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On implementation of bounding surface plasticity models with no overshooting effect in solving boundary value problems

机译:解决边界值问题时没有超调效果的边界曲面可塑性模型的实现

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摘要

This paper presents a new scheme that can be used to overcome the overshooting effect, one of the well known problems occurs during application of bounding surface plasticity models in numerical analysis of boundary value problems. The scheme is based on definition of clouds of loading surfaces with a specific margin of strains within which unloading does not accompanied kinematic hardening. The basic concept of the scheme is introduced and the methodology and the relevant step by step algorithm to implement this scheme are presented. This scheme has been incorporated in the UNSW bounding surface model and implemented in a finite difference code and used to simulate cyclic triaxial tests as well as complicated monotonic and dynamic boundary value problems. The satisfactory performance of the scheme is demonstrated and its efficiency is discussed thorough these simulations.
机译:本文提出了一种可以用来克服过冲效应的新方案,这是在边界表面可塑性模型应用于边值问题的数值分析过程中发生的众所周知的问题之一。该方案基于具有特定应变余量的加载表面云的定义,在该特定应变范围内,卸载不会伴随运动硬化。介绍了该方案的基本概念,并介绍了实现该方案的方法和相关的逐步算法。该方案已被结合到UNSW边界曲面模型中,并以有限差分代码实现,并用于模拟循环三轴试验以及复杂的单调和动态边界值问题。通过这些仿真证明了该方案的令人满意的性能,并讨论了其效率。

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