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Plastic mechanism and elastic-analytical approaches applied to estimate the strength of an axially compressed-thin-walled channel steel section beam

机译:塑性机制和弹性分析方法用于估算轴向压缩薄壁槽钢截面梁的强度

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摘要

This paper presents the study of an analytical model to estimate the strength of a thin-walled channel steel section beam subjected to axial-compressive loads. The model is based on two different methods of analysis, which are performed by analysing a plastic failure mechanism and elastic behaviour of the beam. These analytical methods can be used to establish plastic-unloading and elastic-inclining-theoretical load-deflection behaviour of the beam. Meanwhile, the axial-compressive strength of the beam is estimated by directly measuring the value of load at an intersection point between two different curves of the theoretical load-deflection behaviour. The accuracy of using this analytical model is also verified by comparing its estimated data of the strength to the one obtained from a number of tests on 38 specimens of thin-walled channel steel section under the test loads of axial compression. It is clearly shown that deviation of the analytical data from the experimental one is still scattered within acceptable limits of ± 20%. A statistical analysis of the scattered data indicates that its mean value is 1.03 with standard deviation of 0.058. This certainly means that the estimated strength, on average, displaces from the actual one by 3% and mostly tends to be conservative.
机译:本文提出了一种分析模型的研究,以估算承受轴向压缩载荷的薄壁槽钢截面梁的强度。该模型基于两种不同的分析方法,它们是通过分析梁的塑性破坏机理和弹性特性来执行的。这些分析方法可用于建立梁的塑性卸载和弹性倾斜理论载荷挠曲行为。同时,梁的轴向抗压强度通过直接测量理论上的载荷挠度行为的两条不同曲线之间的交点处的载荷值来估算。通过将该分析模型的强度估算数据与在轴向压缩试验载荷下对38个薄壁槽钢截面试件进行的多次试验获得的强度估算数据进行比较,也验证了使用此分析模型的准确性。清楚地表明,分析数据与实验数据的偏差仍散布在±20%的可接受范围内。对分散数据的统计分析表明,其平均值为1.03,标准偏差为0.058。这当然意味着估计的强度平均比实际强度高出3%,并且大多趋于保守。

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