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首页> 外文期刊>Journal of structural engineering >Numerical Modeling of LiteSteel Beams Subject to Shear
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Numerical Modeling of LiteSteel Beams Subject to Shear

机译:LiteSteel梁受剪切力的数值建模

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A LiteSteel beam (LSB) is a new cold-formed steel hollow flange channel beam produced by using a patented manufacturing process involving simultaneous cold-forming and dual electric resistance welding. It has the beneficial characteristics of torsionally rigid closed rectangular flanges combined with the economical fabrication processes from a single strip of high-strength steel. Although the LSB sections are commonly used as flexural members, no research has been conducted on the shear behavior of LSBs. Therefore, experimental and numerical studies were conducted to investigate the shear behavior and strength of LSBs. In this research, finite-element models of LSBs were developed to investigate their nonlinear shear behavior, including their buckling characteristics and ultimate shear strength. They were validated by comparing their results with available experimental results. The models provided full details of the shear buckling and strength characteristics of LSBs and showed the presence of considerable improvements to web shear buckling in LSBs and associated postbuckling strength. This paper presents the details of the finite-element models of LSBs and the results. Both the finite-element analysis (FEA) and experimental results showed that the current design rules in cold-formed steel codes are very conservative for the shear design of LSBs. The ultimate shear capacities from FEAs confirmed the accuracy of proposed shear strength equations for LSBs on the basis of the North American specification and direct strength method (DSM) design equations. Developed finite-element models were used to investigate the reduction to shear capacity of LSBs when full-height web side plates were not used or when only one web side plate was used, and these results are also presented in this paper.
机译:LiteSteel梁(LSB)是一种新的冷弯型钢空心法兰槽形梁,它是采用专利的制造工艺生产的,该工艺涉及同时冷弯和双重电阻焊接。它具有扭转刚性的封闭矩形法兰的优点,并结合了一条高强度钢的经济制造工艺。尽管LSB截面通常用作弯曲构件,但尚未对LSB的剪切行为进行研究。因此,进行了实验和数值研究以研究LSB的剪切行为和强度。在这项研究中,建立了LSB的有限元模型以研究其非线性剪切行为,包括其屈曲特性和极限剪切强度。通过将其结果与可用的实验结果进行比较来验证它们。这些模型提供了LSB的剪切屈曲和强度特性的完整详细信息,并显示了LSB的腹板剪切屈曲和相关的后屈曲强度有相当大的改进。本文详细介绍了LSB的有限元模型及其结果。有限元分析(FEA)和实验结果均表明,对于LSB的剪切设计,冷弯钢规范中的当前设计规则非常保守。 FEA的极限剪切能力在北美规范和直接强度法(DSM)设计方程的基础上证实了LSB拟议的剪切强度方程的准确性。在不使用全高腹板侧板或仅使用一个腹板侧板的情况下,使用已开发的有限元模型来研究LSB的剪切能力降低,这些结果也将在本文中进行介绍。

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