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Tensile strength equation for HSS bracing members having slotted end connections

机译:具有开槽端接的HSS支撑构件的抗拉强度方程

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In the previous study, the authors investigated the effect of w/t ratios on the behaviour of bracing members under symmetric cyclic loading in compression and tension. In this study, 11 bracing members with slotted end sections made of cold-formed square hollow structural sections (HSS) were tested. The w/t ratios ranged from 8 to 28. Unlike the test results of other former studies obtained under compression-oriented cyclic loading, the results of this study showed that bracing members having a smaller w/t ratio (< 14) had less deformation and less energy dissipation capacity, and a shorter fracture life compared with other specimens. Such inferior behaviour resulted from early fracture at the slotted end section. This study compares tensile strength obtained from the design equations in the AISC LRFD manual and Eurocode 3 using the actual strengths of the tested specimens. This study found that for preventing early fracture in HSS bracing members, design fracture strength should be larger than design yield strength. Design strength equations are proposed for bracing members in special concentrically braced frames (SCBF). The proposed design equations are verified by experimental tests conducted under symmetric cyclic loading in tension and compression using two HSS bracing members designed according to the proposed equation.
机译:在先前的研究中,作者研究了w / t比对对称构件在压缩和拉伸状态下的支撑构件行为的影响。在这项研究中,测试了11个带有冷弯方形空心结构截面(HSS)制成的带有开槽端部的支撑构件。 w / t比在8到28之间。与以前的其他研究在压缩定向循环载荷下获得的测试结果不同,该研究结果表明,w / t比较小(<14)的支撑构件变形较小。与其他试样相比,其能量消耗能力更小,断裂寿命更短。这种不良行为是由开槽端部的早期断裂引起的。这项研究比较了AISC LRFD手册和Eurocode 3中使用设计公式得出的拉伸强度,并使用了被测样品的实际强度。这项研究发现,为防止高速钢支撑构件早期断裂,设计断裂强度应大于设计屈服强度。针对特殊的同心支撑框架(SCBF)中的支撑构件,提出了设计强度方程。拟议的设计方程是通过在对称和对称的周期性荷载作用下,使用根据拟议方程设计的两个HSS支撑构件,在对称的周期性拉伸和压缩试验中进行的实验验证的。

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