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Behaviour of LiteSteel Beams Subject to Combined Shear and Bending Actions

机译:LiteSteel光束的行为受到组合剪切和弯曲动作

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This paper presents the details of a numerical study of a cold-formed steel beam known as LiteSteel Beam (LSB) subject to combined shear and bending actions. The LSB sections are produced by a patented manufacturing process involving simultaneous cold-forming and electric resistance welding. They have a unique shape of a channel beam with two rectangular hollow flanges. To date, however, no investigation has been conducted into the strength of LSB sections under combined shear and bending actions. Hence a numerical study was undertaken to investigate the behaviour and strength of LSBs subject to combined shear and bending actions. In this research, finite element models of LSBs were developed to simulate the combined shear and bending behaviour and strength of LSBs. They were then validated by comparing their results with test results and used in a parametric study. Both experimental and finite element analysis results showed that the current design equations are not suitable for combined shear and bending capacities of LSBs. Hence improved design equations are proposed for the capacities of LSBs subject to combined shear and bending actions.
机译:本文介绍了被称为LiteSteel光束(LSB)的冷成型钢束的数值研究的细节,该钢丝束(LSB)受到组合剪切和弯曲动作。 LSB部分由涉及同时冷成型和电阻焊接的专利制造工艺生产。它们具有具有两个矩形空心凸缘的通道梁的独特形状。然而,迄今为止,在合并剪切和弯曲行动下,没有调查LSB部分的强度。因此,进行了数值研究,以研究LSB受到组合剪切和弯曲行动的行为和强度。在这项研究中,开发了LSB的有限元模型来模拟LSB的组合剪切和弯曲行为和强度。然后通过将它们的结果与测试结果进行比较并用于参数研究来验证它们。两个实验和有限元分析结果表明,电流设计方程不适用于LSB的组合剪切和弯曲能力。因此,提出了改进的设计方程,用于对组合剪切和弯曲动作进行LSB的容量。

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