Li Chengyu, Liu Qi, Li Gongwen
School of Urban Construction, Wuhan University of Science and Technology, Wuhan 430065, China.
Materials (Basel). 2020 Sep 9;13(18):3986. doi: 10.3390/ma13183986.
Traditional rigid column base connections are damaged to different degrees after an earthquake and the damage is generally nonrecoverable. Thus, the cost of repairing or dismantling is quite high. A new type of slip-friction column base connection is proposed in this paper, which aims to replace the yielding energy dissipation of the traditional column base connection by the sliding friction energy dissipation between the arc endplates, thus achieving the design objective of damage-free energy dissipation. Finite element simulation was conducted to study the hysteretic performance of the proposed connections considering different axial compression ratios. The research indicates that both kinds of the proposed connections show good energy dissipation behavior and the increase of axial compression force can increase the energy dissipation ability. It also shows that the two kinds of connections can achieve the objective of damage-free energy dissipation. For the proposed connection, future research is still needed such as corresponding tests in the laboratory, the effect of the connection on the whole structure, and the re-centering systems for the connections.
传统的刚性柱脚连接在地震后会受到不同程度的损坏,且这种损坏通常是不可恢复的。因此,修复或拆除的成本相当高。本文提出了一种新型的滑移摩擦柱脚连接,旨在通过弧形端板之间的滑动摩擦耗能来取代传统柱脚连接的屈服耗能,从而实现无损耗能的设计目标。进行了有限元模拟,以研究考虑不同轴压比时所提出连接的滞回性能。研究表明,所提出的两种连接均表现出良好的耗能性能,轴向压力的增加可提高耗能能力。研究还表明,这两种连接均可实现无损耗能的目标。对于所提出的连接,未来仍需要开展相关研究,如在实验室进行相应试验、连接对整体结构的影响以及连接的复位系统等。