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Computerised interaction diagrams and moment capacity contours for composite steel-concrete cross-sections

机译:钢-混凝土组合截面的计算机交互作用图和弯矩承载力等值线

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摘要

A new incremental-iterative procedure based on the arc-length constraint equation is proposed in order to determine both interaction diagrams and moment capacity contours for composite steel-concrete cross-sections. This procedure adopts a tangent stiffness strategy for the solution of the nonlinear equilibrium equations thus resulting in a high rate of convergence. The proposed approach has been found to be very stable for all cases examined herein even when the section is close to the state of pure compression or tension or when there are multiple solutions, and it is not sensitive to the initial or starting values, to how the origin of the reference loading axes is chosen and to the strain softening exhibited by concrete in compression. Furthermore, the proposed method can be applied to provide directly the ultimate resistances of the cross-section, in the hypothesis that one or two components of the section forces are known, without the need of knowing in advance the whole interaction diagram or moment capacity contour. An object oriented computer program with full graphical interface was developed, aimed at obtaining the ultimate strength of composite cross-sections under combined biaxial bending and axial load. In order to illustrate the proposed method and its accuracy and efficiency, this program was used to study several representative examples, which have been studied previously by other researchers using independent fiber element solutions. The examples and the comparisons made prove the effectiveness and time saving of the proposed method of analysis.
机译:提出了一种新的基于弧长约束方程的增量迭代程序,以确定复合钢-混凝土截面的相互作用图和弯矩承载力轮廓。该过程采用切线刚度策略来求解非线性平衡方程,从而导致较高的收敛速度。已经发现,即使截面接近于纯压缩或拉伸状态或存在多种解决方案,并且对于初始值或初始值对如何变化都不敏感,对于本文所检查的所有情况,所提出的方法也是非常稳定的。选择参考载荷轴的原点,并选择混凝土在压缩时表现出的应变软化。此外,在假设截面力的一个或两个分量是已知的假设下,无需事先知道整个相互作用图或力矩能力轮廓,可以将所提出的方法应用于直接提供横截面的极限阻力。 。开发了具有全图形界面的面向对象的计算机程序,目的是在组合双轴弯曲和轴向载荷下获得复合截面的极限强度。为了说明所提出的方法及其准确性和效率,该程序用于研究几个代表性示例,这些示例以前已由其他研究人员使用独立的纤维单元解决方案进行了研究。通过实例和比较,证明了所提出的分析方法的有效性和省时性。

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