究,并将其用于微细孔、群孔的加工中。试验分析了各工艺参数如电压、溶液浓度、加工间隙、进给速度等对微细孔电解加工精度的影响。结果表明,微细电解加工的侧面间隙随着加工电压的降低、溶液浓度的减小、脉宽变窄和初始加工间隙的减小而减小,改善了加工的定域性,加工精度得到提高。 展开更多
关键词 微细加工 微细电解加工 电极间间隙 电极
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Anode Plasma Influence on Breakdown Formation in Explosive-Emission Electron Sources
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作者 Eduard N. Abdullin Gennady P. Bazhenov Alexander V. Morozov 《Journal of Energy and Power Engineering》 2012年第9期1536-1541,共6页
Breakdown formation in the explosive-emission sources is related to the interelectrode gap filling with the cathode and anode plasma generated at the anode and in the gap under the beam influence. Under conditions of ... Breakdown formation in the explosive-emission sources is related to the interelectrode gap filling with the cathode and anode plasma generated at the anode and in the gap under the beam influence. Under conditions of saturation of the cathode plasma emissive ability as well as when the measures on the emission boundary stabilization are taken, the anode plasma has the deciding part in the formation of the electron source breakdown. The paper presents the results of the anode plasma investigations obtained to solve the problem of the electron beam length increase in the explosive-emission sources. The data concerning the gas release from the anode, the mechanism of the anode plasma formation and the anode plasma influence on the parameters of the generated electron beam are presented as well. 展开更多
关键词 Explosive-emission electron source gas release anode plasma breakdown.
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Influence of Cathode Plasma on Breakdown Formation in Plasma-Anode Explosive-Emission Source
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作者 Eduard N. Abdullin Gennady P. Bazhenov Yury P. Bazhenov Alexander V. Morozov 《Journal of Energy and Power Engineering》 2012年第6期999-1004,共6页
Breakdown formation in an explosive-emission electron source is related to the interelectrode gap filling with plasma propagating from the cathode and formed at the anode and in the interelectrode gap under the electr... Breakdown formation in an explosive-emission electron source is related to the interelectrode gap filling with plasma propagating from the cathode and formed at the anode and in the interelectrode gap under the electron beam action. Plasma anode is used to increase the beam current density. Preliminary interelectrode gap filling with plasma in the explosive-emission source decreases the influence of uncontrolled plasma arrival from the anode on the diode processes, promotes current density increase and duration of generated electron beams. The paper considers the influence of the cathode geometry on the breakdown formation in the plasma-anode explosive-emission electron source. The data on obtaining of microsecond electron beams with current density of 30 A/cm^2 and 1.5-2 kA/cm^2 are presented. 展开更多
关键词 Explosive-emission electron source plasma anode high-current phase of vacuum discharge.
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