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Titlebook: Unified Plasticity for Engineering Applications; Sol R. Bodner Book 2002 Springer Science+Business Media New York 2002 deformation.develop

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Commentaries,ndent inelastic behavior of metals and alloys over an extensive range of strain rates and temperatures. Relatively few material parameters appear in the equations and these could generally be related to specific response characteristics which indicates a satisfactory physical basis of the governing
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Book 2002 a yield (onset) criterion, have served the engineering profession well for many years. They are still basic to the design and analysis of most structural applications. In the need to use materials more effectively, there are circumstances where those traditional models are not adequate, and constit
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Formulation of a Unified Constitutive Theory of Elastic-Viscoplastic Behavior,aracteristics prior to total failure. There have been considerable advances on this subject in recent years due to better understanding of the physics of deformation and the advent of efficient computational capability which enables solution of complicated equations.
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s between the partnersrequires mutual understanding: decision-makers need to understand theunique potential but also the limitations of the results of scientificresearch in progress while scientists must take into account thepriorities and constraints of policy-makers in designing andimplementing po
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Specific Applications,at lower strain rates making use of modern numerical techniques. Recovery of hardening is usually unimportant in applications at high strain rates so those parameters tend to be omitted in the determination of the high rate material constants.
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nse into a set of time dependent equations with a single inelastic strain rate variable. For such theories, creep under constant stress, stress relaxation under constant strain, and stress-strain relations at constant rates are each special cases of a general formulation. Those equations mayor may not include978-1-4613-5128-3978-1-4615-0551-8
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