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Moving contact line problem: Advances and perspectives 被引量:6

Moving contact line problem: Advances and perspectives
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摘要 The solid-liquid interface, which is ubiquitous in nature and our daily life, plays fundamental roles in a variety of physical-chemical-biological- mechanical phenomena, for example in lubrication, crystal growth, and many biological reactions that govern the building of human body and the functioning of brain. A surge of interests in the moving contact line (MCL) problem, which is still going on today, can be traced back to 1970s primarily because of the exis- tence of the "Huh-Scriven paradox". This paper, mainly from a solid mechanics perspective, describes very briefly the multidisciplinary nature of the MCL problem, then summarizes some major advances in this exciting research area, and some future directions are presented. The solid-liquid interface, which is ubiquitous in nature and our daily life, plays fundamental roles in a variety of physical-chemical-biological- mechanical phenomena, for example in lubrication, crystal growth, and many biological reactions that govern the building of human body and the functioning of brain. A surge of interests in the moving contact line (MCL) problem, which is still going on today, can be traced back to 1970s primarily because of the exis- tence of the "Huh-Scriven paradox". This paper, mainly from a solid mechanics perspective, describes very briefly the multidisciplinary nature of the MCL problem, then summarizes some major advances in this exciting research area, and some future directions are presented.
作者 Yapu Zhao
出处 《Theoretical & Applied Mechanics Letters》 CAS 2014年第3期1-17,I0004,共18页 力学快报(英文版)
基金 supported by the National Natural Science Foundation of China(11372313) the Key Research Program of the Chinese Academy of Sciences(KJZD-EW-M01) the Instrument Developing Project ofthe CAS(Y2010031) the CAS/SAFEA International Partnership Program for Creative Research Teams
关键词 solid-liquid interface moving contact line Huh-Scriven paradox molecu-lar kinetic theory ELECTROWETTING electro-elasto-capillarity slip boundary conditions cellspreading Zhurkov-Bell model emergent phenomenon solid-liquid interface, moving contact line, Huh-Scriven paradox, molecu-lar kinetic theory, electrowetting, electro-elasto-capillarity, slip boundary conditions, cellspreading, Zhurkov-Bell model, emergent phenomenon
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  • 1Wendong Shi,Xi Qiao Feng,Huajian Gao.Two-dimensional model of vesicle adhesion on curved substrates[J].Acta Mechanica Sinica,2006,22(6):529-535. 被引量:6
  • 2Pit,R, Hervet,H. and Leger,L., Direct experimental evidence of slip in hexadecane: solid interfaces. Physical Review Letters, 2000, 85: 980-983. 被引量:1
  • 3Zhu,Y.X. and Granick,S., Rate-dependent slip of Newtonian liquid at smooth surfaces. Physical Review Letters, 2001, 87: 096105. 被引量:1
  • 4Plimpt0n,S., Fast parallel algorithms for short-range molecular-dynamics. Journal of Computational Physics, 1995, 117: 1-19. 被引量:1
  • 5Derendsen,H.J.C., Grigera,J.R. and Straatsma,T.P., The missing term in effective pair potentials. Journal of Physical Chemistry, 1987, 91: 6269-6271. 被引量:1
  • 6Jabbarzadeh,A., Harrowell,P. and Tanner,R.I., Crystal bridge formation marks the transition to rigidity in a thin lubrication film. Physical Review Letters, 2006, 96: 206102. 被引量:1
  • 7Bureau,L, Rate effects on layering of a confined linear alkane. Physical Review Letters, 2007, 99: 225503. 被引量:1
  • 8Cui,S.T., McCabe,C., Cummings,P.T. and Cochran,H.D., Molecular dynamics study of the nano-rheology of n-dodecane confined between planar surfaces. Journal of Chemical Physics, 2003, 118: 8941-8944. 被引量:1
  • 9Reiner,M., The Deborah number. Physics Today, 1964, 17: 62. 被引量:1
  • 10Landau,L.D. and Lifshitz,E.M., Theory of Elasticity. Oxford: Butterworth-Heinemann, 1999. 被引量:1

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