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Inelastic Analysis of Structures under Variable Loads: Theory and Engineering Applications

✍ Scribed by P. S. Symonds (auth.), Dieter Weichert, Giulio Maier (eds.)


Publisher
Springer Netherlands
Year
2001
Tongue
English
Leaves
385
Series
Solid Mechanics and Its Applications 83
Edition
1
Category
Library

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✦ Synopsis


The question whether a structure or a machine component can carry the applied loads, and with which margin of safety, or whether it will become unserviceable due to collapse or excessive inelastic deformations, has always been a major concern for civil and mechanical engineers. The development of methods to answer this technologically crucial question without analysing the evolution of the system under varying loads, has a long tradition that can be traced back even to the times of emerging mechanical sciences in the early 17th century. However, the scientific foundations of the theories underlying these methods, nowadays frequently called "direct", were established sporadically in the Thirties of the 20th century and systematically and rigorously in the Fifties. Further motivations for the development of direct analysis techniques in applied mechanics of solids and structures arise from the circumstance that in many engineering situations the external actions fluctuate according to time histories not a priori known except for some essential features, e.g. variation intervals. In such situations the critical events (or "limit states") to consider, besides plastic collapse, are incremental collapse (or "ratchetting") and alternating plastic yielding, namely lack of "shakedown". Non evolutionary, direct methods for ultimate limit state analysis of structures subjected to variably-repeated external actions are the objectives of most papers collected in this book, which also contains a few contributions on related topics.

✦ Table of Contents


Front Matter....Pages i-viii
An Early Upper Bound Method for Shakedown of Beams and Frames....Pages 1-9
Shakedown Limits for a General Yield Condition: Implementation and Application for a Von Mises Yield Condition....Pages 11-29
Shakedown at Finite Elasto-Plastic Strains....Pages 31-47
Shape Optimization under Shakedown Constraints....Pages 49-68
Numerical Simulations of Thermo-Viscoplastic Flow Processes under Cyclic Dynamic Loadings....Pages 69-94
Subdomain Bounding Technique for Shakedown Analysis of Structures....Pages 95-105
Failure Investigation of Fiber-Reinforced Composite Materials by Shakedown Analysis....Pages 107-119
Analysis of Masonry Structures Subject to Variable Loads: A Numerical Approach Based on Damage Mechanics....Pages 121-134
CYCLONE - System for Structural Adaptation and Limit Analysis....Pages 135-146
Variational Principles for Shakedown Analysis....Pages 147-165
Shakedown of Elastic-Plastic Structures with Non Linear Kinematical Hardening by the Bipotential Approach....Pages 167-182
Shakedown and Fatigue Damage in Metal Matrix Composites....Pages 183-196
On Shakedown of Elastic Plastic Bodies with Brittle Damage....Pages 197-212
Simplified Methods for the Steady State Inelastic Analysis of Cyclically Loaded Structures....Pages 213-232
Direct Finite Element Kinematical Approaches in Limit and Shakedown Analysis of Shells and Elbows....Pages 233-254
Shakedown and Damage Analysis Applied to Rocket Engines....Pages 255-267
Reliability Analysis of Elasto-Plastic Structures under Variable Loads....Pages 269-288
Upper Bounds on Post-Shakedown Quantities in Poroplasticity....Pages 289-314
Fatigue Behavior of Fiber Reinforced Concrete: Comparison between Material and Structural Response....Pages 315-334
Shakedown Analysis by Elastic Simulation....Pages 335-364
Application of the Kinematic Shakedown Theorem to Pavements Design....Pages 365-380
Back Matter....Pages 381-384

✦ Subjects


Civil Engineering;Mechanics;Quality Control, Reliability, Safety and Risk


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