Cyclic Softened Membrane Model for Nonlinear Finite Element Analysis of Concrete Structures

T. Hsu, M. Mansour, Y. Mo, J. Zhong
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引用次数: 6

Abstract

This paper describes how a Cyclic Softened Membrane Model (CSMM) was developed to rationally predict the cyclic shear responses of reinforced concrete (RC) elements, including the pinching effect in the hysteretic loops, the shear stiffness, the shear ductility and the energy dissipation capacities. This CSMM model was verified by the tests of fifteen RC panels at the University of Houston. The test results confirmed that the orientation of the steel bars and the percentage of steel in a panel are the two most important variables that influence the cyclic response of RC panel elements. Using OpenSees as a framework, the concept of the CSMM was simplified from a 2-D model into a 1-D model and implemented into a finite fiber element program for the prediction of concrete frame structures subjected to cyclic or dynamic loading. The developed program is validated by the reversed cyclic load tests of a reinforced concrete column and by the shake table tests of a prestressed concrete frame. The CSMM has recently been implemented into an OpenSees-based finite element program for a 2-D RC element that will allow structural engineers to predict the monotonic, cyclic and dynamic responses of structures containing walls. This 2-D RC element is validated in this paper by the prediction of the monotonic responses of two RC panels subjected to shear stresses.
混凝土结构非线性有限元分析的循环软化膜模型
本文介绍了如何建立循环软化膜模型(CSMM)来合理预测钢筋混凝土(RC)构件的循环剪切响应,包括滞回环中的捏缩效应、剪切刚度、剪切延性和耗能能力。该CSMM模型通过休斯顿大学的15块钢筋混凝土面板的试验得到了验证。试验结果表明,钢筋的取向和钢在面板中的比例是影响RC板单元循环响应的两个最重要的变量。使用OpenSees作为框架,将CSMM的概念从二维模型简化为一维模型,并将其实现为纤维有限元程序,用于预测混凝土框架结构在循环或动态载荷下的受力情况。通过钢筋混凝土柱的反循环荷载试验和预应力混凝土框架的振动台试验,验证了该方案的有效性。CSMM最近被应用到基于opensees的二维RC单元有限元程序中,该程序将允许结构工程师预测含墙结构的单调、循环和动态响应。本文通过对两块RC板在剪切应力作用下的单调响应的预测,验证了该二维RC单元的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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