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Pull-through capacities of cold-formed steel roof battens considering loading rate sensitivity

机译:考虑加载速率敏感性的冷弯型钢屋面板的抗拉能力

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Static and fatigue pull-through failures of thin steel roof battens in the vicinity of batten to rafter screw connections are part of the major premature connection failures which lead to severe roof failures during high wind events. As wind speed and thereby wind uplift loading rate on a building roof varies over a wide range, the loading rate which should be used to conduct prototype roof tests is a moot point. Current wind loading standards and guidelines recommend a wider range of loading rates/frequencies in simulating static and cyclic wind loads. This could adversely affect the test results of loading/strain rate sensitive materials. Since cold-formed steels appear to be sensitive to loading rate, it is necessary to investigate the effect of loading rate on both static and fatigue pull-through capacities of cold-formed steel roof battens. Therefore, a series of static and cyclic pull-through tests was conducted at various loading rates on roof battens made of two grades (G300 and G550) and two thicknesses (0.75/0.80 and 0.95/1.00 mm). Test results showed that both static and fatigue pull-through capacities increase with increasing loading rate. To understand the loading rate sensitivity of roof battens, the effect of loading rate on the ultimate tensile strength of cold-formed steels was also investigated through a series of tensile coupon tests. Based on both pull-through and tensile coupon test results, suitable modifications and recommendations have been made to the current pull-through capacity equations and the current Low-High-Low (LHL) cyclic test loading frequency. A suitable material model is also proposed to determine the dynamic mechanical properties of cold-formed steels.
机译:板条到r子螺钉连接附近的薄钢屋顶板条的静态和疲劳穿通故障是主要的过早连接故障的一部分,在过大风事件中会导致严重的屋顶故障。随着风速以及由此引起的建筑物屋顶上的风向上升载荷率在很大范围内变化,应该用于进行原型屋顶测试的载荷率是一个争论点。当前的风荷载标准和指南建议在模拟静态和周期性风荷载时,应采用更大范围的荷载率/频率。这可能会对载荷/应变率敏感材料的测试结果产生不利影响。由于冷弯型钢似乎对加载速率敏感,因此有必要研究加载速率对冷弯型钢屋顶板条的静态和疲劳穿通能力的影响。因此,在由两种等级(G300和G550)和两种厚度(0.75 / 0.80和0.95 / 1.00?mm)制成的屋顶板条上,以不同的加载速率进行了一系列的静态和循环拉拔测试。测试结果表明,静态和疲劳穿通能力都随着负载率的增加而增加。为了了解屋顶板条的加载速率敏感性,还通过一系列拉伸试样试验研究了加载速率对冷弯型钢极限抗拉强度的影响。根据拉拔和拉伸试样测试结果,对当前的拉拔能力方程式和当前的低-高-低(LHL)循环测试加载频率进行了适当的修改和建议。还提出了一种合适的材料模型来确定冷弯钢的动态力学性能。

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