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Cyclic behaviour of UHPC columns with hybrid CFRP/Steel reinforcement bars

机译:具有混合CFRP /钢筋棒的UHPC色谱柱的循环行为

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A new type of reinforced concrete column with ultra-high-performance concrete (UHPC) and hybrid carbon fibre-reinforced polymer (CFRP) and steel bars is proposed in this paper. The CFRP bars with an excellent linear elastic property are used in the columns to enable the expected self-centring capacity. Steel bars with good plastic properties and high ductility UHPC were used to maintain the high energy-dissipation capacity of the columns. Four UHPC columns were tested under reversed cyclic lateral loading; the behaviour of the UHPC columns with hybrid CFRP/steel reinforcement bars was analysed numerically using OpenSees, and the influences of the CFRP bars and axial-load ratio on the seismic behaviour of the columns were analysed. The results indicate that the strain in the longitudinal bars at the ultimate state is a crucial criterion for determining the effectiveness of the CFRP bars. The UHPC columns with the hybrid CFRP/steel reinforcement exhibit both excellent self-centring capacity and good energy dissipation when the design axial-load ratio is less than 0.7. The replacement ratio of the CFRP bars is suggested to be 1/3?2/3 so that the self-centring and energy-dissipation capacity of the UHPC columns with hybrid CFRP/steel reinforcement bars can be balanced.
机译:本文提出了一种具有超高性能混凝土(UHPC)和杂化碳纤维增强聚合物(CFRP)和钢筋的新型钢筋混凝土柱。具有优异的线性弹性性能的CFRP棒用于柱子,以实现预期的自定心能力。使用良好的塑料性能和高延展性UHPC的钢筋用于保持柱的高能耗散能力。在逆转的循环横向载荷下测试四个UHPC柱;使用OpenSees进行数值分析了用杂交CFRP /钢筋棒的UHPC柱的行为,分析了CFRP棒和轴向载量对柱地震行为的影响。结果表明,在最终状态下纵向杆中的应变是用于确定CFRP棒的有效性的重要标准。当设计轴向载荷比小于0.7时,具有混合CFRP /钢钢增强件的UHPC柱具有出色的自定心能力和良好的能量耗散。 CFRP棒的替换比例建议为1/3?2/3,使UHPC柱与混合CFRP /钢筋钢筋的自定心和能量消耗能力平衡。

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