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Concrete softening effects on the axial capacity of RC jacketed circular columns

机译:混凝土软化对RC夹套圆柱的轴向承载力的影响

摘要

Among the different strengthening techniques to repair RC structures, reinforced concrete (RC) jacketing is one of the most commonly adopted, especially for columns. Its wide application is due to its easy application and relatively reduced cost with respect to other methods (e.g. FRP wrapping, Shape Memory Alloy active confinement). The target of RC jacketing is to increase axial, flexural capacity and ductility of weak existing members by means of two main effects: confinement action provided by the jacket and composite action between external jacket and inner concrete. Different theoretical studies have been carried out to calculate the strength enhancement due to confinement action and most of these are based on the adaptation of classical models for confinement evaluation in RC members. However, experimental investigations on compressive behaviour of RC jacketed sections have shown that the actual axial capacity could be substantially lower than that analytically evaluated with classical confinement models. This fact could be explained by taking into account the presence of tensile stresses developing in the jacket, due to the different dilatation of the inner core and the external jacket. This phenomenon is relevant especially in members where the concrete properties of the jacket are different with respect to those of the core, causing the premature failure of the external layer. This paper presents a simplified approach able to evaluate these effects. In particular RC jacketed circular columns are analysed as case study and the member is studied by considering the different concrete properties of core, jacket and cover. Circumferential and radial stresses are firstly calculated under the assumption of linear elastic behaviour and plane strain state. The model is extended in the non-linear range by adopting a secant constitutive law. Finally, comparisons are made with experimental data available in the literature, showing good agreement and explaining some experimental results.
机译:在修复RC结构的各种加固技术中,钢筋混凝土(RC)护套是最常用的方法之一,尤其是对于柱子。它的广泛应用是由于它易于使用,并且相对于其他方法(例如FRP包裹,形状记忆合金有效封闭)而言,其成本相对降低。 RC护套的目标是通过两个主要作用来提高弱势现有构件的轴向,挠曲能力和延展性:护套提供的约束作用以及外套和内部混凝土之间的复合作用。已经进行了不同的理论研究来计算由于约束作用引起的强度增强,其中大多数是基于经典模型的改编,以进行RC构件的约束评估。但是,对RC夹套截面的压缩行为进行的实验研究表明,实际的轴向承载力可能大大低于经典约束模型的分析评估能力。这一事实可以通过考虑由于内芯和外护套的不同膨胀而在护套中形成的拉应力的存在来解释。这种现象尤其适用于护套的具体特性相对于芯的特性不同而导致外层过早破坏的构件。本文提出了一种能够评估这些影响的简化方法。特别是作为案例研究分析了RC夹套圆柱,并考虑了芯,夹套和覆盖层的不同混凝土特性对构件进行了研究。首先在线性弹性行为和平面应变状态的假设下计算周向和径向应力。该模型通过采用割线本构定律在非线性范围内扩展。最后,与文献中提供的实验数据进行比较,显示出很好的一致性并解释了一些实验结果。

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    Minafò G.; Papia M.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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