Onset of folding in plane liquid films

Author:

Yarin A. L.,Tchavdarov B. M.

Abstract

The onset of the folding effect characteristic of highly viscous liquid films (plane jets) slowly impinging on a wall is studied. Nonlinear quasi-one-dimensional equations are derived to describe the flow. In the linear approximation they reduce to the eigenvalue problem, whose solution predicts that instability (the onset of folding) sets in when the length of the film exceeds a critical value. The critical folding heights and the oscillation frequencies at the onset of instability are predicted as a function of flow parameters. Theoretical results are compared with Cruickshank's (1988) experimental data. Agreement is quite good only in the range of parameters where the quasi-one-dimensional approximation is applicable (thin films at the onset of folding).

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference26 articles.

1. Taylor, G. I. 1969 Instability of jets, threads and sheets of viscous fluid. Proc. 12th Intl Congr. Appl. Mech., Stanford, 1968 (ed. M. Hetényi & W. G. Vincenti ), p.382.Springer.

2. Yarin, A. L. 1993 Free Liquid Jets and Films: Hydrodynamics and Rheology .Longman Scientific & Technical and Wiley.

3. Schultz, W. W. & Davis, S. H. 1982 One-dimensional liquid fibers.J. Rheol. 26,331.

4. Yarin, A. L. 1983 On the dynamical equations for liquid jets.Fluid Dyn. 18,134.

5. Yarin, A. L. 1994 On instability of rapidly stretching metal jets produced by shaped charges.Intl J. Engng Sci. 32,847.

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