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3D finite element modelling of composite connection of RCS frame subjected to cyclic loading

机译:循环荷载作用下RCS框架复合连接的3D有限元建模

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Composite special moment frame is one of the systems that are utilized in areas with low to high seismicity to deal with earthquake forces. Composite moment frames are composed of reinforced concrete columns (RC) and steel beams (S);;therefore, the connection region is a combination of steel and concrete materials. In current study, a three dimensional finite element model of composite connections is developed. These connections are used in special composite moment frame, between reinforced concrete columns and steel beams (RCS). Finite element model is discussed as a most reliable and low cost method versus experimental procedures. Based on a tested connection model by Cheng and Chen (2005), the finite element model has been developed under cyclic loading and is verified with experimental results. A good agreement between finite element model and experimental results was observed. The connection configuration contains Face Bearing Plates (FBPs), Steel Band Plates (SBPs) enveloping around the RC column just above and below the steel beam. Longitudinal column bars pass through the connection with square ties around them. The finite element model represented a stable response up to the first cycles equal to 4.0% drift, with moderately pinched hysteresis loops and then showed a significant buckling in upper flange of beam, as the in test model.
机译:复合特殊弯矩框架是在低至高地震烈度区域处理地震力的系统之一。复合弯矩框架由钢筋混凝土柱(RC)和钢梁(S)组成;因此,连接区域是钢和混凝土材料的组合。在当前的研究中,建立了复合连接的三维有限元模型。这些连接用于钢筋混凝土柱和钢梁(RCS)之间的特殊复合弯矩框架。与实验程序相比,有限元模型是一种最可靠,成本最低的方法。基于由Cheng和Chen(2005)测试的连接模型,有限元模型是在循环荷载作用下开发的,并通过实验结果进行了验证。观察到有限元模型与实验结果之间的良好一致性。连接配置包括紧靠在钢梁上方和下方的RC柱周围的端面支承板(FBP),钢带板(SBP)。纵向柱筋通过带有方形扎带的连接穿过。与测试模型一样,有限元模型在直到第一个周期的漂移(等于4.0%漂移)之前表现出稳定的响应,具有适度收缩的磁滞回线,然后在梁的上凸缘处显示出明显的屈曲。

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