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DESIGN OF BIAXIALLY LOADED SHORT COMPOSITE COLUMNS OF ARBITRARY SECTION

机译:任意截面双向荷载短复合柱设计

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摘要

In this paper, an iterative quasi-Newton procedure based on the Regula-Falsi numerical scheme is proposed for the rapid sectional analysis and design of short concrete-encased composite columns of arbitrary cross section subjected to biaxial bending. The stress resultants of the concrete are evaluated by integrating the concrete stress-strain curve over the compression zone. Exact integral expressions of the stress resultants for both polygonal and circular subsections are derived, and these are used to achieve an efficient and accurate analysis. The stress resultants of the encased structural steel and the steel reinforcing bars are obtained using the fiber element method. A particularly important feature of the present method is the use of the plastic centroidal axes of the cross section as the reference axes of loading in the iterative solution process. This ensures the convergence of the solution process for all cross-sectional conditions. Numerical examples are presented to demonstrate the validity, accuracy, and capability of the proposed method.
机译:该文提出一种基于Regula-Falsi数值方案的迭代准牛顿程序,用于双轴弯曲下任意截面的短混凝土包裹复合柱的快速截面分析与设计。通过对压缩区的混凝土应力-应变曲线进行积分来评估混凝土的应力结果。推导了多边形和圆形小截面的应力合成的精确积分表达式,这些表达式用于实现高效和准确的分析。包覆结构钢和钢筋的应力合成采用纤维单元法得到。本方法的一个特别重要的特点是使用横截面的塑性质心轴作为迭代求解过程中加载的参考轴。这确保了求解过程在所有横截面条件下的收敛性。通过数值算例验证了所提方法的有效性、准确性和能力。

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