Calculations of van der Waals forces in thin liquid films using Lifshitz' theory

1977 ◽  
Vol 60 (3) ◽  
pp. 540-547 ◽  
Author(s):  
W.A.B Donners ◽  
J.B Rijnbout ◽  
A Vrij
2007 ◽  
Vol 571 ◽  
pp. 33-57 ◽  
Author(s):  
RICHARD D. LENZ ◽  
SATISH KUMAR

The behaviour of the interface between stratified thin liquid films bounded by parallel solid surfaces and subject to van der Waals forces which drive dewetting is studied in this work. Chemically homogeneous surfaces are considered first; this is followed by an investigation of chemically heterogeneous surfaces. The lubrication approximation is applied to obtain a single nonlinear evolution equation which describes the interfacial behaviour, and both the linear stability and nonlinear development of the interface are examined. The sensitivity of the interfacial rupture time to problem parameters such as the viscosity ratio, initial interfacial height, interfacial tension, and magnitude of the van der Waals forces is characterized in detail for the homogeneous case. This serves as a basis for a study of the heterogeneous case, where the strong dependence of the rupture time on the length scale of the heterogeneity is found to be relatively independent of changes in the remaining problem parameters. The mechanisms underlying the rupture-time behaviour are also explored in detail. The results suggest a route by which one liquid can become emulsified in the other, and may be beneficial to industrial processes such as lithographic printing which are based on wettability phenomena.


Langmuir ◽  
2014 ◽  
Vol 30 (18) ◽  
pp. 5162-5169 ◽  
Author(s):  
Er Qiang Li ◽  
Ivan U. Vakarelski ◽  
Derek Y. C. Chan ◽  
Sigurdur T. Thoroddsen

1998 ◽  
Vol 44 (4) ◽  
pp. 484-490 ◽  
Author(s):  
T Kerle ◽  
R Yerushalmi-Rozen ◽  
J Klein ◽  
L. J Fetters

2000 ◽  
Vol 624 ◽  
Author(s):  
Nelson Bell ◽  
Duane Dimos

ABSTRACTCalculations of the Hamaker constants representing the van der Waals interactions between conductor, resistor and dielectric materials are performed using Lifshitz theory. The calculation of the parameters for the Ninham-Parsegian relationship for several non-aqueous liquids has been derived based on literature dielectric data. Discussion of the role of van der Waals forces in the dispersion of particles is given for understanding paste formulation. Experimental measurements of viscosity are presented to show the role of dispersant truncation of attractive van der Waals forces


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