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On shakedown analysis in hardening plasticity

机译:进行可塑分析以增强塑性

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The extension of classical shakedown theorems for hardening plasticity is interesting from both theoretical and practical aspects of the theory of plasticity. This problem has been much discussed in the literature. In particular, the model of generalized standard materials gives a convenient framework to derive appropriate results for common models of plasticity with strain-hardening. This paper gives a comprehensive presentation of the subject, in particular, on general results which can be obtained in this framework. The extension of the static shakedown theorem to hardening plasticity is presented at first. It leads by min-max duality to the definition of dual static and kinematic safety coefficients in hardening plasticity. Dual static and kinematic approaches are discussed for common models of isotropic hardening of limited or unlimited kinematic hardening. The kinematic approach also suggests for these models the introduction of a relaxed kinematic coefficient following a method due to Koiter. Some models for soils such as the Cam-clay model are discussed in the same spirit for applications in geomechanics. In particular, new appropriate results concerning the variational expressions of the dual kinematic coefficients are obtained.
机译:从可塑性理论的理论和实践方面来看,经典减震定理的扩展都可以使硬化变得有趣。在文献中已经对该问题进行了很多讨论。特别是,通用标准材料模型提供了一个方便的框架,可以为带有应变硬化的通用塑性模型得出适当的结果。本文对该主题进行了全面介绍,特别是在此框架中可以获得的一般结果。首先介绍了静态减震定理到硬化可塑性的扩展。它通过最小-最大对偶性来定义硬化可塑性中的静态和运动安全性双重系数。讨论了有限运动学强化或无限运动学强化的各向同性强化的通用模型的静态和运动学双重方法。运动学方法还建议针对这些模型采用Koiter提出的方法引入松弛运动学系数。出于相同的精神,讨论了一些土壤模型(例如Cam-clay模型)在地质力学中的应用。特别地,获得了关于双运动学系数的变化表达式的新的适当结果。

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