Shock properties of conventional and high strength concrete: Experimental and mesomechanical analysis

Author:

Riedel Werner,Wicklein Markus,Thoma Klaus

Publisher

Elsevier BV

Subject

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

Reference38 articles.

1. Holmquist TJ, Johnson GR. A computational constitutive model for concrete subjected to large strains, high strain rates, and high pressures. In: Murphy M, Backofen J, editors. 14th international symposium on ballistics, Québec, 1993. p. 591–600.

2. Riedel W. Beton unter dynamischen Lasten: Meso- und makromechanische Modelle und ihre Parameter, Ed.: Fraunhofer-Institut für Kurzzeitdynamik, Ernst-Mach-Institut EMI. Freiburg/Brsg.: Fraunhofer IRB Verlag; 2004. p. 117–43. ISBN:3-8167-6340-5 〈http://www.irbdirekt.de/irbbuch/〉.

3. Riedel W, Thoma K, Hiermaier S, Schmolinske E. Penetration of reinforced concrete by BETA-B-500, numerical analysis using a new macroscopic concrete model for hydrocodes. In: SKA, editor. Proceedings of the ninth international symposium on interaction of the effects of munitions with structures, Berlin, 1999; p. 315–22.

4. Itho M, Katayama M, Mitake S, Niwa N, Beppu M, Ishikawa N. Numerical study on impulsive local damage of reinforce concrete structures by a sophisticated constitutive and failure model. In: Jones N, Brebbia CA, editors. Proceedings of the international conference on structures under shock and impact, Cambridge, 2000. ISBN:1-85312-820-1.

5. A new concrete material model for high dynamic hydrocode simulations;Gebbeken;Arch Appl Mech,2000

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