期刊文献+

基底弹性对蒸发超薄液膜去润湿过程的影响 被引量:3

EFFECTS OF ELASTICITY OF SUBSTRATE ON DEWETTING PROCESS OF EVAPORATING ULTRA-THIN LIQUID FILM
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摘要 研究了基底的弹性变形对蒸发超薄膜的稳定性和去润湿动力学过程的影响.基于长波近似,得到了关于液体薄膜厚度的演化方程.运用线性稳定性理论和数值模拟两种方法,研究了基底弹性、范德华力以及液体蒸发等因素对液体薄膜的稳定性和去润湿过程的影响.研究结果表明增大基底的弹性系数或者减小液体的表面张力,都能加速液膜的破碎,并且能够影响气液界面波的波长;液体蒸发能促进气液界面扰动的增长,有助于液膜的破裂. The effects of substrate elasticity on instability and dynamics of the horizontal evaporating ultrathin liquid film are investigated in the present study.The evolution equation for the thickness of liquid film is derived based on long-wave approximation.The effects of substrate elasticity,Van der Waals forces and evaporation of liquid are examined by both linear stability analysis and numerical simulation.The results indicate that increasing substrate elasticity or decreasing the surface tension of liquid can enhance the development of perturbations,change the wavelength of interfacial wave,and be helpful to the rupture of the liquid film.The evaporation of liquid will promote the instability of film and accelerate the rupture process.
出处 《力学学报》 EI CSCD 北大核心 2011年第4期699-706,共8页 Chinese Journal of Theoretical and Applied Mechanics
基金 国家自然科学基金(10772107) 上海市科委重大项目(10dz2212600) 教育部长江学者创新团队(IRT0844) 上海市高校刨新团队资助项目~~
关键词 液体薄膜 稳定性 蒸发 弹性基底 liquid film stability evaporation elastic substrate
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参考文献19

  • 1Oron A, Davis SH, Bankoff SG. Long-scale evolution of thin liquid films. Reviews of Modern Physics, 1997, 69(3): 931-980.
  • 2叶学民,阎维平.液体薄膜流稳定性和破断特性的研究进展[J].华北电力大学学报(自然科学版),2006,33(6):63-67. 被引量:7
  • 3Craster RV, Matar OK. Dynamics and stability of thin liquid films. Reviews of Modern Physics, 2009, 81(3): 1131- 1198.
  • 4Benjamin TB. Wave formation in laminar flow down an inclined plane. J Fluid Mech, 1957: 2:554-574.
  • 5Vrij A. Possible mechanism for the spontaneous rupture of thin, free liquid films. Discuss Faraday Soc, 1966, 42: 23-33.
  • 6Sheludko A. Thin liquid films. Adv Colloid Interface Sci, 1967, 1:391-463.
  • 7Kelly RE, Goussis DA, Lin SP, et al. The mechanism for surface wave instability in film flow down an inclined plane. Physics of Fluids A, 1989, 1(5): 819-828.
  • 8Yih CS. Stability of parallel laminar with a free surface. Quart Appl Math, 1955, 13(4): 434-439.
  • 9Yih CS. Stability of liquid flow down an inclined plane. Physics of Fluid, 1963, 6(3): 321-335.
  • 10Wiilliams MB, Davis SH. Nonlinear theory of film rupture. J Colloid Interface Sci, 1982, 90(1): 220-228.

二级参考文献52

  • 1蒋章焰,宋金田,孔旭静,郭朝阳.垂直加热管外自由降膜流的破断特性[J].工程热物理学报,1995,16(2):199-203. 被引量:10
  • 2WANG B X, ZHANG J T, PENG X F. Experimental study on the dryout heat flux of falling liquid film [J]. Int J Heat Mass Transfer, 2000, 43 (11): 1897-1903.
  • 3DONIEC A. Laminar flow of a liquid rivulet down a vertical solid surface [J]. Can J Chem Eng, 1991, 69 (1): 198-202.
  • 4BANKOFF S G. Significant questions in thin liquid film heat transfer [J]. J Heat Transfer, 1994, 116: 10-16.
  • 5BURELBACH J P, BANKOFF S G, DAVIS S H. Nonlinear Stability of evaporating/condensing liquid films [J]. J Fluid Mech, 1988, 195: 463-494.
  • 6BURELBACHJP, BANKOFF SG, DAVIS SH. Steady thermocapillary flows of thin liquid layers. Ⅱ experiment [J]. Phys Fluids, 1990, 2: 322-333.
  • 7DAVALOS-OROZCO L A, YOU X. Three-dimensional instability of a liquid layer flowing down a heated vertical cylinder [J]. Phys Fluids, 2000, 12: 2198-2209.
  • 8KAPITZA P L. Wave Flow of Thin Layers of a Viscous Fluid layers [J]. Zh Eksp Teor Fiz, 1948, 18 (1): 3-28.
  • 9STROBEL W J, WHITAKER S. The effect ofsuffactants on the flow characteristics of falling liquid films [J]. J AIChE, 1969, 15: 527-535.
  • 10CHANG H C. Evolution of nonlinear waves on vertically falling films-a normal form analysis [J]. Chem Eng Sci, 1987, 42: 515-533.

共引文献6

同被引文献77

  • 1蒋开,陈云飞,庄苹,杨决宽,唐明兵.纳米尺度边界滑移的分子动力学模拟研究[J].摩擦学学报,2005,25(3):238-242. 被引量:9
  • 2YeXuemin(叶学民),WangSongling(王松岭),LiChunxi(李春曦),ZhangRunpan(张润盘).Instabilityofevaporating or condensing sheared liquid films under thermalnon-equilibrium effect [J].由国电机工程学报,2009,29(2):75-80.
  • 3Sun Y H, Chan W K, Chen G D. Slip effect for thin liquid film spreading characteristics [J]. Proceedings of IMechE Part J : J. Engineering Tribology , 2006, 220 ( 2 ) : 87-93.
  • 4Craster R V, Matar O K. Dynamics and stability of thin liquid films [J]. Reviews of Modern Physics, 2009, 81 (3): 1131-1189.
  • 5Churaev N V. Surface forces in wetting films [ J ]. Advances in Colloid and Interface Science, 2003, 103 (3): 197-218.
  • 6Seemann R, Herminghaus S, Neto C, Schlagowski S, Podzimek D, Konrad R, Mantz H, Jacobs K. Dynamicsand structure formation in thin polymer melt films [J]. Journal of Physics, 2005, 17 (9) : 267-290.
  • 7Gregorovich B V, Adamsons K, Lin L. Scratch and mar and other mechanical properties as a function of chemical structure for automotive refinish coatings [J]. Progress in Organic Coatings, 2001, 43 (1/2/3): 175-187.
  • 8Schwartz L W, Roy R V, Eley R R, Petrash S. Dewetting patterns in a drying liquid film [J]. Journal of Colloid and Interface Science, 2001, 234 (2) : 363-374.
  • 9Warner M R E, Craster R V, Matar O K. Dewetting of ultrathin surfaetant-eovered films [J]. Physics of Fluids, 2002, 14 (11): 4040-4054.
  • 10Mohamed S E, Yang I. Numerical analysis of laminar flow in micro-tubes with a slip boundary [J]. Energy Conversion and Management, 2009, 50 (6) : 1481-1490.

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