Karakashev Stoyan I, Phan Chi M, Nguyen Anh V
Discipline of Chemical Engineering, School of Engineering, University of Newcastle, University Drive, Callaghan, New South Wales 2308, Australia.
J Colloid Interface Sci. 2005 Nov 15;291(2):489-96. doi: 10.1016/j.jcis.2005.05.030. Epub 2005 Jun 24.
The combined approach of the molecular-kinetic and hydrodynamic theories for description of the motion of three-phase gas-liquid-solid contact lines has been examined using the Wilhelmy plate method. The whole dynamic meniscus has been divided into molecular, hydrodynamic, and static-like regions. The Young-Laplace equation and the molecular-kinetic and hydrodynamic dewetting theories have been applied to describe the meniscus profiles and contact angle. The dissipative forces accompanying the dynamic dewetting have also been investigated. The experiments with a Wilhelmy plate made from an acrylic polymer sheet were carried out using a computerized apparatus for contact angle analysis (OCA 20, DataPhysics, Germany). The extrapolated dynamic contact angle versus velocity of the three-phase contact line for Milli-Q water and 5x10(-4) M SDBS solution was experimentally obtained and compared with the combined MHD models with low and moderate Reynolds numbers. The models predict similar results for the extrapolated contact angle. SDBS decreases the equilibrium contact angle and increases the molecular jumping length but does not affect the molecular frequency significantly. The hydrodynamic deformation of the meniscus, viscous dissipation, and friction were also influenced by the SDBS surfactant.
利用威尔海姆平板法研究了分子动力学和流体动力学理论相结合描述三相气-液-固接触线运动的方法。整个动态弯月面被划分为分子区、流体动力学区和类静态区。应用杨-拉普拉斯方程以及分子动力学和流体动力学去湿理论来描述弯月面轮廓和接触角。还研究了动态去湿过程中伴随的耗散力。使用用于接触角分析的计算机化仪器(德国DataPhysics公司的OCA 20)对由丙烯酸聚合物片材制成的威尔海姆平板进行了实验。实验获得了超纯水和5×10⁻⁴ M十二烷基苯磺酸钠(SDBS)溶液的外推动态接触角与三相接触线速度的关系,并与低雷诺数和中等雷诺数的组合磁流体动力学模型进行了比较。这些模型对外推接触角预测了相似的结果。SDBS降低了平衡接触角,增加了分子跳跃长度,但对分子频率影响不大。SDBS表面活性剂也影响了弯月面的流体动力学变形、粘性耗散和摩擦力。