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- W2010985879 abstract "High power laser irradiation of solids results in a strong shock wave propagation, driving very high amplitude pressure loadings with very short durations. These particular characteristics offer the possibility to study the behaviour of matter under extreme dynamic conditions in continuity with what is possible with the conventional generators of shock (launchers of projectiles, explosives). An advantage of laser shocks is a possible recovery of the shocked samples presenting the metallurgical effects of the shock in most cases. We introduce the principle of the laser shock generation, the characterization of these shocks, the principal mechanisms and effects associated with their propagation in the solids. We show how laser shocks can be a laboratory tool for simulating shock effects at ultra high strain rate, providing a high in information experimental layout for validation of damage modelling on an extended strain rate range compared to conventional shock generators. New data have been obtained with ultra short femtosecond range irradiation. Experimental data gathered through post mortem observation, time resolved velocity measurement are shown along with numerical associated simulations, showing the possibility to predict the damage behaviour of metallic targets under extreme strain rate up to 108 s−1̤" @default.
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- W2010985879 date "2012-01-01" @default.
- W2010985879 modified "2023-09-24" @default.
- W2010985879 title "Laser shocks: A tool for experimental simulation of damage into materials" @default.
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- W2010985879 doi "https://doi.org/10.1063/1.4739884" @default.
- W2010985879 hasPublicationYear "2012" @default.
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