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Hysteretic behaviour of overlapped tubular k-joints under cyclic loading

机译:循环荷载作用下重叠式管状k接头的滞回特性

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Overlapped K-joints arise in truss type structures when one diagonal (overlap brace) intersects the other diagonal (through brace). In such joints, part of the through brace is hidden within the overlap brace, and the hidden toe of the through brace may or may not be welded to the chord. This study investigates the hysteretic behaviour of partially overlapped circular hollow section K-joints, with and without hidden welds, under cyclic loading. This study involved nine full-scale specimens, out of which four specimens had hidden welds. One joint was statically loaded and the remaining eight joints were cyclically loaded until failure. Chord plastification, brace local buckling, and cracking of the brace adjacent to welds were observed in these tests. The hysteretic performance indicators, such as ultimate capacity, joint ductility, energy dissipation, ultimate stiffness, etc., were established, which were then used to understand the hysteretic behaviour of overlapped K-joints. Results show that, compared with static loading, brace cracking occurred more easily under cyclic loading with a reduced joint capacity of up to 7% and a severely decreased ductility. joints with hidden welds may exhibit a higher strength by approximately 10% and an increased hysteretic energy dissipation capacity, but with a reduction in joint ductility. The analysis of strain distributions around the joint zone indicates that, even though the joints with hidden welds experience lower strains, the hidden weld creates an asymmetric strain profile in the joints, which may be a weakness as some locations may become stress raisers leading to crack initiation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:当一个对角线(重叠大括号)与另一个对角线(通过大括号)相交时,重叠的K型接头会出现在桁架型结构中。在这样的接头中,通孔支架的一部分隐藏在重叠支架内,通孔支架的隐藏脚趾可能会或可能不会焊接到弦上。这项研究调查了在循环载荷下有和没有隐藏焊缝的部分重叠的圆形空心截面K型接头的滞后行为。这项研究涉及9个完整标本,其中4个标本具有隐藏的焊缝。一个关节静态加载,其余八个关节循环加载直到失效。在这些测试中,观察到弦的塑化,支架的局部弯曲以及与焊缝相邻的支架的开裂。建立了极限性能,接头延性,能量耗散,极限刚度等滞后性能指标,然后利用这些滞后性能指标了解重叠的K接头的滞后行为。结果表明,与静态载荷相比,在循环载荷下,支臂开裂更容易发生,其结合能力降低了7%,而延展性大大降低。带有隐蔽焊缝的接头可能会表现出更高的强度,约为10%,并增加了滞回能量消散能力,但接头的延展性降低。对接缝区域周围的应变分布的分析表明,即使具有隐藏焊缝的接缝承受的应变较小,隐藏焊缝也会在接缝中产生不对称的应变曲线,这可能是一个弱点,因为某些位置可能会成为导致裂纹的应力源引发。 (C)2018 Elsevier Ltd.保留所有权利。

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