Analytic solution of liquid-drop impact problems

Author:

Abstract

The pressure in an impacting liquid drop against both a rigid and an elastic target is calculated for the period when the contact region is expanding faster than the wave speed in the liquid. For very low speed impact a geometrical-acoustics model is shown to give a good representation of the solution, until the edge speed approaches the wave speed. A self-similar solution, that takes account of nonlinear effects, is used in the neighbourhood of the contact edge. Comparisons are made with linear theory and numerical calculations. It is shown that linear theory is totally inadequate in predicting the escape of the shock system from the contact edge and that numerical calculations have used too large a time step to calculate the time of escape correctly. The delay in escape time from the previous theoretical predictions of Heymann (1969) is attributed to the elasticity of the target, an effect that is taken into account in the present work.

Publisher

The Royal Society

Subject

Pharmacology (medical)

Reference17 articles.

1. Adler W. F. 1979 Erosion: prevention and useful applications. Philadelphia Pennsylvania: American Society for Testing and Materials.

2. The brittle fracture of solids by liquid impact, by solid impact, and by shock

3. Brunton J. H. & Rochester M. C. 1979 In Treatise on materials science and technology vol. 16 (ed. C. M. Preece). New York: Academic Press.

4. Camus J. J. 1971 Ph.D. thesis University of Cambridge.

5. Engel P. A. 1976 Impact wear of materials. Amsterdam: Elsevier.

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