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Seismic performance of beam-column joints with SMA tendons strengthened by steel angles

机译:钢角增强SMA筋梁柱节点的抗震性能

摘要

Shape memory alloys (SMAs) are a class of intelligent materials with unique shape memory property and super-elastic property. These properties enable SMAs to be employed for re-centering and energy dissipative purposes in seismic-resistant structural frame. This paper in particular examines the structural performance of joints between CHS column and I-beam equipped with 12 mm diameter SMA tendons and steel angles. Two full-scale laboratory tests were conducted to investigate (1) the re-centering capability contributed by the SMA tendons and (2) the energy dissipative performance contributed primarily by the steel angles. Parallel numerical and parametric analyses through ANSYS were also conducted. Both experimental and numerical results confirmed the significance of the thickness of the steel angle and the initial prestress on the SMA tendons towards the connection's stiffness, re-centering and energy dissipative performance. A thinner angle resulted in lower connection stiffness and a lower energy dissipative ability, however a promising re-centering capability was guaranteed. Higher initial prestress on the SMA tendons also facilitates the re-centering performance.
机译:形状记忆合金(SMA)是一类具有独特的形状记忆特性和超弹性特性的智能材料。这些特性使SMA可以在抗震结构框架中用于重新定心和耗能的目的。本文特别研究了配备12毫米直径SMA筋和角钢的CHS柱与工字梁之间的连接结构性能。进行了两次全面的实验室测试,以调查(1)SMA筋产生的重新定心能力,以及(2)主要由钢角产生的耗能性能。还通过ANSYS进行了并行的数值和参数分析。实验和数值结果都证实了钢角的厚度和SMA筋上的初始预应力对连接的刚度,重新定心和耗能性能的重要性。较小的角度会导致较低的连接刚度和较低的能量耗散能力,但是可以保证有希望的重新定心能力。 SMA筋较高的初始预应力也有助于重新定心。

著录项

  • 作者

    Wang W; Chan TM; Shao H;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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