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Buckling-restrained brace using round steel bar cores restrained by inner round steel tubes and outer square steel tube

机译:使用受内圆钢管和外方钢管约束的圆钢筋的屈曲约束支撑

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摘要

This study proposes a buckling-restrained brace (BRB) which is composed of round steel bar cores restrained by inner round steel tubes and an outer square steel tube. One advantage of using the round steel bar cores against the steel plates and tubes is that the bar-ends can be connected to the structural members using screw-joints. The cyclic loading tests were conducted on two test specimens to examine the hysteretic performance of the proposed BRBs. Test results revealed the applicability, restraining capacity, and end-coupler performance of the proposed brace. With an increase in the number of contraction allowance zones, efficacy and performance of the brace became more satisfactory. Furthermore, a theoretical method for designing the proposed BRB in a simplified and optimal way is discussed. For the creation of the design guideline, the braces were analyzed comparatively over a wide range of sections, lengths, and different load conditions, which are most suitable for low to mid-rise buildings. It was found that the design is governed by the heaviest components of the brace, and that the pin connection to the frame was a key component for optimal design.
机译:本研究提出了一种屈曲约束支撑(BRB),其由受内部圆形钢管和外部方形钢管约束的圆形钢筋芯组成。使用圆形钢筋芯抵靠钢板和管子的一个优点是,可以使用螺钉接头将钢筋端连接到结构构件。在两个试样上进行了循环荷载试验,以检验所提出的BRB的滞后性能。测试结果显示了所提出的支架的适用性,抑制能力和端部联接器性能。随着收缩允许区域的数量增加,支架的功效和性能变得更加令人满意。此外,讨论了一种以简化和最佳方式设计建议的BRB的理论方法。为了创建设计指南,在不同的截面,长度和不同的荷载条件下对支撑进行了比较分析,这些支撑最适合于中低层建筑。发现设计是由支架的最重的部件支配的,并且与框架的销连接是实现最佳设计的关键部件。

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