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Cyclic Testing of a Buckling Restrained Braced Frame with Unconstrained Gusset Connections

机译:具有无约束角撑板连接的屈曲约束支撑框架的循环测试

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摘要

Buckling restrained braces are intended to yield in both axial tension and compression. The gusset plates connecting them to the adjacent beams and columns are thick and often stiffened to prevent buckling, and as a result increase the stiffness of the beam-to-column connection substantially. The increased stiffness of the beam-to-column connection negatively impacts the seismic performance of the system by: increasing the portion of the base shear force that is resisted by the frame relative to that resisted by the braces; increasing the maximum base shear force that the system is subjected to for a given earthquake motion; and transferring moment to the braces for which they were not designed. Further, failure of gusset welds partly due to the opening and closing of the beam-to-column joint has been observed in recent experiments. To mitigate these effects and increase the efficiency of buckling restrained braced frames, a novel connection where the gusset is only connected to the beam and is offset from the column face is proposed and tested in a three-story frame under quasistatic loading. The connection is shown to accommodate frame drifts as large as 3% and satisfy the buckling restrained brace performance requirements of the 2005 AISC Seismic Provisions for Steel Buildings. Additionally, the portion of base shear force resisted by the braces relative to that resisted by the surrounding frame is shown to be consistent with design assumptions. This connection configuration could be particularly useful for retrofit of seismically deficient moment resisting frames.
机译:屈曲约束的支架旨在产生轴向张力和压缩力。将角撑板连接到相邻梁和柱的角撑板很厚,经常加固以防止屈曲,结果是大大增加了梁柱连接的刚度。梁到柱连接的增加的刚度通过以下方式对系统的地震性能产生负面影响:增加框架抵抗的基础剪力部分相对于支撑抵抗的部分;增加系统在给定地震运动下承受的最大基本剪力;并将力矩传递给未设计的支架。此外,在最近的实验中已经观察到部分由于梁-柱接头的打开和关闭而导致的角撑板焊接失败。为了减轻这些影响并提高屈曲约束的支撑框架的效率,提出了一种新颖的连接方式,其中,角撑板仅连接到梁,并偏离柱面,并在准静态载荷下的三层框架中进行了测试。该连接件可容纳高达3%的框架偏差,并满足2005 AISC钢结构抗震规定中屈曲约束支撑的性能要求。此外,支撑相对于周围框架抵抗的基础剪切力部分显示与设计假设一致。该连接构造对于抗震性不足的抗力矩框架的改造特别有用。

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