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Seismic response of steel fibre reinforced concrete beam-column joints

机译:钢纤维混凝土梁柱节点的地震反应

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The present research work aims to investigate numerically the behaviour of steel fibre reinforced concrete beam-column joints under seismic action. Both exterior and interior joint types were examined and 3D nonlinear finite element analyses were carried out using ABAQUS software. The joints were subjected to reversed-cyclic loading, combined with a constant axial force on the column representing gravity loads. The joints were initially calibrated using existing experimental data - to ascertain the validity of the numerical model used - and then parametric studies were carried out using different steel fibre ratios coupled with increased spacing of shear links. The aim was to assess the effect of introducing steel fibres into the concrete mix in order to compensate for a reduced amount of conventional transverse steel reinforcement and hence lessen congestion of the latter. This is particularly useful for joints designed to withstand seismic loading as code requirements (e.g. Eurocode 8) lead to a high amount of shear links provided to protect critical regions. The spacing between shear links was increased by 0%, 50% and 100%, whilst the fibre volume fraction (V_f) was increased by 0%, 1%, 1.5%, 2% and 2.5%. Potential enhancement to ductility, a key requirement in seismic design, was investigated as well as potential improvements to energy absorption and confinement. The work also examined key structural issues such as strength, storey drift, plastic hinges formation and cracking patterns.
机译:本研究工作旨在以数值方式研究钢纤维增强混凝土梁柱节点在地震作用下的行为。检查了外部和内部关节类型,并使用ABAQUS软件进行了3D非线性有限元分析。关节承受反向循环载荷,并在柱子上承受代表重力载荷的恒定轴向力。最初使用现有的实验数据对接缝进行校准-确定所用数值模型的有效性-然后使用不同的钢纤维比率以及增加的剪切力间距进行参数研究。目的是评估将钢纤维引入混凝土混合物中的效果,以补偿常规横向钢筋的减少量,从而减轻后者的拥挤。这对于设计用于承受地震载荷的接头特别有用,因为规范要求(例如,欧洲规范8)会导致提供大量的剪切链环来保护关键区域。剪切链节之间的间距增加了0%,50%和100%,而纤维体积分数(V_f)则增加了0%,1%,1.5%,2%和2.5%。研究了延展性的潜在增强,这是抗震设计的关键要求,还研究了潜在的能量吸收和约束改进。这项工作还检查了关键的结构问题,例如强度,层间漂移,塑料铰链的形成和开裂模式。

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