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Seismic Behavior of HSS Bracing Members according to Width-Thickness Ratio under Symmetric Cyclic Loading

机译:对称循环荷载作用下HSS支撑构件的宽厚比抗震性能

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This study examined the effect of the width-thickness ratio (w/t ratio) on the seismic behavior of cold-formed hollow structural section (HSS) bracing members. For this purpose, an experimental study was carried out. Quasi-static reversed cyclic loading was applied to the specimens. The loading pattern for the tests was determined based on a nonlinear dynamic time history analysis of a frame under earthquake ground motions (EQGM). For this purpose, a three-story specially concentric braced frame (SCBF) was designed according to the AISC LRFD manual. The analysis results showed that a displacement history during the EQGM experienced by bracing members is symmetric in compression and tension. This symmetry may be due to the strong beams in the SCBF connecting bracing members. According to the AISC LRFD manual these beams should resist the unbalanced force associated with compression and tension forces from the connected bracing members. This study adopted a symmetric loading history in compression and tension. Eleven specimens were made to satisfy the detail requirements specified in the AISC LRFD manual and the AISC HSS connection manual. This study showed that HSS bracing members with a small w/t ratio could not always guarantee larger energy dissipation capacity than those with a larger wit ratio. This was due to early fracture at the slotted end of the bracing members with small w/t ratios.
机译:这项研究检查了宽厚比(w / t比)对冷弯空心结构截面(HSS)支撑构件抗震性能的影响。为此,进行了实验研究。准静态反向循环荷载作用于样品。基于地震地面运动(EQGM)下框架的非线性动态时程分析,确定了测试的加载模式。为此,根据AISC LRFD手册设计了一个三层的特殊同心支撑框架(SCBF)。分析结果表明,支撑构件在EQGM期间经历的位移历史在压缩和拉伸过程中是对称的。这种对称性可能是由于SCBF连接支撑构件中的强梁引起的。根据AISC LRFD手册,这些梁应抵抗与来自连接的支撑构件的压缩力和拉力有关的不平衡力。这项研究采用了对称的压缩和拉伸加载历史。制作了11个样品以满足AISC LRFD手册和AISC HSS连接手册中指定的详细要求。这项研究表明,具有较小w / t比的HSS支撑构件不能始终保证比具有较大wit比的HSS支撑构件具有更大的能量消散能力。这是由于w / t比较小的支撑构件的开槽端部早期断裂所致。

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