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Gusset design considering buckling forces in frame and brace action directions: Test and finite element analysis of a self-centering braced frame for verification

机译:考虑框架和支撑作用方向上的屈曲力的角撑板设计:自对中支撑框架的测试和有限元分析,以进行验证

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A steel dual-core self-centering brace (DC-SCB) has been developed to combine both energy dissipation and self-centering properties into a single member for seismic resistance. A strong gusset-weak brace design assures the seismic response of the DC-SCB in earthquakes. In this work, in-plane cyclic tests and finite element analyses were conducted on single story steel frames with the DC-SCB to investigate the performance of corner gusset plates due to the brace axial force (which acts in the direction of the brace) combined with the force from the frame action (which acts in a direction near perpendicular to the brace axial force). Different configurations of gusset plates were used for analyses to develop a design method to consider effects from brace forces and frame action forces. The yielding and buckling forces of a gusset plate in the frame action direction are verified based on a proposed column strip model and buckling coefficient varied with gusset thickness. It is shown to be consistent with the behavior from the tests and finite element analyses with errors in strength of up to 13% for the range of gusset configurations considered.
机译:钢双芯自定心撑杆(DC-SCB)已被开发为将能量耗散和自定心特性组合到一个用于抗震的单个构件中。坚固的角撑板-弱支撑设计可确保DC-SCB在地震中的地震响应。在这项工作中,使用DC-SCB对单层钢框架进行了平面内循环测试和有限元分析,以研究角撑板由于支撑轴向力(沿支撑方向)而产生的性能。受到来自框架作用的力(作用于垂直于支撑轴向力的方向)。角撑板的不同配置用于分析,以开发一种设计方法来考虑支撑力和框架作用力的影响。根据提出的立柱模型,验证了角撑板在框架作用方向上的屈服力和屈曲力,屈曲系数随角撑板厚度的变化而变化。它被证明与测试和有限元分析的行为是一致的,对于所考虑的角撑板配置范围,强度误差高达13%。

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