Energy absorption characteristics of thin aluminium plate against hemispherical nosed projectile impact
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Building and Construction,Civil and Structural Engineering
Reference22 articles.
1. Effect of projectile nose shape, impact velocity and target thickness on deformation behaviour of aluminium plates;Gupta;Int. J. Solids Struct.,2007
2. Experimental and numerical studies on the behaviour of thin aluminium plates subjected to impact by blunt- and hemispherical – nosed projectiles;Gupta;Int. J. Impact Eng.,2006
3. Effect of projectile nose shape, impact velocity and target thickness on the deformation behavior of layered plates;Gupta;Int. J. Impact Eng.,2008
4. Influence of projectile shape on dynamic behaviour of steel sheet subjected to impact and perforation;Kpenyigba;Thin Walled Struct.,2013
5. Effect of projectile nose shape on ballistic resistance of interstitial-free steel sheets;Kpenyigba;Int. J. Impact Eng.,2015
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