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A procedure of strain-softening model for elasto-plastic analysis of a circular opening considering elasto-plastic coupling

机译:考虑弹塑性耦合的圆形孔弹塑性分析的应变软化模型

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摘要

A simple numerical procedure of strain-softening model for the elasto-plastic analysis of a circular opening is presented by modifying the procedure proposed by Lee and Pietruszczak (2008). The proposed procedure has two advantages over that of Lee and Pietruszczak (2008). One is that the elasto-plastic coupling can be considered, the other is that the equilibrium equation and compatibility equation need not be expressed with respect to the normalized radius. Through MATLAB programming, the accuracy and validity of the proposed procedure are demonstrated through some examples. The influence of elastic modulus and Poisson's ratio evolution on the distribution of radial displacement and hoop stress, ground response curve (GRC) and plastic radius was investigated, and the results show that, with the decrease of elastic modulus evolutional ratio, the radial displacement, hoop stress and plastic radius all increase. With the increase of Poisson's ratio evolutional ratio, the radial displacement, hoop stress and plastic radius all decrease. As for influence extent, the evolution of elastic modulus has great influence on the radial displacement; and the evolution of Poisson's ratio has smaller influence on the radial displacement, both of them have very slight influence on the hoop stress near the excavation face but greater on the hoop stress near the interface of elastic and plastic region. And both of them have very slight influence on the plastic radius.
机译:通过修改Lee和Pietruszczak(2008)提出的程序,提出了用于圆形开口弹塑性分析的应变软化模型的简单数值程序。与Lee和Pietruszczak(2008)相比,该程序具有两个优点。一个是可以考虑弹塑性耦合,另一个是不需要针对标准化半径表达平衡方程和相容方程。通过MATLAB编程,通过实例验证了所提方法的准确性和有效性。研究了弹性模量和泊松比演化对径向位移和环向应力分布,地面响应曲线(GRC)和塑性半径的影响,结果表明,随着弹性模量演化比的减小,径向位移,环向应力和塑性半径都增加。随着泊松比演化比的增加,径向位移,环向应力和塑性半径均减小。至于影响程度,弹性模量的变化对径向位移有很大的影响。泊松比的变化对径向位移的影响较小,对开挖面附近的环向应力影响很小,而对弹塑性区界面附近的环向应力影响较大。而且它们对塑性半径的影响都很小。

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