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首页> 外文期刊>Journal of Structural Engineering >A computer method for design and M-N-? analysis of prestressed RC cross-sections
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A computer method for design and M-N-? analysis of prestressed RC cross-sections

机译:设计和M-N-?的计算机方法。预应力钢筋混凝土截面的分析

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摘要

This paper presents a computer method for rapid design and moment-curvature analysis of arbitrary-shaped prestressed reinforced cross-sections that are subjected to biaxial bending and axial force. The method shows very good stability in presence of strain softening effect exhibited by the concrete in compression and tension and convergence stability is not affected by the shape of stress-strain relationships of concrete and the type and amount of reinforcements. The effect of the presstressing strain over inelastic behavior of cross-section has been also investigated. The proposed approach has been found to be very effective to determine the complete moment-curvature relationships showing strength reduction beyond the multiple peak points and reveals that the strain softening effect exhibited by the concrete in compression indicates lower bending capacity of cross section and also "snap-back" behavior. The iterative algorithm, proposed herein, to design the steel reinforcement of prestressed RC cross sections under biaxial bending and axial force, as compared to other iterative methods, is very stable, converging rapidly if the initial value of the required reinforcement area is properly selected. In order to illustrate the proposed approach and its accuracy and efficiency, a computer program has been developed and several computational examples are given to validate the numerical methods developed here.
机译:本文提出了一种用于快速设计和弯矩曲率分析的任意形状的预应力增强截面的计算机方法,该截面受双轴弯曲和轴向力作用。该方法在混凝土在压缩和拉伸中表现出应变软化作用的情况下显示出非常好的稳定性,并且收敛稳定性不受混凝土的应力-应变关系的形状以及增强材料的类型和数量的影响。还研究了预应力应变对截面非弹性行为的影响。已经发现,所提出的方法对于确定显示出超过多个峰值强度降低的完整弯矩-曲率关系非常有效,并且揭示出混凝土在压缩中表现出的应变软化效果表明截面的弯曲能力较低,并且-back”行为。与其他迭代方法相比,本文提出的用于在双轴弯曲和轴向力下设计预应力RC截面钢筋的迭代算法非常稳定,如果正确选择了所需钢筋面积的初始值,则收敛很快。为了说明所提出的方法及其准确性和效率,已开发了计算机程序,并给出了一些计算示例来验证此处开发的数值方法。

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