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Computational modelling of the cyclic behaviour of short rubberized concrete-filled steel tubes

机译:短橡胶混凝土钢管循环行为的计算模型

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In this paper, the mechanical behaviour of short rubberized concrete-filled steel tubular (RuCFST) columns with square cross-section under combined cyclic bending and (monotonic) compression is studied numerically. For this purpose, dynamic explicit analyses with kinetic energy control (for the quasi-static behavior to be obtained) using the commercial finite element modelling package ABAQUS were performed. Firstly, a brief introduction and literature review on the topic is made. Then, the numerical models are described in detail with emphasis on the modelling of the materials (natural aggregate concrete (NAC), rubberized concrete (RuC) and steel) under cyclic loading. An in-depth presentation of the numerical results is made afterwards. It includes firstly a verification of the models by comparison of the numerical results with their experimental counterparts, the latter previously obtained by the authors. Secondly, a numerical study on the effectiveness of RuC on the energy dissipation capacity of CFST columns under lateral cyclic loading is performed. It is concluded that the models yield similar results regarding stiffness, maximum loads, load-displacement curves and failure modes as those obtained experimentally, with RuC leading to a moderate reduction (of up to 2%) of the strength of the columns. Regarding the energy dissipation capacity of the columns, it is concluded that RuC generally leads to a reduction of this property (of circa 2.5% per each 5% of rubber aggregates replacement). The lower strength and stiffness of the RuC mixes designed for this study compared to NAC are found to generally offset the benefit of their lower brittleness in increasing the energy dissipation capacity of the columns.
机译:在本文中,在数值上研究了在组合循环弯曲和(单调)压缩下用方形横截面的短橡胶混凝土填充钢管(RUCFST)柱的力学行为。为此目的,进行使用商业有限元建模包ABAQU的动态显式分析(对于要获得的准静态行为)。首先,对该主题进行了简短的介绍和文献综述。然后,详细描述了数值模型,重点是在循环加载下的材料(天然骨料混凝土),橡胶混凝土(RUC)和钢)的建模。之后进行了数字结果的深入呈现。首先包括通过使用其实验对应物的数值结果比较模型验证模型,后者先前由作者获得。其次,进行了对横向循环加载下CFST柱的RUC对CFST柱能量耗散能力的数值研究。结论是,模型产生类似于实验获得的刚度,最大载荷,负荷 - 位移曲线和失效模式的结果,其中RUC导致柱的强度的温和减少(高达2%)。关于列的能量耗散能力,得出结论,RUC通常导致该物业的减少(每次5%的橡胶骨料替代的大约2.5%)。与NAc相比,为该研究设计的RUC混合物的较低强度和刚度通常抵消其较低脆性在增加柱的能量耗散能力时的益处。

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