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Behaviour of stud-to-sheathing fastener connections in LSF walls at elevated temperatures

机译:LSF墙壁在高温下的螺柱 - 护套紧固件连接的行为

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摘要

Light-gauge steel framed (LSF) walls used in low- and mid-rise buildings are usually sheathed with gypsum plasterboard to protect the thin-walled steel studs in fire. The structural failures of these walls in fire are mostly associated with local in-plane shear or pull-through failures at their stud-to-gypsum plasterboard sheathing screw fastener connections. The reductions in the mechanical properties of gypsum plasterboard and cold-formed steel studs at elevated temperatures significantly reduce the strength and stiffness provided by the stud-to-sheathing screw connections, which may lead to premature structural failure of LSF wall studs. Many detailed studies are available on the ambient temperature local in-plane response of stud-to-sheathing connections, however, the studies of both local in-plane and out-of-plane responses of stud-to-sheathing connections at elevated temperatures are limited. Therefore in this study local in-plane shear tests at elevated temperatures and pull-through tests at both ambient and elevated temperatures were conducted to determine the load?displacement behaviour, and capacity and stiffness reduction factors of stud-to-gypsum plasterboard sheathing screw connections. Suitable models of characteristic curves are also proposed to predict the in-plane and pull-through load?displacement responses of these connections at elevated temperatures. The results from this study can be used in advanced numerical analyses to optimize the design of load-bearing LSF walls under fire conditions.
机译:低压钢框架(LSF)墙体用于低和中层建筑物通常用石膏石膏板携带,以保护薄壁钢螺柱着火。火灾中这些壁的结构故障大多在其螺柱到石膏板护套螺杆紧固件连接处与局部面内剪切或拉过滤相关联。高温下石膏板材和冷成型钢螺柱的机械性能的减少显着降低了螺柱 - 护套螺钉连接提供的强度和刚度,这可能导致LSF壁螺柱的过早结构故障。许多详细的研究可用于螺柱向护套连接的环境温度局部内面内响应,然而,在升高温度下,局部内面内和平面外反应的研究是有限的。因此,在这项研究中,在升高的温度和升高的温度下,在升高的温度和拉动试验中进行局部内部剪切试验,以确定载荷行为,以及螺柱 - 石膏石膏板护套螺钉连接的容量和刚度降低因素。还提出了合适的特征曲线模型来预测面内和通过载荷?在升高的温度下这些连接的位移响应。本研究的结果可用于高级数值分析,以优化在火灾条件下的承重LSF墙壁的设计。

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