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NONLINEAR SEISMIC ANALYSIS OF GRAVITY-DESIGNED RC STRUCTURES

机译:重力式钢筋混凝土结构的非线性地震分析

摘要

This paper illustrates numerical simulations and comparisons with experimental results of existing RC beam-column sub-assemblages reinforced with smooth bars. The specimens reproduce parts of concrete structures designed only for vertical loads without any reinforcing detail rule (such as inadequate bars lap splice, absence of hoops within the joint panel) built in Italy during ‘50s-‘70s. In particular, in this paper is paid attention to the nonlinear models developed for predicting the failure mechanism experimentally observed, taking also into account the bond-slip phenomenon among the longitudinal bars and surrounding concrete. The proposed models are not time-consuming and may be easily implemented in any general-purpose finite element program for numerical simulations of concrete structures. These models represent an useful tool for seismic assessment with a good accuracy of nonductile RC existing structures.
机译:本文说明了数值模拟,并与现有的用钢筋加固的RC梁柱子组件的实验结果进行了比较。这些标本复制了仅在垂直荷载下设计的混凝土结构部件,没有任何加强细节规则(例如钢筋搭接不足,接缝面板内没有箍),都是在50年代至70年代在意大利建造的。特别是,在本文中,我们将注意力集中在开发用于预测实验观察到的破坏机理的非线性模型上,同时还考虑了纵向钢筋与周围混凝土之间的粘结滑移现象。所提出的模型并不费时,并且可以在任何用于混凝土结构数值模拟的通用有限元程序中轻松实现。这些模型代表了非延性RC现有结构的良好准确性,是进行地震评估的有用工具。

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