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首页> 外文期刊>Journal of Constructional Steel Research >Cyclic behavior of T-stub connection to hollow section steel column using TSOBs
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Cyclic behavior of T-stub connection to hollow section steel column using TSOBs

机译:使用Tsobs与空心型钢柱T-stup连接的循环行为

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摘要

The One-side bolts are widely used in the connection of the closed section members in the prefabricated buildings. As a novel type of one-side bolt, T-head Square-neck One-side Bolt has the advantages of the simple structure, the convenient installation, and no need for special installation tools. In this paper, the sub-model for the tension region of the T-stub bolted beam-column connection was selected as the research object, and the cyclic test was conducted on four T-head Square-neck One-side Bolted Connections (TSOBCs) for T-stub to Hollow Section Steel Column (HSSC) and two Traditional High-strength Bolted Connections (THBCs) for comparison. The results of the test including the failure modes, the applied force-displacement hysteretic curves, the applied force-displacement envelope curves, the deformation capacity and ductility, the strength degradation, the stiffness degradation, the energy dissipation, and the strain evolution are discussed and analyzed in this paper. The experimental results denote that: (1) There are two failure modes in the test, mode i, HSSC wall yielding and mode ii, T-stub flange yielding; (2) The initial stiffness and peak bearing capacity of the TSOBCs decreased by 2.5% - 35.6% and 21.7% - 39.4%, respectively, compared with those of the THBCs; (3) When the failure mode ii occurred, the ductility and the equivalent damping coefficient of the TSOBC with vertical mounting holes are 42.5% and 5.4% higher than those of the THBC, respectively. Besides, the plastic deformation, rigid displacement, and bolt offset in the TSOBCs are analyzed using finite element models.
机译:一侧螺栓广泛用于预制建筑物中的封闭部分构件的连接。作为一种新型的单侧螺栓,T头方颈单侧螺栓结构简单,安装方便,无需特殊安装工具。在本文中,选择了T-Stub螺栓柱柱连接的张力区域的子模型作为研究对象,在四个T头方颈单侧螺栓连接(Tsobcs)上进行循环试验。 )对于空心截面钢柱(HSSC)和两个传统的高强度螺栓连接(THBC)进行比较。讨论了试验包括故障模式,施加的力 - 位移滞回曲线,施加的力 - 位移包络曲线,变形能力和延展性,强度降解,刚度降解,能量耗散和应变进化并在本文中分析。实验结果表示:(1)测试中有两种故障模式,模式I,HSSC壁屈服和模式II,T-TUB法兰屈服; (2)与THBC相比,Tsobcs的初始刚度和峰承载能力分别下降2.5% - 35.6%和21.7%-39.4%; (3)当发生故障模式II时,分别具有垂直安装孔的Tsobc的延展性和等效阻尼系数分别比THBC的42.5%和5.4%。此外,使用有限元模型分析Tsobcs中的塑性变形,刚性位移和螺栓偏移。

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