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Analytical prediction of available rotation capacity of cold-formed rectangular and square hollow section beams

机译:矩形和方形空心截面冷弯型钢的有效旋转能力的分析预测

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In this paper, a soft-computing based study aimed to estimate the available rotation capacity of cold-formed rectangular and square hollow section (RHS-SHS) steel beams is described and novel mathematical models based on neural network (NN) and genetic expression programming (GEP) are proposed. In order to develop the proposed formulations, a wide experimental database obtained from available studies in the literature has been considered. The data used in the NN and CEP models are arranged in a format of eight input parameters covering both geometrical and mechanical properties such as width, depth and wall thickness of cross section, inside corner radius, yield stress, ratio of modulus of elasticity to hardening modulus, ratio of the strain under initial hardening to yield strain and shear length. The accuracy of the proposed formulations is verified against the experimental data and the rates of efficiency and performance are compared with those provided by analytical semi-empirical formulation developed by some of the Authors in a previous study. The proposed prediction models proved that the NN and CEP methods have strong potential for predicting available rotation capacity of cold-formed RHS-SHS steel beams.
机译:在本文中,基于软计算的研究旨在估算冷弯矩形和方形空心截面(RHS-SHS)钢梁的可用旋转能力,并且基于神经网络(NN)和遗传表达式编程的新型数学模型(GEP)。为了开发提出的制剂,已经考虑了从文献中可获得的研究中获得的广泛的实验数据库。 NN和CEP模型中使用的数据以八个输入参数的格式排列,这些参数涵盖了几何和机械特性,例如宽度,截面的深度和壁厚,内角半径,屈服应力,弹性模量与硬化率模量,初始硬化时的应变与屈服应变的比和剪切长度。对照实验数据验证了所提出配方的准确性,并将效率和性能的比率与某些作者在先前研究中开发的分析半经验配方所提供的比率进行了比较。所提出的预测模型证明,NN和CEP方法在预测冷弯RHS-SHS钢梁的可用旋转能力方面具有强大的潜力。

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