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Numerical modeling of octagonal concrete-filled steel tubular short columns accounting for confinement effects

机译:八角混凝土钢管短柱占监禁效应的数值模型

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The concrete confinement induced by the steel tube of a concrete-filled steel tubular (CFST) column depends on its cross-sectional shape. The mechanism of confinement in octagonal CFST columns differs considerably from that in circular or square CFST columns. It is therefore important to ascertain the confinement effect in octagonal CFST columns to accurately quantify their behavior. In this paper, a numerical modeling method employing the theory of fiber analysis is presented that can simulate the axial behavior of short octagonal CFST columns that are loaded axially to failure. New constitutive laws of concrete including lateral confining stress model and the residual strength factor for compressive concrete in CFST octagonal columns are developed by interpreting the available test data. The concrete material model is implemented in the computational procedure of nonlinear analysis. The accuracy of various models of lateral confining stresses including the proposed one in this paper is evaluated against test data. The behavior of octagonal CFST stub columns including salient parameters is examined by using the computer program developed. A design equation is suggested for estimating the capacities of octagonal CFST stub columns considering confinement effects. The codified design methods in several international standards for circular CFST columns are evaluated against the test results to investigate their applicability to octagonal CFST columns. The developed material models and computational and design methods are shown to yield computations which are compared well with experimental results of octagonal CFST columns. The current design codes considerably underestimate or overestimate the strengths of octagonal CFST columns.
机译:由混凝土填充钢管(CFST)柱的钢管诱导的混凝土限制取决于其横截面形状。八边形CFST柱的限制机制与圆形或方形CFST柱的相差显着不同。因此,重要的是确定八角形CFST列中的限制效果,以准确量化其行为。本文提出了一种采用光纤分析理论的数值建模方法,其可以模拟轴向加载到故障的短八角形CFST列的轴向行为。通过解释可用的测试数据,开发了CFST八角柱中横向限制应力模型的新组成规律,包括横向限制应力模型和压缩混凝土的残余强度因子。混凝土材料模型是在非线性分析的计算过程中实现的。针对测试数据评估包括本文所提出的各种模型的横向限制应力的准确性。通过使用开发的计算机程序检查包括突出参数的八角形CFST短柱列的行为。建议设计方程来估计考虑监禁效应的八角形CFST短柱的能力。在循环CFST列中的几种国际标准中的编纂设计方法是针对测试结果评估其对八角形CFST列的适用性。显示出开发的材料模型和计算和设计方法显示,产生与八角形CFST柱的实验结果相比的计算。目前的设计代码显着低估或高估了八角形CFST柱的强度。

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