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数控电火花线切割加工中电极丝直径大小的分析
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作者 李立 《模具制造》 2007年第10期72-74,共3页
通过对数控电火花线切割加工中的电极丝直径大小的分析,探讨了电极丝直径大小对线切割加工的工艺影响,以及更换电极丝大小的方法。
关键词 数控电火花线切割 电极丝直径大小 更换电极 加工工艺
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生物阻抗技术及其临床应用 被引量:4
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作者 黄发清 李珊珊 罗伟 《中国医疗设备》 2014年第4期65-67,共3页
生物阻抗技术是一种无创的、安全有效且能够获取丰富功能信息的人体信息检测手段。本文介绍了生物阻抗技术的概念、测量方法以及不同电极对其测量结果的影响,还总结了生物阻抗技术在心脑血管疾病、消化系统疾病、肺部疾病以及乳腺癌检... 生物阻抗技术是一种无创的、安全有效且能够获取丰富功能信息的人体信息检测手段。本文介绍了生物阻抗技术的概念、测量方法以及不同电极对其测量结果的影响,还总结了生物阻抗技术在心脑血管疾病、消化系统疾病、肺部疾病以及乳腺癌检测中的临床应用。 展开更多
关键词 生物阻抗技术 阻抗特性 电极形状 电极大小 电极贴放位置 生物组织信息
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Preparation of Ni nanoparticles plating by electrodeposition using reverse microemulsion as template 被引量:1
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作者 周海晖 彭春玉 +5 位作者 付超鹏 安静 邹贺 王一栋 许岩 旷亚非 《Journal of Central South University》 SCIE EI CAS 2010年第1期40-44,共5页
Ni nanoparticles plating was prepared in reverse microemulsion. The deposition was carried out through the Brownian motion of water pools in the reverse microemulsion and the adsorption of water pools on the electrode... Ni nanoparticles plating was prepared in reverse microemulsion. The deposition was carried out through the Brownian motion of water pools in the reverse microemulsion and the adsorption of water pools on the electrode surface. Effects of electrolytic parameters on the size of Ni particles were studied. The performances of hydrogen evolution and hydrogen storage of the Ni nanoparticles plating electrode were also investigated. The results indicate that the size of Ni nanoparticles decreases with the increase of Ni2+ concentration and the decrease of current density. The electrochemical activity of Ni nanoparticles plating electrode is much higher than that of bulk Ni electrode. 展开更多
关键词 Ni nanoparticles reverse microemulsion ELECTRODEPOSITION electrolytic parameters
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Hydrogen bubble fiotation of fine minerals containing calcium 被引量:10
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作者 Sun Wei Ma Liang Hu Yuehua Dong Yanhong Zhang Gang 《Mining Science and Technology》 EI CAS 2011年第4期591-597,共7页
One characteristic of electro-flotation is the presence of micro bubbles that are well known for improving the flotation performance of fine particles. An electro-flotation method was studied with fine scheelite and f... One characteristic of electro-flotation is the presence of micro bubbles that are well known for improving the flotation performance of fine particles. An electro-flotation method was studied with fine scheelite and fluorite particles sized into three different fractions. Experiments were performed in a modified Hallimond tube. We investigated the effects of gas holdup, particle size, and different mesh electrode apertures on mineral recovery. Flotation results show that two size fractions show increased flotation recovery as the gas holdup increases. For the sized scheelite and fluorite, the flotation effect is diverse for different sizes of the cathode aperture. Pictures of the bubbles taken by a high speed CCD were used to determine the hydrogen bubble size distribution generated as a function of collector, current density, and electrode size. The diameters of the hydrogen bubbles ranged from 12 to 117μm in alkaline conditions. 展开更多
关键词 Fine particles Scheelite Fluorite Electro-flotation
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