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Evaluation of the slotted-hidden-gap (SHG) connection for square HSS brace members

机译:Square HSS支架构件的开槽隐藏间隙(SHG)连接的评估

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Hollow structural section (HSS) braces of concentrically braced steel frame structures are often connected using a knife connection, which creates a net area in the brace due to the slot. Tensile rupture of the brace's net section is the controlling failure mode unless reinforcing schemes are utilized. The "Slotted-Hidden-Gap (SHG)" connection, in which a notch is created in the gusset plate to overlap the gross area of the tube to eliminate the net area, represents an attractive alternative to traditional connection reinforcements; however, no design guidelines exist for the SHG connection for square HSS braces. A laboratory testing program and finite element modelling were carried out to determine the minimum overlap length required to develop the yield resistance of a square HSS brace. The test program included monotonic tensile loading tests on short conventionaland SHG connection specimens, and one reversed cyclic loading test on a 4.86 m long brace specimen with SHG connections. An overlap length of 5% of the weld length was sufficient to develop the yield resistance of the braces with SHG connections. For those specimens, the HSS eventually fractured on their gross area away from the connections, after experiencing extensive yielding along their length. Conversely, braces with the conventional connections suffered localised yielding and fracture at the net section. The long brace with SHG connections attained its yield tensile resistance, including a 15% increase due to strain hardening, while sustaining an axial deformation corresponding to a storey drift of 3.14%.(c) 2021 Elsevier Ltd. All rights reserved.
机译:中空结构部分(HSS)具有同心支撑钢框架结构的支架,通常使用刀具连接,该刀具由于槽而在支架中产生净区域。除非利用增强方案,否则支架的净截面的拉伸破裂是控制故障模式。 “开槽隐藏间隙(SHG)”连接,其中在角撑板中产生凹口以与管的总面积重叠以消除网面积,表示传统连接增强剂的有吸引力的替代方案;但是,SHG连接的SHG连接不存在设计指南。进行了实验室测试程序和有限元建模,以确定显性HSS支撑的屈服电阻所需的最小重叠长度。测试程序包括在短常规和SHG连接样品上的单调拉伸负载试验,并在具有SHG连接的4.86米长的支撑试样上反向循环负载试验。焊接长度的5%的重叠长度足以利用SHG连接产生括号的屈服电阻。对于那些标本,在经历沿着它们的长度的广泛产生后,HSS最终会在远离连接的总面积上断裂。相反,具有常规连接的括号在网部分遭受局部屈服和裂缝。具有SHG连接的长支撑率达到其产率拉伸,包括应变硬化引起的15%增加,同时维持对应于3.14%的山坡漂移的轴向变形。(c)2021 elestvier有限公司保留所有权利。

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