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首页> 外文期刊>Advances in Structural Engineering >Web crippling study of rivet fastened rectangular hollow flange channel beams with flanges fastened to supports
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Web crippling study of rivet fastened rectangular hollow flange channel beams with flanges fastened to supports

机译:铆钉固定矩形空心法兰槽梁的腹板瘫痪研究,法兰固定在支架上

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Thin-walled steel hollow flange channel beams are commonly used as joists and bearers in various flooring systems in buildings. A new rivet fastened rectangular hollow flange channel beam was proposed using an intermittently rivet fastening process as an alternative to welded beams. This flexible fastening process allows rectangular hollow flange channel beams to have greater section optimisation, by configuring web and flange widths and thicknesses. In the industrial applications of rectangular hollow flange channel beams as flooring, roofing or modular building systems, their flanges will be fastened to supports, which will provide increased capacities. However, no research has been conducted to investigate the web crippling capacities of rectangular hollow flange channel beams with flanges fastened to supports under two-flange load cases. Therefore, an experimental study was conducted to investigate the web crippling behaviour and capacities of rectangular hollow flange channel beams based on the new American Iron and Steel Institute S909 standard test method. The web crippling capacities were compared with the predictions from the design equations in Australia/New Zealand Standard 4600 and American Iron and Steel Institute S100 to determine their accuracy in predicting the web crippling capacities of rectangular hollow flange channel beams. Test results showed that these design equations are considerably conservative for the end two-flange load case while being unconservative for the interior two-flange load case. New equations are proposed to determine the web crippling capacities of rectangular hollow flange channel beams with flanges fastened to supports. Test results showed that web crippling capacities increased by 78% and 65% on average for the end two-flange and interior two-flange load cases when flanges were fastened to supports. This article presents the details of this web crippling experimental study of rectangular hollow flange channel beam sections and the results.
机译:薄壁钢制空心法兰槽形梁通常用作建筑物中各种地板系统的托梁和承重梁。提出了一种新的采用铆钉紧固的矩形空心法兰槽形梁,该梁采用间歇性铆钉紧固工艺来替代焊接梁。通过配置腹板和法兰的宽度和厚度,这种灵活的紧固过程允许矩形空心法兰槽形梁具有更大的截面优化。在矩形空心法兰槽形梁的工业应用中,如地板,屋顶或模块化建筑系统,其法兰将固定在支撑上,从而提供更大的承载能力。但是,还没有研究来研究矩形法兰的空心法兰槽形梁的腹板屈曲能力,其法兰固定在两法兰载荷情况下。因此,根据新的美国钢铁协会S909标准测试方法,进行了一项实验研究,以研究矩形空心法兰槽形梁的腹板弯曲行为和承载力。将腹板的抗弯能力与澳大利亚/新西兰标准4600和美国钢铁协会S100中的设计方程式的预测值进行比较,以确定它们在预测矩形空心法兰槽形梁的腹板的抗弯能力中的准确性。测试结果表明,这些设计方程对于端部两法兰载荷工况相当保守,而对于内部二法兰载荷工况却不保守。提出了新的方程式来确定将法兰固定在支撑上的矩形空心法兰槽形梁的腹板屈曲能力。测试结果表明,当将法兰固定到支座上时,对于端部两法兰和内部两法兰负载情况,腹板的抗压能力平均提高了78%和65%。本文介绍了矩形中空法兰槽梁截面的腹板瘫痪试验研究的细节和结果。

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