Studies of density distributions in one-dimensional shock-induced debris clouds

Author:

Asay J.R.,Trucano T.G.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Ocean Engineering,Safety, Risk, Reliability and Quality,Aerospace Engineering,Automotive Engineering,Civil and Structural Engineering

Reference24 articles.

1. Use of shock waves in high-pressure physics;Alt'shuler;Sov. Phys.,1965

2. An overview of hydrocodes: theory and applications;Anderson;Int'l J. Impact Engr.,1987

3. Hypervelocity impact phenomena. Some aspects of debris;Anderson,1988

4. Super-high-velocity impact and anti-meteorite protection in the vega project;Anisimov,1988

5. The sandia national laboratories shock thermodynamics applied research (STAR) facility;Asay;Sandia National Laboratories Report,1981

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1. A generalization of the shock invariant relationship;Journal of Applied Physics;2024-08-22

2. Shock vaporization of silica and the thermodynamics of planetary impact events;Journal of Geophysical Research: Planets;2012-09

3. Investigation of fragments size resulting from dynamic fragmentation in melted state of laser shock-loaded tin;International Journal of Impact Engineering;2010-08

4. Simulation of shock-induced fragmentation and vaporization in metals;International Journal of Impact Engineering;2008-12

5. Shock-induced vaporization in metals;International Journal of Impact Engineering;2006-12

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