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Investigation of major parameters affecting instability of steel beams with RBS moment connections

机译:RBS弯矩连接影响钢梁失稳的主要参数研究

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One of the most promising ways through which a steel moment frame may attain high energy dissipating capability is to trim off a portion of the beam flanges near the column face. This type of moment connection, known as Reduced Beam Section (RBS) connection, has notable superiority in comparison with other moment connection types. As the result of the advantages of RBS moment connection, it has widely being used in practice. In spite of the good hysteretic behaviour, an RBS beam suffers from an undesirable drawback, which is local and lateral instability of the beam. The instability in the RBS beam reduces beam load-carrying capacity. This paper aims to investigate key issues influencing cyclic behaviour of RBS beams. To this end, a numerical analysis was conducted on a series of steel subassemblies with various geometric properties. The obtained results together with the existing experimental data are used to study the instability of RBS beams. A new slenderness concept is presented to control an RBS beam for combined local and lateral instability. This concept is in good agreement with the numerical and experimental results. Finally, a model is developed for the prediction of the magnitude of moment degradation owing to the instability of an RBS beam.
机译:钢制框架可以实现高耗能能力的最有前途的方法之一是修整靠近柱面的部分梁翼缘。与其他力矩连接类型相比,这种矩量连接类型称为减小梁截面(RBS)连接,具有明显的优势。由于RBS力矩连接的优点,它已在实践中被广泛使用。尽管具有良好的滞后性能,但RBS光束仍具有不良的缺点,即光束的局部和横向不稳定性。 RBS梁的不稳定性降低了梁的承载能力。本文旨在研究影响RBS梁循环行为的关键问题。为此,对一系列具有各种几何特性的钢子组件进行了数值分析。将获得的结果与现有的实验数据一起用于研究RBS梁的不稳定性。提出了一种新的细长概念来控制RBS光束,以实现组合的局部和横向不稳定性。这个概念与数值和实验结果非常吻合。最后,开发了一个模型,用于预测由于RBS光束的不稳定性而导致的力矩退化的幅度。

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