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Using statistical methods to determine the load-bearing capacity of rectangular CFST columns

机译:使用统计方法确定矩形CFST柱的承载能力

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摘要

In the current practice of construction and design of transport facilities, structures with external reinforcement are commonly used which effectively resist compression. The use of steel-concrete and composite structures enables us to reduce material consumption and cost of structures significantly. There are a few established approaches used to evaluate the load-bearing capacity of steel-concrete structures under axial and eccentric compression, each being based on the initial prerequisites, which underlie the calculation formulas. In this paper, the functional relationship of the value of the maximum load-bearing capacity of rectangular concrete-filled steel tubular (CFST) columns under axial compression with the random eccentricity is plotted. A regression model is proposed based on the methods of mathematical statistics, which allows for the evaluation of the impact of geometrical and physical characteristics of rectangular CFST columns on the value of their load-bearing capacity. The correspondence of the obtained model to the experimental data, as well as the significance of the regression parameters are confirmed by Fisher and Student criteria.
机译:在运输设施的建设和设计的当前实践中,通常使用具有外部加强件的可有效抵抗压缩的结构。钢-混凝土和复合结构的使用使我们能够显着降低材料消耗和结构成本。有几种既定的方法可用来评估钢混凝土结构在轴向和偏心压力下的承载能力,每种方法都基于初始前提,这些前提是计算公式的基础。本文绘制了矩形钢管混凝土柱(CFST)的最大承载力值与随机偏心率的函数关系。基于数学统计方法,提出了一种回归模型,该模型可以评估矩形CFST柱的几何和物理特性对其承载能力值的影响。所获得的模型与实验数据的对应关系以及回归参数的重要性已通过Fisher和Student标准进行了确认。

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