T形截面部分包覆钢-混凝土组合柱的抗震性能
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浙江工业大学土木工程学院

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浙江省自然科学基金资助项目(LY20E080020)


Seismic behavior of partially encased composite (PEC) columns with T-shaped sections
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College of Civil Engineering,Zhejiang University of technology

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The Project Supported by Zhejiang Provincial Natural Science Foundation of China

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    摘要:

    为研究T形截面部分包覆钢-混凝土组合柱(简称T形PEC柱)的抗震性能,进行了轴压比和主钢件构造不同的5根T形PEC柱试件的往复加载试验,包括2根主钢件为实腹钢的PEC柱(简称实腹钢T形PEC柱)和3根主钢件为腹板开孔蜂窝钢的PEC柱(简称蜂窝钢T形PEC柱)。结合有限元分析,考察主钢件腹板开孔、轴压比对T形PEC柱抗震性能的影响。结果表明:5个T形PEC柱试件的最终破坏为柱底附近钢翼缘塑性发展后屈曲、并伴随着附近混凝土压溃,为典型的截面压弯破坏模式;所有柱试件的荷载-位移滞回曲线均较饱满,同一加载级下的3个滞回环几乎重合,表现出良好的抗震耗能能力和承载力稳定性;实腹钢T形PEC柱的变形能力、延性和耗能能力均优于同轴压力下的蜂窝钢T形PEC柱,钢腹板的孔洞大小影响柱性能、但孔洞形式和间距几乎不影响;轴压比增加,T形PEC柱的抗侧刚度和承载力增加,但变形能力、延性、耗能能力均降低;全截面塑性方法和数值积分法均较好地估计了恒定轴力和弯矩共同作用下T形PEC柱的截面抗弯承载力。

    Abstract:

    To study the seismic performance of partially encased composite columns with T-shaped sections (abbreviated as T- PEC columns), five T-PEC column specimens with different axial compression ratios and different construction of main steel components (MSCs) are tested subjected to the cyclic horizontal load. The five specimens included two specimens with MSCs of solid-web steel (abbreviated as SWS T-PEC column), and three specimens with MSCs of honeycomb steel (abbreviated as HS T-PEC columns). Combined with test and finite element (FE) analysis results, the impact of steel web opening and the axial compression ratio on the seismic behavior of T-PEC columns are investigated. The results indicate that all T-PEC column specimens failed near the column base, characterized by elastic-plastic buckling of the steel flange and adjacent concrete crushing, showing typical cross-section compression-bending failure mode. The load-displacement hysteresis curves of all column specimens were full, with the hysteresis loops at the same loading level almost coinciding, indicating good energy dissipation and load-bearing stability. SWS T-PEC column exhibited better deformability, ductility, and energy dissipation capacity compared to the HS T-PEC column under the same axial compression. Furthermore, the size of the web opening will affects the PEC column performance, while the shape and spacing of the web opening have little effect on the performance. As the axial compression ratio increased, the lateral stiffness and lateral resistance capacity of the PEC columns increased, but the deformability, ductility, and energy dissipation capacity decreased. Both full-section plasticity method and numerical integration method provided reasonably accurate estimate on the flexural capacity of the section of the T-PEC columns under the action of compression-bending load.

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  • 收稿日期:2025-03-07
  • 最后修改日期:2025-05-17
  • 录用日期:2025-06-01
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