采用板加强筋提高带腹板开口的唇形槽钢的抗剪能力

K. Poologanathan, M. Mahendran
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引用次数: 3

摘要

冷弯型钢唇形槽钢作为承重结构构件广泛应用于住宅、工业和商业建筑中。当将腹板开口包括在内以定位建筑服务时,它们的抗剪能力大大降低。过去的研究表明,由于含有这些腹板开口,lcb的抗剪能力降低了70%。因此,有必要提高具有腹板开口的lcb的抗剪能力。消除大腹板开口不利影响的一种经济有效的方法是在腹板开口周围附加适当的加强筋,并恢复lcb的原始抗剪强度和刚度。因此,进行了详细的实验研究,以调查具有加劲腹板开口的lcb在剪切和弯曲和剪切联合作用下的行为和强度。采用不同的螺钉紧固方式,将不同尺寸和厚度的板和螺柱加强筋连接到lcb的腹板单元上。宽高比为1.0和1.5的lcb简支试件在跨中加载直至破坏。数值研究也进行了调查的强度与加劲腹板开口lcb。建立了具有加劲腹板开口的lcb在剪切、弯曲和剪切联合作用下的有限元模型,以模拟试验lcb的行为。将所建立的模型与实验结果进行对比验证,并用于进一步的研究。试验和有限元分析结果均表明,以往研究推荐的加筋布置和现有设计准则不足以恢复lcb的原始抗剪强度。在此基础上,提出了一种基于螺纹固定板加劲筋的新型加劲筋布置方式。本文介绍了本研究的细节和结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving the shear capacities of lipped channel beams with web openings using plate stiffeners
Cold-formed steel lipped channel beams (LCB) are used extensively in residential, industrial and commercial buildings as load bearing structural elements. Their shear capacities are considerably reduced when web openings are included for the purpose of locating building services. Past research has shown that the shear capacities of LCBs were reduced by up to 70% due to the inclusion of these web openings. Hence there is a need to improve the shear capacities of LCBs with web openings. A cost effective way of eliminating the detrimental effects of large web openings is to attach suitable stiffeners around the web openings and restore the original shear strength and stiffness of LCBs. Hence detailed experimental studies were undertaken to investigate the behaviour and strength of LCBs with stiffened web openings subject to shear, and combined bending and shear actions. Both plate and stud stiffeners with varying sizes and thicknesses were attached to the web elements of LCBs using different screw-fastening arrangements. Simply supported test specimens of LCBs with aspect ratios of 1.0 and 1.5 were loaded at mid-span until failure. Numerical studies were also undertaken to investigate the strength of LCBs with stiffened web openings. Finite element models of LCBs with stiffened web openings under shear, combined bending and shear actions were developed to simulate the behaviour of tested LCBs. The developed models were then validated by comparing their results with experimental results and used in further studies. Both experimental and finite element analysis results showed that the stiffening arrangements recommended by past research and available design guidelines are not adequate to restore the original shear strengths of LCBs. Therefore new stiffener arrangements were proposed based on screw fastened plate stiffeners. This paper presents the details of this research study and the results.
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