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装配式钢内芯-UHPC组合空心柱抗震性能研究
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Investigation on Seismic Performance of a Novel Prefabricated Steel Inner Core-UHPC Composite Hollow Column
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    摘要:

    为适应新型钢-UHPC拱桥的跨越能力、加快施工进度、减轻拱上建筑自重和造价,本文提出了一种新型装配式钢内芯-UHPC组合空心柱以及相应的插承式节点连接构造. 新型柱由空心钢内芯与外部UHPC薄壁层组成,钢内芯可作为UHPC层的内模,同时提供额外的耗能. 介绍了新型立柱及其与承台间连接构造的概念设计,通过设计2∶5的立柱缩尺模型,采用原桥初步设计中最不利轴压比(0.24)进行拟静力试验,研究该立柱的破坏模式、预制立柱界面处连接性能、位移延性、耗能能力、刚度退化、残余变形、曲率分布和钢板应变等. 试验结果表明:试件为弯曲破坏模式,具体为柱底塑性铰区域钢筋钢板屈服,UHPC薄壁层压溃,但节点连接处保持完好,预制与后浇UHPC界面未见裂缝,表明提出的新型装配式连接构造是可靠的. 此外,试件具有较高的等效阻尼比,但试件位移延性稍显不足,主要归因于试验模型钢内芯钢板厚度与UHPC薄壁层厚度不匹配,此外,高轴压比(0.24)也是潜在原因. 其次,基于试验结果验证了有限元模型,并对原型柱开展参数分析,计算结果表明,新型柱随着轴压比的增加,延性降低,轴压比在0.05~0.20范围内,原型柱延性系数均接近或大于3. 本研究成果可为后续钢内芯-UHPC立柱的设计与应用提供基础.

    Abstract:

    In this paper, a novel prefabricated steel inner core-UHPC composite hollow column with a pocket connection is proposed for a novel super long-span steel-UHPC arch bridge to accommodate the span length, accelerate the construction, and reduce the self-weight and cost. The column consists of a steel inner hollow section and an exterior UHPC shell. The steel inner core can serve as the formwork of the column and provide an additional energy dissipation source. The design concept of the column and the connection details are first presented, followed by a detailed experimental program. To be specific, a 2/5-scale column was designed based on the preliminary design of the novel arch bridge and tested under the most unfavorable axial load ratio (0.24) in a pseudo-static manner to investigate the seismic performance of the proposed column, including the damage pattern, the connection performance at the interface of the prefabricated column, displacement ductility, energy dissipation capacity, stiffness degradation, residual deformation, curvature distribution and strains of the steel inner core. The test results showed that the proposed column failed in a flexural manner, including the yielding of the steel inner core and reinforced bars and crushing of the UHPC shell in the plastic hinge region; the joint remained intact and no visible crack was observed at the interface between precast and post-cast UHPC, indicating the proposed column with the pocket connection is reliable. In addition, the tested column had large equivalent damping ratios but low displacement ductility, mainly due to the mismatch between the thickness of the steel core plate and the thickness of the UHPC thin wall layer. The large axial load ratio (0.24) could be another potential cause. Moreover, the experimental results were used to validate a numerical model, on which a parameter study was performed on the novel column from the prototype bridge. The results show that the increase in the axial load ratio will result in a reduction in the ductility ratio. When the axial ratio varies between 0.05 and 0.2, the ductility coefficient of the prototype column is generally close to or larger than 3.0. The research results can provide the basis for the subsequent design and application of steel inner core-UHPC columns.

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邵旭东 ,赵相如 ,伍隋文 ?,邵宗暄 ,何广 .装配式钢内芯-UHPC组合空心柱抗震性能研究[J].湖南大学学报:自然科学版,2025,52(5):1~16

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  • 在线发布日期: 2025-06-09
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