[1] 高兵兵.基于毛细力自驱动的微流控芯片及在POCT中的应用[D].南京:东南大学,2017. [2] 凌明祥,陈立国.基于介电润湿效应的微液滴操控[J].压电与声光,2013,35(4):604-608. [3] Cho S K, Moon H, Kim C J. Creating, transporting, cutting, and merging liquid droplets by electrowetting-based actuation for digital microfluidic circuits[J]. Journal of Microelectromechanical Systems, 2003, 12(1):70-80. [4] 戴宇晴.电场驱动下液滴的动力学特性研究[D].河北保定:华北电力大学,2017. [5] 王静.直流电场作用下油中水滴的破裂机理研究[D].山东青岛:中国石油大学,2016. [6] Feng J Q, Scott T C. A computational analysis of electrohydrodynamics of a leaky dielectric drop in an electric field[J]. Journal of Fluid Mechanics, 1996, 311:289-326. [7] Mugele F, Baret J C. Electrowetting:from basics to applications[J].Journal of Physics:Condensed Matter, 2005, 17(28):705-774. [8] Ichimura K, Oh S K, Nakagawa M. Light-driven motion of liquids on a photoresponsive surface[J]. Science,2000,288(5471):1624-1626. [9] 寻波, 胡文瑞. 多热源分布时薄层液体中热毛细对流的分叉特征[J].中国科学院研究生院学报, 2005, 22(6):733-738. [10] 陈然,王增辉,倪明玖.强磁场对导电流体热毛细流动和换热影响的实验研究[J].中国科学院大学学报,2019,36(1):25-30. [11] 李长荣,江明丽.FeO-CaO-SiO2熔渣中金属铜滴的电毛细迁移[J].中国有色冶金,2010,39(3):63-66. [12] 李秋菊,陈鹏,林姜多等.铜滴在富FeO熔渣中的电迁移行为[J].材料与冶金学报,2010,9(1):28-30. [13] Itoh S,Choo R T C,Toguri J M. Electrocapillary motion of copper and nickel matte droplets on fayalite-based slag surfaces[J].Canadian Metallurgical Quarterly,1995,34(4):319-330. [14] Zhang H W,Shi X Y,Zhang B.Behaviors of the molten copper slag in the vertical electric field[J].ISIJ International,2013, 53(10):1704-1708. [15] Warczok A,Riveros G. Slag cleaning in crossed electric and magnetic fields[J]. Minerals Engineering, 2006,20(1):34-43. [16] 张家雯,郭培民,杨海森,等.电渣重熔体系电毛细振荡的动态模拟[J].钢铁研究学报,2000,12(5):10-12. [17] 张国堤.液态Ga-In合金及Wood合金在NaOH水溶液中的电毛细行为[D].兰州:兰州理工大学,2017. [18] Choo R T C,Toguri J M.The electrodynamic behavior of metal and metal sulphide droplets in slags[J]. Canadian Metallurgical Quarterly,1992,31(2):113-126. [19] Soffer A. Electrocapillary equations and double-layer charge of reversible electrodes[J]. Journal of Electroanalytical Chemistry, 1972, 40(1):153-165. [20] Wang M F, Jin M J, Jin X J, et al. Modeling of movement of liquid metal droplets driven by an electric field[J]. Physical Chemistry Chemical Physics, 2017, 19(28):18505-18513. [21] Handschuh-Wang S, Chen Y, Zhu L, et al. Electric actuation of liquid metal droplets in acidified aqueous electrolyte[J]. Langmuir, 2018, 35(2):372-381. [22] Warczok A,Utigard T A. Settling of copper drops in molten slags[J]. Metallurgical and Materials Transactions B,1995,26(1):1165-1173. [23] 时宝国. 匀强电场中导体球表面感应电荷的分布规律[J]. 红河学院学报, 2007, 5(2):80-82. [24] 倪玲英. 复杂通道中油滴的运动规律与颗粒周围剪切力场研[D].山东青岛:中国石油大学,2008. |