首页> 外文会议>World conference on earthquake engineering >DESIGN EQUATIONS FOR EVALUATION OF STRENGTH AND DEFORMATION CAPACITY FOR UNSTRENGTHENED AND FRP STRENGTHENED RC RECTANGULAR COLUMNS UNDER COMBINED BIAXIAL BENDING AND AXIAL LOAD
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DESIGN EQUATIONS FOR EVALUATION OF STRENGTH AND DEFORMATION CAPACITY FOR UNSTRENGTHENED AND FRP STRENGTHENED RC RECTANGULAR COLUMNS UNDER COMBINED BIAXIAL BENDING AND AXIAL LOAD

机译:设计方程,用于评估不经过强化和FRP的强度和变形能力,加强双轴弯曲和轴向载荷下的RC矩形柱

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When assessing the seismic performance of existing reinforced concrete buildings designed according to obsolete codes, one can identify potentially dangerous situations that could result in catastrophic failures. A typical inadequacy lies in the so-called "strong beam-weak column" situation: columns are no so strength to force plastic hinge formation in beams and, if this is extended to all columns at a given floor, can lead to the development of a soft-storey mechanism. Such weaknesses should be eliminated by upgrading all weak columns in the zones of potential formation of plastic hinges so to increase their flexural capacity and to force plastic hinge formation in the beams. With this aim one or more layers of FRP could be wrapped longitudinally along the column at the end zones. Nevertheless, the flexural strengthening can reduce the elements deformation capacity. This paper, starting from previous authors works propose a simplified procedure for the assessment of flexural strength and deformation capacity of rc unstrengthened and FRP strengthened reinforced concrete rectangular columns. Approximate closed form equations are developed by which the flexural strength and section ultimate curvature are evaluated as a function of the normalized acting axial load and the geometrical and mechanical sections parameter. The proposed approach is compared with a fibre approach.
机译:在评估根据过时的规范设计现有的钢筋混凝土建筑的抗震性能,可以鉴定可能导致灾难性的故障潜在的危险情况。一个典型的不足之处就在于所谓的“强梁弱柱”的局面:列没有那么强,迫使塑性铰形成的梁和,如果这是在给定的地板扩展到所有列,可导致发展软层高的机制。这些弱点应该通过升级在塑性铰的潜在形成的区所有弱列,以便增加其抗弯能力,并迫使梁塑性铰的形成被淘汰。与此目标FRP的一个或多个层可以沿纵向在端部区域中的柱缠绕。尽管如此,抗弯加固可减少元件的变形能力。本文从前人的作品开始提出的抗弯强度和RC未加固和玻璃钢加固钢筋混凝土矩形柱的变形能力的评估简化程序。近似闭合形式的方程被开发,通过该挠曲强度和节极限曲率评价为归一化作用的轴向荷载的函数,并且所述几何和机械部分的参数。所提出的方法与纤维方法相比。

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