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首页> 外文期刊>International journal of steel structures >Cyclic Seismic Performance of Weak-Axis RBS Welded Steel Moment Connections
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Cyclic Seismic Performance of Weak-Axis RBS Welded Steel Moment Connections

机译:弱轴RBS焊接钢矩节点的循环抗震性能

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摘要

In this study, cyclic seismic performance of weak-axis reduced beam section (RBS) welded steel moment connections was experimentally investigated. Experimental results of this study again showed that the weak-axis RBS moment connection designed based on the procedure proposed by Gilton and Uang (J Struct Eng 122:1292-1299, 2002) performs well and developed an excellent seismic performance much better than 4% story drift with 80% of beam plastic capacity. However, it was also shown that the sharp corner of C-shaped fillet weld, used for attaching the beam web to the shear plate, can be the origin of crack propagation owing to stress concentration there. Slight trimming of the sharp corner is recommended to reduce notch effect. One specimen in this study eventually failed due to low cycle fatigue fracture as a result of cyclic flange local buckling that occurred at the butt joint between the beam flange and the horizontal continuity plate. The size of the weld access hole beneath the butt joint should be minimized if possible to suppress the occurrence of flange local buckling around the butt joint. The factors affecting the size of C-shaped fillet weld and the beam shear eccentricity for the weld design were also examined through a case study and simple analytical modeling. The sectional factor governing the beam shear eccentricity was shown to be the plastic section modulus ratio of beam section at RBS center to the beam flanges at welded joint. The elastic method neglecting the ductile behavior of the C-shaped fillet weld group was shown to be too conservative and should not be used in design in order to minimize welding heat affection to the thin beam web as well.
机译:在这项研究中,通过实验研究了弱轴减小梁截面(RBS)焊接钢弯矩连接的循环抗震性能。这项研究的实验结果再次表明,基于Gilton和Uang(J Struct Eng 122:1292-1299,2002)提出的程序设计的弱轴RBS力矩连接性能良好,并且抗震性能远远优于4%故事漂移达到梁塑性能力的80%。但是,还表明,由于将梁腹板附着到剪力板上,C形角焊缝的尖角可能是应力集中的原因,是裂纹扩展的根源。建议稍微修剪锐角以减少刻痕效果。在这项研究中,一个试样最终由于低周疲劳断裂而失败,这是由于在梁翼缘和水平连续板之间的对接处出现了周期性翼缘局部屈曲。如果可能的话,应将对接接头下方的焊接孔的尺寸减至最小,以抑制凸缘在对接接头周围局部弯曲。通过案例研究和简单的分析模型,还研究了影响C形角焊缝尺寸和梁剪切偏心度对焊接设计的影响因素。控制梁剪切偏心率的截面系数显示为RBS中心的梁截面与焊接接头处的梁法兰的塑性截面模量比。弹性方法忽略了C形角焊缝组的延展性,结果显示过于保守,因此在设计中不应使用该方法,以最大程度地减小对薄梁腹板的焊接热影响。

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