Abstract
AbstractVarious elasto-plastic models for the rate-independent deformation, various elasto-viscoplastic models for the rate-dependent deformation and their combinations have been proposed during a long time more than one or more centuries. Firstly, the history of the development of the elastoplasticiy and the elasto-viscoplasticity is reviewed comprehensively. Unfortunately, each of these models possesses their own drawbacks and limitations. The unified constitutive equation of the elasto-plastic and the elasto-viscoplastic deformations is provided by incorporating the subloading surface model into the overstress model in this article, which is capable of describing the monotonic and the cyclic loadings at the general rate ranging from the quasi-static to the impact loading. The validity of the unified model is verified by the comparison with various test data of metals under various loading conditions. Consequently, the elastoplastic constitutive equation can be disused hereinafter, while it is expressed by the cumbersome formulation including the complicated plastic modulus but limited to the description of the purely static deformation which is not induced actually.
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Computer Science Applications
Reference146 articles.
1. Abdel-Karim M, Ohno N (2000) Kinematic hardening model suitable for ratcheting with steady-state. Int J Plasticity 16:225–240
2. Anjiki T, Hashiguchi K (2021) Extended overstress model and its implicit stress integration algorithm: formulations, experiments, and simulations. Int J Numer Methods Eng 24:1642–1693
3. Armstrong PJ, Frederick CO (1966) A mathematical representation of the multiaxial Bauschinger effect, CEGB Report RD/B/N 731 (or in Materials at High Temperature, 24:1–26 (2007))
4. Arnold S, Saleeb A (1994) On the thermodynamic framework of generalized coupled thermoelastic–viscoplastic-damage modeling. Int J Plasticity 10:263–278
5. Asaro RJ, Lubarda V (2006) Mechanics of solids and materials. Cambridge Univ. Press, Cambridge
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