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首页> 外文期刊>Journal of Constructional Steel Research >Fuse performance on bracing of concentrically steel braced frames under cyclic loading
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Fuse performance on bracing of concentrically steel braced frames under cyclic loading

机译:周期性载荷下同心钢支撑框架的熔断性能

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This paper describes the development of ductile fuse system for steel angle bracings to reduce the seismic demand to the connections of concentrically braced frames. In such type of structure, the connections often need reinforcement to resist the tensile capacity of the bracing to comply with the capacity design procedure recommended by most design codes. In this research, various models of ductile fuses consisting of smoothly reduced angle section are placed on the X-bracing of a braced frame. The fuses are designed to reduce the tensile capacity of braced members to the capacity of the bolted connections. To evaluate the performance of the fuse system, two different thicknesses of single angle members with leg width of 64 mm part of an X-bracing are tested cyclically in a 1.75-m high frame representing a building story. It was observed that the braced frame with fuse could be used to reduce seismic load demand to the connections sufficiently to avoid connection strengthening that would result from the application of the capacity design principles. It was observed that properly designed fuse system in braced frame showed stable hysteretic response under cyclic loading and maintained adequate ductility with a reasonable compromise on the compressive strength of braced members. Finally, based on the study results, most efficient fuse patterns are identified for practical design applications.
机译:本文介绍了用于钢制角撑的可延展熔断器系统的开发,以减少对同心支撑框架连接的地震要求。在这种类型的结构中,连接经常需要加固以抵抗支撑的拉伸能力,以符合大多数设计规范所建议的能力设计程序。在这项研究中,将由平滑减小的角度部分组成的各种型号的延性熔断器放置在支撑框架的X支撑上。熔断器设计用于将支撑构件的抗拉能力降低到螺栓连接的能力。为了评估保险丝系统的性能,在1.75米高的代表建筑故事的框架中,循环测试了两种不同厚度的X支架的支脚宽度为64毫米的单角构件。观察到,带有保险丝的支撑框架可用于充分降低连接的地震载荷需求,从而避免由于容量设计原理的应用而导致的连接加强。观察到,在支撑框架中设计适当的熔断器系统在循环载荷下显示出稳定的磁滞响应,并保持了足够的延展性,同时对支撑构件的抗压强度做出了合理的折衷。最后,根据研究结果,可以确定最有效的保险丝样式,以用于实际设计应用。

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