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首页> 外文期刊>Journal of Constructional Steel Research >Shear behaviour and design of doubly symmetric hollow flange beam with web openings
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Shear behaviour and design of doubly symmetric hollow flange beam with web openings

机译:用网口开口剪切行为与双对称空心法兰梁的设计

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摘要

Cold-Formed Steel (CFS) sections are extensively used in structural engineering applications replacing the conventional hot-rolled sections due to their inherent advantages. Web openings are generally placed in CFS floor joists and bearers to accommodate the building services, which leads the reduction of floor height. The web openings significantly influence the shear behaviour and reduce the shear capacity. However, very limited research studies have been conducted on hollow flange CFS beams with web openings under shear load. Therefore, this study presents a detailed Finite Element (FE) investigation of the shear behaviour of CFS doubly symmetric Rectangular Hollow Flange Beams (RHFBs) with unreinforced circular web openings. Non-linear FE models were created and validated using the laboratory shear test results. A detailed parametric study was then carried out by extending the validated FE models for doubly symmetric RHFBs with circular web openings. In total,126 FE models were investigated with different geometric parameters including section depth, thickness, material strength and web opening sizes to observe their behaviour on shear strength. The results showed that the existing shear strength design equations are either unsafe or conservative for doubly symmetric RHFBs with unreinforced circular web openings. Therefore, new Direct Strength Method (DSM) based shear design rules are proposed to estimate the shear strength of doubly symmetric RHFBs with unreinforced circular web openings in conjunction with proposed shear reduction factor (q(s)).
机译:冷成型钢(CFS)部分广泛用于结构工程应用,由于其固有的优点而取代传统的热轧部分。 Web开口通常被放置在CFS地板托梁和承载中,以适应建筑服务,这导致楼层高度的减小。网口开口显着影响剪切行为并降低剪切容量。然而,在带有剪切载荷下的卷材开口的中空法兰CFS梁上进行了非常有限的研究研究。因此,本研究提出了一种详细的有限元(FE)对CFS双对称的矩形空心凸梁(RHFB)的剪切行为进行了不合因的圆形网开口的调查。使用实验室剪切测试结果创建和验证非线性FE模型。然后通过将验证的FE模型延长具有圆形网路开口的双重对称RHFBS来执行详细的参数研究。总共调查了126个FE模型,采用不同的几何参数,包括段深度,厚度,材料强度和卷材开口尺寸,以观察其对剪切强度的行为。结果表明,现有的剪切强度设计方程是不安全或保守的,用于双对称的圆形网路开口。因此,提出了新的直接强度方法(DSM)基于剪切设计规则,以估计与所提出的剪切减小因子(Q(S))结合使用未原始的圆形网开口的双对称RHFB的剪切强度。

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