Shock Waves in Dynamic Cavity Expansion

Author:

Cohen Tal1,Masri Rami1,Durban David1

Affiliation:

1. Faculty of Aerospace Engineering, Technion, Haifa 32000, Israel

Abstract

High velocity cavitation fields are investigated in the context of large strain J2 plasticity with strain hardening and elastic compressibility. The problem setting is that of an internally pressurized spherical cavity, embedded in an unbounded medium, which grows spontaneously with constant velocity and pressure. Expansion velocity is expected to be sufficiently high to induce a plastic shock wave, hardly considered in earlier dynamic cavitation studies. Jump conditions across singular spherical surfaces (shock waves) are fully accounted for and numerical illustrations are provided over a wide range of power hardening materials. Simple formulae are derived for shock wave characteristics and for the asymptotic behavior within near cavity wall boundary layer.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference7 articles.

1. Dynamic Spherical Cavity Expansion in an Elastoplastic Compressible Mises Solid;Masri;ASME J. Appl. Mech.

2. Dynamic Expansion of Spherical Cavities in Metal;Hopkins

3. Similarity Solution for the Rapid Uniform Expansion of a Spherical Cavity in a Compressible Elastic-Plastic Solid;Hunter;Q. J. Mech. Appl. Math.

4. The Propagation of Spherical Waves in an Elasto-Plastic Medium;Luntz;Prikl. Mat. Mekh.

5. A Continuous Loading Solution for Spherical Elastic-Plastic Waves of Small Amplitude;Milne;J. Mech. Phys. Solids

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