循环荷载作用下非加筋砌体破坏的塑性界面模型

P. Kumar, A. Rajagopal, M. Pandey
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引用次数: 1

摘要

在这项工作中,我们的目标是了解无筋砌体在面内循环荷载下的破坏行为。为此,我们提出了一种基于塑性的界面模型,该模型由单一屈服面准则组成,该准则是Mohr-Coulomb准则的直接扩展,具有拉切和压缩帽,并且在采用的屈服面中引入了背应力矢量作为混合硬化规律变量,以捕捉循环加载下砌体的卸载/再加载行为。采用一种简化的微力学界面建模方法来捕捉砌体的所有破坏模式。采用隐式欧拉后向积分法对微分本构方程进行积分,得到的非线性方程组采用局部/全局牛顿联合求解器求解。通过编写UMAT(用户自定义子程序)在ABAQUS中实现了所提出的本构模型,并将得到的数值结果与文献中已有的实验结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plasticity based interface model for failure modelling of unreinforced masonry under cyclic loading
In this work our objective is to understand the failure behaviour of unreinforced masonry under in-plane cyclic loading. For this purpose we proposed a plasticity based interface model consists of a single yield surface criteria which is a direct extension of Mohr-Coulomb criteria with a tension cut and compression cap and a back stress vector is introduced as a mixed hardening law variable  in the adopted yield surface to capture the unloading/reloading behaviour of masonry under cyclic loading. A simplified micromechanical interface modelling approach is adopted to capture all the failure modes of masonry. The integration of the differential constitutive equation is  done by using implicit Euler backward integration approach and the obtained non-linear set of equations are solved by a combined local/global Newton solver. The proposed constitutive model  is implemented in ABAQUS by writing  UMAT (user-defined subroutine) and the obtained numerical results are compared with  experimental results available in the literature.
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