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Analytical prediction of seismic behavior of RC joints and columns under varying axial load

机译:轴向荷载变化下钢筋混凝土节点和柱的抗震性能分析预测

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In this study, an analytical model for predicting nonlinear behavior of exterior reinforced concrete (RC) beam column joints under varying axial load was developed. The main focus was given on the assessment of the effect of axial load variations on the response of RC joints and columns. During seismic actions, overturning moments are produced by lateral loads that are translated as axial loads in the columns. It leads to compressive axial force on one side of the structure along with tensile on the opposite. It can overwhelm nonlinear behavior associated with axial, flexural, shear stresses of RC columns and joints. To simulate and evaluate these nonlinearities, a beam- column joint model consisted of rotational springs were developed. The characteristics of joint spring could be computed using principle tensile stress-joint rotation relation (p(t) versus theta(j)) in the joint core depending on the type of the beam bar anchorage. Therefore, for the joints with various beam bar anchorage details, p(t) versus theta(j) relations in the joint core were proposed. A new theoretical methodology was also developed to consider the effect of the axial load variations in determining characteristics of rotational springs. To assess the accuracy and reliability of the analytical model, it was compared through experimental data available in the literature. The results showed that the proposed analytical model could predict the experimental response of poorly detailed RC beam-column joints under varying or constant axial loads with reasonable precision. Furthermore, parametric studies were carried out to highlight the overwhelming effect of axial load variations on RC beam-column joints and columns. The simple analytic procedure would make the model sufficiently suitable for practical applications.
机译:在这项研究中,建立了一个预测模型,用于预测在变化的轴向载荷下外部钢筋混凝土(RC)梁柱节点的非线性行为。主要重点是评估轴向载荷变化对RC节点和柱的响应的影响。在地震作用期间,倾覆力矩是由侧向载荷产生的,侧向载荷转化为圆柱中的轴向载荷。它在结构的一侧导致压缩轴向力,在相反的一侧导致拉伸。它可以压倒与RC柱和节点的轴向,弯曲,剪切应力有关的非线性行为。为了模拟和评估这些非线性,开发了由旋转弹簧组成的梁柱节点模型。接头弹簧的特性可以根据梁杆锚固的类型,使用接头芯中的基本拉伸应力-接头旋转关系(p(t)与theta(j))来计算。因此,对于具有各种梁杆锚固细节的接头,提出了接头芯中的p(t)与theta(j)关系。还开发了一种新的理论方法来考虑轴向载荷变化对确定旋转弹簧特性的影响。为了评估分析模型的准确性和可靠性,通过文献中提供的实验数据对其进行了比较。结果表明,所提出的分析模型能够以合理的精度预测在变化的或恒定的轴向载荷下,细度不佳的RC梁柱节点的试验响应。此外,进行了参数研究以突出轴向荷载变化对钢筋混凝土梁柱节点和柱的压倒性影响。简单的分析程序将使该模型足够适合实际应用。

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