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Modeling of gravity-designed RC sub-assemblages subjected to lateral loads

机译:重力作用下承受侧向荷载的RC子组件的建模

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This paper aims to propose numerical models for seismic assessment of old existing RC beam-column sub-assemblages. In particular, two modeling approaches are described: for internal (usually named "C joints") and for external (named "T joints") beam-column sub-assemblages, both designed only for vertical loads without reinforcing details rules (such as inadequate bars lap splice, absence of hoops within the joint panel). They were developed starting from the failure mechanisms observed during an experimental campaign carried out on specimens reproducing old existing RC sub-assemblages cast in full and reduced scale, as well as reinforced with smooth longitudinal bars. The proposed models are not time-consuming with respect to both modeling and computational efforts, and do not require any calibration procedure from an experimental data set. They may be easily implemented in a general-purpose finite element program since merely based on geometrical and mechanical properties of RC elements. The numerical predictions show a good agreement with the experimental ones demonstrating that the proposed models are able of reproducing the lateral response of the two considered sub-assemblages typologies, in terms of both failure mechanism and hysteretic dissipative capacity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文旨在提出一种数值模型,用于对旧的现存的RC梁柱子组合进行地震评估。特别是,描述了两种建模方法:用于内部(通常称为“ C型接头”)和用于外部(称为“ T型接头”)梁柱子组合件,它们都仅设计用于垂直载荷而没有加强细节规则(例如不充分)条搭接,接头面板内没有箍。它们是根据在试验过程中观察到的破坏机理而开发的,该实验过程是对标本进行再现的,该标本再现了以完整比例和缩小比例铸造的旧的现有RC子组件,并使用光滑的纵向钢筋进行了加固。所提出的模型在建模和计算工作方面都不费时,并且不需要来自实验数据集的任何校准程序。由于仅基于RC元件的几何和机械特性,它们可以在通用有限元程序中轻松实现。数值预测表明与实验结果吻合良好,表明所提出的模型能够在破坏机理和滞回耗散能力方面再现两种考虑的子组合类型的横向响应。 (C)2016 Elsevier Ltd.保留所有权利。

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