Development of a novel shape memory alloy‐based self‐centering precast segmental concrete column

Zhi-Peng Chen, Songye Zhu
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引用次数: 4

Abstract

This study proposes a novel shape memory alloy (SMA)‐based self‐centering (SC) precast segmental concrete column (PSCC). The entire structural system, called SSC‐PSCC, can be constructed via off‐site precasting followed by on‐site assembly. By using connecting SMA bolts and steel angles, wherein SMA and steel elements contribute to SC and energy dissipation (ED) capacities, respectively, SSC‐PSCC is free from post‐tensioned anchorages and wet joints, and the construction or repair process is considerably simplified. The behavior of SSC‐PSCC was systematically studied through refined finite element models (FEMs) that were verified by good agreements with previous testing results. Cyclic behavior was simulated, and SSC‐PSCC exhibits desirable SC and ED capacities. Compared with traditional post‐tensioning (PT)‐based SC‐PSCC, SSC‐PSCC has numerous advantages, including easy construction, quick repair and replacement of ED elements after earthquakes, and free from buckling of ED bars observed in traditional PT‐based segmental columns. Furthermore, parametric studies were conducted to identify several crucial design parameters, such as prestrain in SMA bolts, axial load ratio, and segment reinforcement diameter. Design recommendations are provided on the basis of the results of the parametric studies.
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一种新型形状记忆合金基自定心预制混凝土节段柱的研制
本研究提出了一种新型的基于形状记忆合金(SMA)的自定心(SC)预制混凝土节段柱(PSCC)。整个结构系统,称为SSC - PSCC,可以通过现场预制和现场组装来建造。通过使用连接SMA螺栓和钢角(其中SMA和钢元素分别有助于SC和能量耗散(ED)能力),SSC - PSCC无需后张锚固和湿缝,并且大大简化了施工或修复过程。通过改进的有限元模型(fem)系统地研究了SSC - PSCC的行为,这些模型与先前的测试结果一致。模拟了循环行为,SSC - PSCC表现出良好的SC和ED能力。与传统的基于后张拉(PT)的SC - PSCC相比,SSC - PSCC具有许多优点,包括易于施工,地震后快速修复和更换ED元件,并且在传统的基于PT的节段柱中不会出现ED杆的屈曲。此外,还进行了参数化研究,以确定几个关键的设计参数,如SMA螺栓的预应变、轴向载荷比和分段钢筋直径。设计建议是根据参数研究的结果提出的。
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