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New pull-out capacity equations for the design of screw fastener connections in steel cladding systems

机译:用于钢覆层系统中螺钉连接设计的新拔出力方程

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In recent times, the roofing systems made of thin and high strength steel roof sheeting and battens or purlins are predominantly used in the construction of low-rise buildings. However, such thin steel roofing systems continue to fail frequently at their screw fastener connections during high wind events such as storms and cyclones due to inadequate connection capacities. Localised pull-out failures occurring at the thin steel roof sheeting to batten or purlin connections have been the root cause for extensive loss of roofing systems under high wind uplift loads over many years. Such premature connection failures often cause partial or even complete loss of steel roofing systems and, thus allowing rainwater to cause severe damage to building contents. Therefore a detailed experimental study was conducted to investigate the pull-out failures occurring at the steel roof sheeting to batten or purlin connections. One hundred and eighty-seven small scale pull-out tests were conducted for this purpose using a range of screw fastener sizes and many thicknesses of thin steel roof battens and purlins. This paper presents the details of this experimental study and the pull-out capacity data obtained from the tests. It then presents suitable design equations and capacity reduction factors to accurately determine the pull-out capacities of screw fastener connections commonly used in steel roofing systems. In the development of design equations, 592 pull-out capacity data obtained from another experimental study at the Queensland University of Technology were also used. The new design equations can also be used for the screw fastener connections in steel wall cladding systems subject to high wind suction loads.
机译:近年来,由薄而高强度的钢屋顶板和板条或pur条制成的屋顶系统主要用于建造低层建筑物。然而,由于连接能力不足,这种薄钢屋面系统在诸如风暴和旋风的大风事件期间,其螺钉紧固件连接继续经常失效。多年来,薄钢板屋顶上与板条或pur条连接处发生的局部拉出故障是导致屋顶系统在高风荷载下大量损失的根本原因。这种过早的连接故障通常会导致钢制屋面系统的部分或什至全部丧失,从而使雨水严重破坏建筑物内的物品。因此,进行了详细的实验研究,以研究发生在钢屋面板与板条或connections条连接处的拉拔破坏。为此,使用了各种尺寸的螺钉紧固件以及许多厚度的薄钢屋顶板条和pur条,进行了187次小规模拉出试验。本文介绍了这项实验研究的细节以及从测试中获得的拉拔能力数据。然后,它提供了合适的设计方程式和容量减小因子,以准确确定钢屋面系统中常用的螺丝连接件的拉出容量。在设计方程式的开发中,还使用了从昆士兰科技大学的另一项实验研究获得的592个拔出能力数据。新的设计方程式还可以用于承受高风载荷的钢壁板系统中的螺丝紧固件连接。

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