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Kinematic Limit Analysis of Nonassociated Perfectly Plastic Material by the Bipotential Approach and Finite Element Method

机译:非缔合完美塑性材料运动极限的双势法和有限元分析

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摘要

Limit analysis is one of the most fundamental methods of plasticity. For the nonstandard model, the concept of the bipotential, representing the dissipated plastic power, allowed us to extend limit analysis theorems to the nonassociated flow rules. In this work, the kinematic approach is used to find the limit load and its corresponding collapse mechanism. Because the bipotential contains in its expression the stress field of the limit state, the kinematic approach is coupled with the static one. For this reason, a solution of kinematic problem is obtained in two steps. In the first one, the stress field is assumed to be constant and a velocity field is computed by the use of the kinematic theorem. Then, the second step consists to compute the stress field by means of constitutive relations keeping the velocity field constant and equal to that of the previous step. A regularization method is used to overcome problems related to the nondifferentiability of the dissipation function. A successive approximation algorithm is used to treat the coupling question. A simple compression-traction of a nonassociated rigid perfectly plastic material and an application of punching by finite element method are presented in the end of the paper.
机译:极限分析是可塑性最基本的方法之一。对于非标准模型,代表耗散塑性功率的双电势概念使我们能够将极限分析定理扩展到非关联流动规则。在这项工作中,运动学方法被用于寻找极限载荷及其相应的坍塌机制。由于双电位在其表达式中包含极限状态的应力场,因此运动学方法与静态方法耦合。因此,分两步获得了运动学问题的解决方案。在第一个中,假定应力场是恒定的,并且使用运动定理计算了速度场。然后,第二步包括通过本构关系计算应力场,保持速度场恒定并等于上一步的速度场。使用正则化方法来克服与耗散函数的不可微性有关的问题。逐次逼近算法用于处理耦合问题。最后介绍了一种非缔合的刚性完美塑性材料的简单压缩牵引力,以及通过有限元方法进行冲孔的应用。

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