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Web crippling tests of rivet fastened rectangular hollow flange channel beams under two flange load cases

机译:两个法兰荷载作用下铆钉固定矩形空心法兰槽梁的腹板瘫痪试验

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摘要

Recent research on hollow flange beams has led to the development of an innovative rectangular hollow flange channel beam (RHFCB) for use in floor systems. The new RHFCB is a mono-symmetric structural section made by intermittently rivet fastening two torsionally rigid closed rectangular hollow flanges to a web plate element, which allows section optimisation by selecting appropriate combinations of web and flange widths and thicknesses. However, the current design rules for cold-formed steel sections are not directly applicable to rivet fastened RHFCBs. To date, no investigation has been conducted on their web crippling behaviour and strengths. Hence an experimental study was conducted to investigate the web crippling behaviour and capacities of rivet fastened RHFCBs under End Two Flange (ETF) and Interior Two Flange (ITF) load cases. It showed that RHFCBs failed by web crippling, flange crushing and their combinations. Comparison of ultimate web crippling capacities with the predictions from the design equations in AS/NZS 4600 and AISI S100 showed that the current design equations are unconservative for rivet fastened RHFCB sections under ETF and ITF load cases. Hence new equations were proposed to determine the web crippling capacities of rivet fastened RHFCBs. These equations can also be used to predict the capacities of RHFCBs subject to combined web crippling and flange crushing conservatively. However, new capacity equations were proposed in the case of flange crushing failures that occurred in thinner flanges with smaller bearing lengths. This paper presents the details of this web crippling experimental study of RHFCB sections and the results.
机译:对空心法兰梁的最新研究已导致开发出一种创新的矩形空心法兰槽梁(RHFCB),用于地板系统。新型RHFCB是一种单对称结构型材,是通过将两个抗扭封闭的矩形空心法兰间歇性铆钉紧固到腹板元件上而制成的,这可以通过选择腹板和法兰的宽度和厚度的适当组合来优化截面。但是,当前的冷弯型钢设计规则不适用于铆钉紧固RHFCB。迄今为止,尚未对他们的网络瘫痪行为和优势进行任何调查。因此,进行了一项实验研究,以研究在端部两个法兰(ETF)和内部两个法兰(ITF)载荷情况下铆钉紧固RHFCB的腹板弯曲行为和能力。结果表明,RHFCB会由于腹板瘫痪,法兰压扁及其组合而失效。将最终卷筒纸的压碎能力与AS / NZS 4600和AISI S100中的设计方程式的预测结果进行比较表明,对于ETF和ITF载荷情况下的铆钉紧固RHFCB型材,当前的设计方程式并不保守。因此,提出了新的方程式来确定铆钉紧固的RHFCB的腹板弯曲能力。这些方程式还可以用来预测RHFCB保守地经受腹板压扁和法兰压扁的能力。但是,在法兰破碎失败的情况下,提出了新的容量方程式,这种情况发生在轴承长度较小的较薄法兰中。本文介绍了RHFCB断面的这种网状折断实验研究的细节和结果。

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