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Modeling of cyclic joint shear deformation contributions in RC beam-column connections to overall frame behavior

机译:钢筋混凝土梁柱连接中整体节点行为的循环节点剪切变形贡献建模

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In seismic analysis of moment-resisting frames, beam-column connections are often modeled with rigid joint zones. However, it has been demonstrated that, in ductile reinforced concrete (RC) moment-resisting frames designed based on current codes (to say nothing of older non-ductile frames), the joint zones are in fact not rigid, but rather undergo significant shear deformations that contribute greatly to global drift. Therefore, the "rigid joint" assumption may result in misinterpretation of the global performance characteristics of frames and could consequently lead to miscalculation of strength and ductility demands on constituent frame members. The primary objective of this paper is to propose a rational method for estimating the hysteretic joint shear behavior of RC connections and for incorporating this behavior into frame analysis. The authors tested four RC edge beam-column-slab connection subassemblies subjected to earthquake-type lateral loading; hysteretic joint shear behavior is investigated based on these tests and other laboratory tests reported in the literature. An analytical scheme employing the modified compression field theory (MCFT) is developed to approximate joint shear stress vs. joint shear strain response. A connection model capable of explicitly considering hysteretic joint shear behavior is then formulated for nonlinear structural analysis. In the model, a joint is represented by rigid elements located along the joint edges and nonlinear rotational springs embedded in one of the four hinges linking adjacent rigid elements. The connection model is able to well represent the experimental hysteretic joint shear behavior and overall load-displacement response of connection subassemblies.
机译:在抗弯框架的地震分析中,梁柱连接通常使用刚性接头区域进行建模。但是,已经证明,在基于当前规范设计的延性钢筋混凝土(RC)矩矩框架中(更不用说较旧的非延性框架),接缝区域实际上不是刚性的,而是承受较大的剪切力的导致整体漂移的变形很大。因此,“刚性接头”假设可能会导致对框架整体性能特征的误解,并可能导致对构成框架构件的强度和延性要求的计算错误。本文的主要目的是提出一种合理的方法来估算RC连接的滞后接头剪切行为,并将该行为纳入框架分析中。作者测试了四个受地震型侧向荷载作用的RC边梁-柱-平板连接组件。基于这些测试和文献中报道的其他实验室测试,研究了滞后关节剪切行为。提出了一种采用改进的压缩场理论(MCFT)的分析方案,以估算节理剪应力与节理剪应变的关系。然后建立了一个能够明确考虑滞后接头剪切特性的连接模型,用于非线性结构分析。在该模型中,关节由沿关节边缘定位的刚性元件和嵌入在链接相邻刚性元件的四个铰链之一中的非线性旋转弹簧表示。连接模型能够很好地表示实验滞后接头的剪切行为和连接子组件的整体载荷-位移响应。

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