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Flexural behaviour of concrete-filled CHS X-joints with curved chord under out-of-plane bending

机译:面外弯曲下带弯曲弦的CHS X轴混凝土关节的抗弯性能

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This paper presents experimental and numerical investigations on empty and concrete-filled circular hollow section (CHS) X-joints with curved chord under out-of-plane bending. A total of 16 specimens were fabricated by hot-rolled bending the chord members into curvature with three different radii to apply out-of-plane bending to the brace members, in which 6 specimens were tested with empty curved chord, 6 specimens were tested with concrete filled in the curved chord only, and 4 traditional empty and concrete-filled CHS X-joints with straight chord were also tested for comparison. The typical failure modes, axial load-vertical displacement curves, bending moment-chord deformation curves, bending moment-rotation curves and strain distribution curves of all specimens are reported. The effects of curvature radius of chord member and concrete filled in the chord member on the joint strength and behaviour under out-of-plane bending were evaluated. It is shown from the comparison that the ultimate strengths of the CHS X-joints with curvature radius of chord less than 12d(0) under out-of-plane bending are closer to those of the traditional CHS X-joints with straight chord with the increase of the curvature radius of chord member. Whereas, the ultimate strengths of the CHS X-joints with curvature radius of chord less than 12d(0) under out-of-plane bending are generally similar to those of the traditional CHS X-joints with straight chord. Furthermore, the out-of-plane flexural behaviour of CHS X-joints are improved with the increase of the p ratio. Whereas, filling the concrete in the chord member cannot enhance the ultimate strengths of CHS X-joints under out-of-plane bending. The joint strengths obtained from the experimental investigation are compared with the design strengths calculated using the current design rules for traditional CHS X-joints with straight chord under out-of-plane bending, which were demonstrated to be quite conservative. In addition, the corresponding finite element analysis was also performed and calibrated against the test results. The design equations are proposed based on the test and numerical results for empty and concrete-filled CHS X-joints with curved chord under out-of plane bending, which were verified to be more accurate. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了在平面外弯曲下带弯曲弦的空心混凝土空心X截面(CHS)X节点的实验和数值研究。通过热轧将弦杆构件弯曲成具有三个不同半径的曲率以对支撑构件施加平面外弯曲,总共制作了16个样本,其中6个样本用空弯曲的弦进行测试,6个样本用3个弯曲半径进行测试。还对仅在弯曲弦中填充混凝土进行了测试,并测试了4个传统的空的和混凝土填充的直弦CHS X关节以进行比较。记录了所有试样的典型破坏模式,轴向载荷-竖向位移曲线,弯矩-弦变形曲线,弯矩-旋转曲线和应变分布曲线。评估了弦杆构件的曲率半径和填充在弦杆构件中的混凝土对面外弯曲下的接缝强度和性能的影响。从比较中可以看出,在平面外弯曲情况下,弦曲率半径小于12d(0)的CHS X接头的极限强度更接近于传统的直弦的CHS X接头的极限强度。增加弦杆曲率半径。而在平面外弯曲的情况下,弦曲率半径小于12d(0)的CHS X接头的极限强度通常与传统的直弦CHS X接头的极限强度相似。此外,CHS X接头的面外弯曲行为随着p比的增加而改善。然而,在面构件中填充混凝土不能提高CHS X形接头在平面外弯曲下的极限强度。将实验研究获得的接头强度与使用当前设计规则计算的传统CHS X形接头在平面外弯曲下的直弦的设计强度进行比较,这被证明是相当保守的。此外,还进行了相应的有限元分析,并根据测试结果进行了校准。在试验和数值结果的基础上,提出了平面弯曲下空和混凝土弯曲弯管CHS X型接头的设计方程,经验证,该方程更为精确。 (C)2017 Elsevier Ltd.保留所有权利。

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