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首页> 外文期刊>International Journal for Numerical and Analytical Methods in Geomechanics >The role of nonlinear hardening/softening in probabilistic elasto-plasticity
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The role of nonlinear hardening/softening in probabilistic elasto-plasticity

机译:非线性硬化/软化在概率弹塑性中的作用

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The elastic-plastic modelling and simulations have been studied extensively in the last century. However, one crucial area of material modelling has received very little attention. The uncertainties in material properties probably have the largest influence on many aspects of structural and solids behaviour. Despite its importance, effects of uncertainties of material properties on overall response of structures and solids have rarely been studied. Most of the small number of studies on effects of material variabilities have used repetitive deterministic models through Monte-Carlo-type simulations. While this approach might appear sound, it cannot be both computationally efficient and statistically accurate (have statistically appropriate number of data points). Recently, we have developed a methodology to solve the probabilistic elastic-plastic differential equations. The methodology is based on Eulerian-Lagrangian form of the Fokker-Planck-Kolmogorov equation and provides for full description of the probability density function (PDF) of stress response for a given strain. In this paper we describe our development in some details. In particular, we investigate the effects of nonlinear hardening/softening on predicted PDF of stress. As it will be shown, the nonlinear hardening/ softening will create a discrepancy between the most likely stress solution and the deterministic solution. This discrepancy, in fact, means that the deterministic solution is not the most likely outcome of the corresponding probabilistic solution if material parameters are uncertain (and they always are, we just tend to simplify that fact and use, for example, mean values for deterministic simulations). A number of examples will be presented, illustrating methodology and main results, some of which are quite surprising as mentioned above.
机译:在上个世纪,对弹塑性建模和模拟进行了广泛的研究。但是,材料建模的一个关键领域很少受到关注。材料性能的不确定性可能对结构和固体行为的许多方面影响最大。尽管它很重要,但很少研究材料性能不确定性对结构和固体整体响应的影响。关于材料变异性影响的少数研究中,大多数都通过蒙特卡洛型模拟使用了重复性确定性模型。尽管此方法可能听起来不错,但它既不能有效地进行计算,又不能在统计上准确(具有统计上适当数量的数据点)。最近,我们开发了一种方法来解决概率弹塑性微分方程。该方法基于Fokker-Planck-Kolmogorov方程的欧拉-拉格朗日形式,并提供了给定应变的应力响应的概率密度函数(PDF)的完整描述。在本文中,我们将详细描述我们的发展。特别是,我们研究了非线性硬化/软化对应力预测PDF的影响。如图所示,非线性硬化/软化将在最可能的应力解决方案和确定性解决方案之间产生差异。实际上,这种差异意味着,如果材料参数不确定,则确定性解决方案不是相应概率解决方案的最可能结果(而且总是如此,我们只是倾向于简化这一事实并使用例如确定性方法的平均值模拟)。将提供许多示例,说明方法和主要结果,如上所述,其中一些非常令人惊讶。

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