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首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Evaluation of performance of non-invasive upgrade strategy for beam-column sub-assemblages of poorly designed structures under seismic type loading
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Evaluation of performance of non-invasive upgrade strategy for beam-column sub-assemblages of poorly designed structures under seismic type loading

机译:地震类型荷载下设计不良的结构的梁柱子组件的非侵入式升级策略性能评估

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摘要

Beam-column sub-assemblages are the one of the most vulnerable structural elements to the seismic loading and may lead to devastating consequences. In order to improve the performance of the poorly/under-designed building structures to the critical loading scenarios, introduction of steel bracing at the RC beam-column joint is found to be one of the modern and implementable techniques. In the present work, a diagonal metallic single haunch/bracing system is introduced at the beam-column joints to provide an alternate load path and to protect the joint zone from extensive damage because of brittle shear failure. In this paper, an investigation is reported on the evaluation of tae influence of different parameters, such as angle of inclination, location of bracing and axial stiffness of the single steel bracing on improving the performance through altering the force transfer mechanism. Numerical investigations on the performance of the beam-column sub-assemblages have been carried out under cyclic loading using non-linear finite element analysis. Experimentally validated numerical models (both GLD and upgraded specimen) have been further used for evaluating the performance of various upgrade schemes. Cyclic behaviour of reinforcement, concrete modelling based on fracture energy, bond-slip relations between concrete and steel reinforcement have been incorporated. The study also includes the numerical investigation of crack and failure patterns, ultimate load carrying capacity, load displacement hysteresis, energy dissipation and ductility. The findings of the present study would be helpful to the engineers to develop suitable, feasible and efficient upgrade schemes for poorly designed structures under seismic loading. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:梁柱子组合件是地震荷载作用中最脆弱的结构元素之一,并可能导致毁灭性后果。为了提高不良/设计欠佳的建筑结构在关键载荷情况下的性能,在钢筋混凝土梁柱节点处引入钢支撑是现代可行的技术之一。在目前的工作中,在梁柱节点处引入了对角金属单斜面/支撑系统,以提供替代的载荷路径,并保护节点区域不受脆性剪切破坏的广泛破坏。本文报道了对不同倾斜角度,支撑位置和单个钢支撑的轴向刚度等不同参数的滑移对通过改变力传递机制来改善性能的影响的评估研究。使用非线性有限元分析,在循环荷载下对梁柱子组合件的性能进行了数值研究。经过实验验证的数值模型(包括GLD和升级样本)已进一步用于评估各种升级方案的性能。结合了钢筋的循环特性,基于断裂能的混凝土模型,混凝土与钢筋之间的粘结滑移关系。该研究还包括裂纹和破坏模式,极限载荷承载能力,载荷位移滞后,能量耗散和延展性的数值研究。本研究的结果将有助于工程师为地震荷载下设计不良的结构开发合适,可行和有效的升级方案。版权所有(C)2016 John Wiley&Sons,Ltd.

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