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Titlebook: Computational Aspects of Penetration Mechanics; Proceedings of the A J. Chandra,J. E. Flaherty Conference proceedings 1983 Springer-Verlag

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Towards a Revival of Natural Philosophyhe central topics of this workshop: (i) codes; (ii) physical basis and engineering model formulation; (iii) numerical ODE and PDE solution methods; and (iv) large-scale computing hardware and software. In this article, primary emphasis is directed toward problems in blast wave hydrodynamics and in p
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Computational Aspects of Penetration Mechanics978-3-642-82093-9Series ISSN 0176-5035
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Johan Blaauwendraad,Jeroen H. Hoefakkerinferences are then drawn from computer simulations of penetration events with applications to both kinematic and materials issues. A discussion is presented of suggested tests for characterizing material response in this regime.
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Towards a Revival of Natural Philosophyy the augmented Lagrangian techniques described in [1]. As a first step towards their eventual use in case where both nonlinearities are present, this paper describes augmented lagrangian methods in a rather abstract form, which covers a large spectrum of applications.
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Design of Radioactive Material Shipping Packaging for Low-Velocity Puncture Resistancetransport packagings containing large quantities of radioactive material, such as spent fuel from a nuclear power reactor or waste by-products from nuclear weapons programs, should be designed to resist a sequence of impact, puncture, fire, and water immersion conditions without harmful release of c
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New Sliding Surface Techniques Enable Lagrangian Code to Handle Deep Target Penetration/Perforation of sliding surfaces and the automatic addition and processing of new sliding surfaces when warranted..This development was necessary in order to model ballistic impact situations involving deep penetration and/or perforation of targets..The techniques were implemented and tested in an axisymmetric s
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