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首页> 外文期刊>Journal of structural engineering >Incorporating Frame Action into Seismic Design of Gusset Plates
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Incorporating Frame Action into Seismic Design of Gusset Plates

机译:将框架动作纳入角撑板的地震设计

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摘要

Gusset plates connect the brace and frame in concentrically braced frames (CBFs). Failure at the interface of gusset plates with the beam or column will result in an inability to achieve energy dissipation through brace buckling and yielding of the brace in tension and failure of the connection before the brace. Traditional design methods for the gusset plate beam or column interfaces in CBFs often consider only forces from brace action. Although studies have shown that forces from frame action can be significant, the complex stress distribution in the gusset plate makes it difficult to effectively evaluate their effects. Neglecting or inaccurately evaluating the frame action may result in unreasonable estimation of the forces in gusset plates, leading to failure at the interface connections. In this paper, the brace action and the frame action forces on gusset plates are systematically explored through an experimental test of CBFs. The proposed design method combines two models for brace action and frame action. Finally, the proposed design method is validated against results from CBF experiments. The proposed design method estimates the magnitude and orientation of the gusset plate interface forces with different configurations of CBFs well. (C) 2021 American Society of Civil Engineers.
机译:圆盘板以同心支撑框架(CBFS)连接括号和框架。圆盘板的界面失效具有梁或柱将导致通过支撑和张力张力的支架屈服和支架的括号屈服,并且在支架之前的连接失效。 CBFS中的角撑板梁或柱界面的传统设计方法通常认为只能从支架动作中的力。虽然研究表明,来自框架作用的力可能是显着的,但是角撑板中的复合应力分布使得难以有效地评估它们的效果。忽略或不准确地评估帧动作可能导致角撑板板中力的不合理估计,导致界面连接处的故障。在本文中,通过CBF的实验试验系统地探讨了角撑板上的支撑作用和框架动作力。所提出的设计方法结合了两个模型进行支撑动作和帧动作。最后,验证了CBF实验的结果验证了所提出的设计方法。所提出的设计方法估计CBFS的不同配置的角撑板界面力的幅度和取向。 (c)2021年美国土木工程师协会。

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