Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Static shakedown theorem accounting for elastic stiffness degradation during plastic yielding
Abstract The soil is modeled as coupled elastoplastic to account for the elastic stiffness degradation during plastic yielding. In such model the irreversible strain rate results from a combination of a plastic part and a coupled part of strain rates. The former arises from plastic yielding and the latter is generated by the variation in the elastic stiffness. This leads to non associated and coupled flow rules in which the outward direction of the irreversible strain rate do not coincides neither with the outward normal to the yield surface nor the outward normal to the plastic potential. In this paper an extension of the static shakedown theorem to soil is proposed in the framework of the coupled elastoplasticity.
Highlights Coupled elastoplastic model. Degradation of the elastic stiffness during plastic yielding. A particular class of non associated flow. Extension of the static shakedown theorem to soils. Boundedness of the dissipated energy.
Static shakedown theorem accounting for elastic stiffness degradation during plastic yielding
Abstract The soil is modeled as coupled elastoplastic to account for the elastic stiffness degradation during plastic yielding. In such model the irreversible strain rate results from a combination of a plastic part and a coupled part of strain rates. The former arises from plastic yielding and the latter is generated by the variation in the elastic stiffness. This leads to non associated and coupled flow rules in which the outward direction of the irreversible strain rate do not coincides neither with the outward normal to the yield surface nor the outward normal to the plastic potential. In this paper an extension of the static shakedown theorem to soil is proposed in the framework of the coupled elastoplasticity.
Highlights Coupled elastoplastic model. Degradation of the elastic stiffness during plastic yielding. A particular class of non associated flow. Extension of the static shakedown theorem to soils. Boundedness of the dissipated energy.
Static shakedown theorem accounting for elastic stiffness degradation during plastic yielding
HAMADOUCHE, Mohand Ameziane (Autor:in)
16.07.2019
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Static Shakedown Theorem Accounting for Material Damage and Creep
British Library Online Contents | 2004
|Shakedown kinematic theorem for elastic-perfectly plastic bodies
British Library Online Contents | 2001
|Shakedown of elastic- plastic structures
Elsevier | 1988
|A Static Shakedown Theorem for Materials with Temperature-Dependent Elastic Modulus
British Library Conference Proceedings | 2008
|Shakedown theory for elastic plastic kinematic hardening bodies
British Library Online Contents | 2007
|