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A new model to simulate joint shear behavior of poorly detailed beam-column connections in RC structures under seismic loads, Part I: Exterior joints

机译:一种新模型,模拟地震荷载作用下钢筋混凝土结构中细部梁柱连接处的接头剪切行为,第一部分:外部接头

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摘要

A new model that can simulate the shear behavior of reinforced concrete connections in structures subjected to seismic loads is proposed. The model uses limiting principal tensile stress in the joint as the failure criteria so that due consideration is given to the axial load on the column. The spring characteristics are based on the actual deformations taking place in the sub-assemblage due to joint shear distortion. The model can be easily implemented in any commercial nonlinear analysis package and does not need any special element or subroutine. The model is more rational than the rotational spring models and at the same time being easier to implement in analysis than the multiple spring models. The formulations to obtain the spring characteristics are given in the paper. Currently the model is used to perform nonlinear static analysis for the joints, however, the same can be utilized for the nonlinear dynamic analysis too with an associated hysteretic rule. Highly promising results are obtained using the proposed model for the cases against which the model is validated. This paper focuses on the modeling of exterior joints. An extension to interior joints will be presented later.
机译:提出了一种可以模拟钢筋混凝土连接结构在地震荷载作用下的剪切特性的新模型。该模型使用接头中的极限主拉伸应力作为破坏准则,以便适当考虑圆柱的轴向载荷。弹簧特性基于接头剪切变形引起的子组件中的实际变形。该模型可以在任何商业非线性分析程序包中轻松实现,并且不需要任何特殊元素或子例程。该模型比旋转弹簧模型更合理,同时比多个弹簧模型更易于分析。本文给出了获得弹簧特性的公式。当前,该模型用于执行关节的非线性静力分析,但是,对于具有关联滞后规则的非线性动力学分析,也可以使用该模型。使用提出的模型对模型进行验证的案例获得了非常有希望的结果。本文着重于外部关节的建模。稍后将介绍内部接头的扩展。

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