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Cyclic Pull-out Strength of Steel Roof and Wall Cladding Systems

机译:钢屋顶和墙覆层系统的循环抗拉强度

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When crest-fixed thin steel roof cladding systems are subjected to wind uplift, local pull-through or pull-out failures occur prematurely at their screwed connections. During high wind events such as storms and cyclones these localised failures then lead to severe damage to buildings and their contents. In recent times, the use of thin steel battens/purlins has increased considerably. This has made the pull-out failures more critical in the design of steel cladding systems. Recent research has developed a design formula for the static pull-out strength of steel cladding systems. However, the effects of fluctuating wind uplift loading that occurs during high wind events are not known. Therefore a series of constant amplitude cyclic tests has been undertaken on connections between steel battens made of different thicknesses and steel grades, and screw fasteners with varying diameter and pitch. This paper presents the details of these cyclic tests and the results.
机译:当顶部固定的薄钢屋面板系统受到风的抬升时,它们的螺纹连接会过早发生局部拉出或拉出故障。在暴风雨和飓风等强风事件中,这些局部故障会导致建筑物及其财物遭受严重破坏。近年来,薄钢条/ pur条的使用已大大增加。这使得拔出故障在钢覆层系统的设计中更为关键。最近的研究已经开发出用于钢覆层系统的静态抗拉强度的设计公式。但是,尚不清楚在大风事件期间发生的风向上升载荷波动的影响。因此,已经对不同厚度和等级的钢制板条与不同直径和螺距的螺丝紧固件之间的连接进行了一系列恒定振幅循环测试。本文介绍了这些循环测试的详细信息和结果。

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