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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Effect of beam-column connection fixity and gravity framing on the seismic collapse risk of special concentrically braced frames
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Effect of beam-column connection fixity and gravity framing on the seismic collapse risk of special concentrically braced frames

机译:梁柱连接固定和重力框架对特殊同心支撑框架地震倒塌风险的影响

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摘要

In concentrically braced frames (CBFs), braces are typically connected at beam-column connections through gusset plates, which also increase the rotational stiffness and moment capacity of the beam-column connection. This fixity provides a reserve lateral force resisting capacity that may improve the seismic collapse capacity of the system, but that is not considered in design. Recently, a new brace connection type has been proposed that does not include a gusset plate that would stiffen and strengthen the beam-column connection. To address the implications of the range of possible connection design alternatives, this paper assesses the effects of the fixity of beam-column connections on the behaviour of three special concentrically braced frames of different heights. The results show that flexural strength and stiffness at the beam-column connections reduces the collapse probability when the gravity framing contribution is ignored, but this influence is minor for low-rise buildings and is typically much less significant than the influence of the gravity framing's stiffness and strength. Simple design recommendations are presented regarding the beam-column connection fixity within the braced bay.
机译:在同心支撑框架(CBF)中,支撑通常通过角撑板在梁柱连接处连接,这也增加了梁柱连接的旋转刚度和弯矩能力。这种固定性提供了一个储备的抵抗横向力的能力,可以提高系统的抗地震倒塌能力,但在设计中并未考虑。近来,已经提出了一种新的撑杆连接类型,其不包括会加固和加强梁柱连接的角撑板。为了解决可能的连接设计替代方案的影响,本文评估了梁柱连接的固定性对三种不同高度的特殊同心支撑框架的性能的影响。结果表明,当忽略重力框架作用时,梁柱连接处的抗弯强度和刚度降低了倒塌的可能性,但是这种影响对于低层建筑而言较小,并且通常比重力框架的刚度影响小得多。和力量。提出了有关支撑托架内梁柱连接固定性的简单设计建议。

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