Fan Zenghua, Liu Zixiao, Huang Congcong, Zhang Wei, Lv Zhe, Wang Lefeng
School of Mechanical Engineering, Shandong University of Technology, Zibo 255049, China.
State Key Laboratory of Robotics and System, Harbin Institute of Technology, Harbin 150080, China.
Micromachines (Basel). 2021 Mar 8;12(3):285. doi: 10.3390/mi12030285.
The capillary action between two solid surfaces has drawn significant attention in micro-objects manipulation. The axisymmetric capillary bridges and capillary forces between a spherical concave gripper and a spherical particle are investigated in the present study. A numerical procedure based on a shooting method, which consists of double iterative loops, was employed to obtain the capillary bridge profile and bring the capillary force subject to a constant volume condition. Capillary bridge rupture was characterized using the parameters of the neck radius, pressure difference, half-filling angle, and capillary force. The effects of various parameters, such as the contact angle of the spherical concave gripper, the radius ratio, and the liquid bridge volume on the dimensionless capillary force, are discussed. The results show that the radius ratio has a significant influence on the dimensionless capillary force for the dimensionless liquid bridge volumes of 0.01, 0.05, and 0.1 when the radius ratio value is smaller than 10. The effectiveness of the theorical approach was verified using simulation model and experiments.
两个固体表面之间的毛细作用在微物体操纵方面引起了广泛关注。本研究对球形凹形夹具与球形颗粒之间的轴对称毛细桥和毛细力进行了研究。采用基于打靶法的数值程序,该程序由双重迭代循环组成,以获得毛细桥轮廓并使毛细力满足恒定体积条件。利用颈部半径、压差、半填充角和毛细力等参数对毛细桥破裂进行了表征。讨论了各种参数,如球形凹形夹具的接触角、半径比和液桥体积对无量纲毛细力的影响。结果表明,当半径比值小于10时,对于无量纲液桥体积为0.01、0.05和0.1的情况,半径比对无量纲毛细力有显著影响。使用仿真模型和实验验证了理论方法的有效性。