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Cyclic behavior of single shear steel-to-steel screws and powder-actuated fastener connections

机译:单剪切钢对钢螺钉和粉末驱动紧固件连接的循环行为

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An experimental program was undertaken to assess the cyclic performance of screw and powder-actuated fastener connections in light-gage steel to understand their suitability for use in seismic design and other lowcycle fatigue applications. In addition to evaluating commonly used but previously untested steel gages, this study represents a contribution to the field by characterizing the cyclic behavior of powder-actuated fasteners, data which does not currently exist in the literature. Combinations of different fasteners and steel components created nine distinct joints. These joints were composed of steel ranging from 16-gage to 12-gage, with single-lap connections made with No. 10 and No. 12 screws, as well as powder-actuated fasteners, were examined, with goals of comparing peak loads with code formulations and characterizing the hysteretic behavior. Each joint type was subjected to a monotonic displacement protocol, and the load-deformation responses were used to determine an appropriate unified displacement protocol for cyclic testing. The screw joints were then subjected to quasistatic, 0.5 Hz, and 3 Hz cyclic displacement protocols, while the PAF joints were only subjected to the quasistatic cyclic displacement protocol. The peak loads recorded from the tests generally have a close agreement to strength values from code formulations. Typically, increasing the loading rate increased the peak loads recorded. Additionally, from the quasi-static results of the experimental program, finite element modeling parameters for characterizing the cyclic load-deformation backbone, and unloading-reloading response have been derived for the joint configurations.
机译:进行了一个实验计划,以评估轻型钢螺杆和粉末驱动紧固件连接的循环性能,以了解它们适用于地震设计和其他低循环疲劳应用的适用性。除了评估常用但先前未测试的钢材量之外,该研究除了表征粉末致动紧固件的循环行为,该研究对该领域的贡献是对该领域的贡献。不同紧固件和钢结构的组合产生了九个不同的关节。这些接头由16次值为12-Gage的钢组成,采用用No.10和12号螺钉以及粉末驱动紧固件制成的单圈连接,与比较峰值负荷的目标代码配方和特征滞后行为。将每个接合型进行单调位移方案,并且使用负载变形响应来确定适当的统一位移方案进行循环测试。然后对螺杆接头进行Quasistatic,0.5Hz和3Hz循环置换方案,而PAF关节仅受到Quasistatic循环排量方案。从测试中记录的峰值负载通常与代码配方中的强度值密切一致。通常,增加加载速率增加记录的峰值负荷。另外,从实验程序的准静态结果,用于表征循环负载变形骨干的有限元建模参数,并为联合配置导出了卸载重新加载响应。

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