期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
微力测量装置中边缘效应对电容结构设计影响分析 被引量:3
1
作者 徐立 王淑香 +2 位作者 张卫卫 郑培亮 黄振宇 《仪表技术与传感器》 CSCD 北大核心 2020年第8期96-99,126,共5页
为研究边缘效应对微力测量装置中柱状电容结构设计的影响,利用理论计算结合有限元模拟方法,分析了目前常用柱状电容装置在不同电极重叠长度、间距、加载电压等参数条件下,电容边缘效应与微力输出值之间的联系,并在此基础上提出了适用于... 为研究边缘效应对微力测量装置中柱状电容结构设计的影响,利用理论计算结合有限元模拟方法,分析了目前常用柱状电容装置在不同电极重叠长度、间距、加载电压等参数条件下,电容边缘效应与微力输出值之间的联系,并在此基础上提出了适用于微力测量装置中柱状电容的结构设计与工作参数。结果表明:微力测量装置中的柱状电容装置在电极重叠长度且电极间距均较小时,存在可忽略边缘效应影响的区域,此区域内微力输出具有较好稳定性,重叠长度变化时微力输出改变极小;电极间距较大时,随着加载电压升高,边缘效应的影响增强;且随着内外电极重叠长度增大,边缘效应影响程度受加载电压影响更明显。 展开更多
关键词 边缘效应 微力 测量装置 柱状电容 结构设计
下载PDF
Study on Magnetic Field Distribution in Electromagnetic Ingot Casting Mold for Extra Heavy Plate
2
作者 XU Chang-jun HU Lin +4 位作者 WANG Qi HU Xiao-dong zheng pei-liang LI Dong-xu ZHAO Lian-gang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2012年第S2期637-642,共6页
The dual-frequency electromagnetic ingot casting(DFEMIC)method with copper water-cooled ingot mold for extra heavy plate was developed.Electromagnetic field distribution in ingot mold was measured through the teslamet... The dual-frequency electromagnetic ingot casting(DFEMIC)method with copper water-cooled ingot mold for extra heavy plate was developed.Electromagnetic field distribution in ingot mold was measured through the teslameter,the shielding effect of the copper ingot mold was judged,it is less than 37.7%of magnetic flux density when there is no ingot mold.The average shielding the magnetic field proportion of copper ingot mold reduced to 54.9%after loading '「' type the magnetic yoke and adjusting its distribution.Improving electromagnetic power can increase the magnetic field strength. Using the slit combination ingot mold could help increasing magnetic flux density in ingot mold.Steel structure outside ingot mold also have interference on magnetic field distribution in ingot mold,Therefore,it is important to paid more attention to electromagnetic shielding and the uniform symmetry of system structure. 展开更多
关键词 extra heavy plate dual frequency electromagnetic field magnetic yoke POWER
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部