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同轴介质阻挡放电功率和等效电容特性研究 被引量:1
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作者 刘勇 俞建成 +2 位作者 张俊良 吴焕铭 高文清 《传感器与微系统》 CSCD 2017年第8期45-48,共4页
以同轴-针放电结构为研究基础,采用Lissajous图像法,研究了介质阻挡放电管径、载气流速变化对放电功率和介质等效电容的影响关系;设计了正交实验,进一步研究载气流速和放电管径对周期传输电荷量显著性影响的大小。研究结果表明:随着载... 以同轴-针放电结构为研究基础,采用Lissajous图像法,研究了介质阻挡放电管径、载气流速变化对放电功率和介质等效电容的影响关系;设计了正交实验,进一步研究载气流速和放电管径对周期传输电荷量显著性影响的大小。研究结果表明:随着载气速度的提升,放电功率和介质等效电容都呈减小趋势;随着放电管径的增大,介质等效电容减小。正交实验中,管径的F值为22.15,相比载气流速对传输电荷量的影响更加显著。 展开更多
关键词 同轴-针 介质阻挡放电 传输电荷量 LISSAJOUS图形 等效电容
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On the Electric Conductivity of Homoionic Montmorillonites at Low Water Content
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作者 Nelson Juan Garcia 《Journal of Environmental Science and Engineering(B)》 2016年第9期419-424,共6页
Bibliographic reports on the electric conductivity of pure homoionic montmorillonite at low water content were analyzed in order to stress a general behavior of conductivity. At low water content, the conductivity is ... Bibliographic reports on the electric conductivity of pure homoionic montmorillonite at low water content were analyzed in order to stress a general behavior of conductivity. At low water content, the conductivity is attributed to a mechanism of charge transport involving protons due to the influence of the electric field of the exchangeable cations on water molecules at the solvation shell. Conductivity was analyzed in relation with the polarizing power (ionic potential) of the exchangeable cations and with the influence of the connectivity within samples. The general conclusion stressed is that the connectivity due to the association between 2:1 unit layers (clay fabric) is the main factor on the experimental or "macroscopic" electric conductivity of pure homoionic montmorillonite at low water content. Considerations on the experimental conditions of different bibliographic reports were also made. The conclusion and the considerations made on experimental conditions are a good starting point for future researches on electric conductivity ofhomoionic montmorillonite at low water content. 展开更多
关键词 Electrical conductivity homoionic pure montmorillonite ionic potential PROTON CONNECTIVITY association between 2:1 unit layers.
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