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On adaptation (shakedown) of a class of damaged elastic plastic bodies to cyclic loading

✍ Scribed by B. Druyanov; I. Roman


Publisher
Elsevier Science
Year
1998
Tongue
English
Weight
505 KB
Volume
17
Category
Article
ISSN
0997-7538

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✦ Synopsis


The objective of the presentation is to develop conditions for plastic adaptation of damaged strain-hardening elastic plastic bodies to cyclic loading. The energy based model of isotropically damaged elastic plastic strain hardening bodies by Ju is taken. A necessary condition for adaptation is considered.

It is demonstrated that if there exists a time independent field of residual stresses which is in the interior of all current yield surfaces the plastic strain rates and the damage rate tend to zero. This is Melan's theorem generalized to damaged bodies with strain hardening.

There exists a class of strain hardening bodies for which the above condition is fulfilled for t > to if it is fulfilled for t = to Bodies with isotropic strain hardening belong to this class. The Koiter inequality extended to the case under consideration results in the conclusion that, if the conditions of theorem are satisfied. the total plastic dissipation is bounded from above. 0 Elsevier, Paris.


πŸ“œ SIMILAR VOLUMES


A method for the evaluation of a ratchet
✍ Haofeng Chen; Alan R.S Ponter πŸ“‚ Article πŸ“… 2001 πŸ› Elsevier Science 🌐 English βš– 337 KB

An extension of the upper bound shakedown theorem to load histories in excess of shakedown has been presented elsewhere in this issue. Here the minimisation process described therein is applied to the solutions of the ratchet limit as well as shakedown and limit load for a range of simple problems.