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Self-centering post-tensioned energy dissipating (PTED) steel frames for seismic regions.

机译:用于地震区域的自定心后张拉耗能(PTED)钢框架。

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摘要

This doctoral dissertation is aimed at contributing to the development of post-tensioned steel structures by proposing a moment-resisting connection that incorporates high strength post-tensioned steel elements along with energy dissipating bars. The most significant characteristic of these Post-Tensioned Energy Dissipating (PTED) connections is their capacity to ensure small residual drifts through self-centering properties, even when significant inelastic transient deformations are mobilized during cyclic loading. In addition, these connections can be designed to provide the desired amount of energy dissipation.; Experimental investigations on energy dissipation bars, a large-scale test on an exterior connection and a 0.45-scale test on a frame assembly were carried out to validate the PTED concept, and to demonstrate that these connections were capable of achieving stiffness and strength characteristics comparable to traditional welded moment-resisting connections. A series of numerical models, including an iterative sectional analysis procedure, a nonlinear rotational spring model and an axial spring model accounting for the beam depth were proposed. These models were validated against experimental results.; The dynamics of single-degree-of-freedom (SDOF) systems exhibiting the flag shaped hysteresis characterizing PTED connections was investigated by studying the frequency response under sinusoidal excitation. Results from nonlinear time-history dynamic analyses on hysteretic self-centering SDOF systems indicated that the seismic response of these systems can be similar to the response of elastoplastic hysteretic systems. Based on results from these nonlinear time-history analyses, a design procedure for PTED frames was proposed. Numerical analyses on MDOF frames first designed as welded moment resisting frames and then as PTED frames following the proposed design procedure indicated that, under code level seismic loading, the maximum interstory drifts and maximum accelerations of these two types of systems are very similar. However, unlike the welded frames which sustained considerable residual drifts along their height, the PTED frames sustained only limited residual drifts in the first story. The work presented in this dissertation suggests that the proposed PTED connections offer a viable alternative to welded moment resisting frames in seismic regions.
机译:该博士论文旨在通过提出一种将高强度后张拉钢构件与消能棒结合在一起的抗力矩连接,为后张拉钢结构的发展做出贡献。这些张紧后的耗能(PTED)连接的最显着特征是它们具有通过自定心特性来确保小的残余漂移的能力,即使在循环载荷过程中动员了显着的非弹性瞬态变形时也是如此。另外,这些连接可以设计成提供所需的能量耗散量。对消能棒进行了实验研究,对外部连接进行了大规模测试,并在框架组件上进行了0.45比例测试,以验证PTED的概念,并证明这些连接能够获得可比的刚度和强度特性。到传统的焊接抗力矩连接。提出了一系列数值模型,包括迭代截面分析程序,非线性旋转弹簧模型和考虑梁深度的轴向弹簧模型。这些模型已针对实验结果进行了验证。通过研究正弦激励下的频率响应,研究了表现出表征PTED连接的旗形磁滞的单自由度(SDOF)系统的动力学。滞后自定心SDOF系统的非线性时程动力学分析结果表明,这些系统的地震响应可以类似于弹塑性滞后系统的响应。基于这些非线性时程分析的结果,提出了PTED帧的设计程序。对MDOF框架的数值分析首先按照建议的设计程序设计为焊接抗力矩框架,然后设计为PTED框架,表明在代码级地震荷载下,这两种类型的系统的最大层间漂移和最大加速度非常相似。但是,与焊接框架沿其高度承受相当大的残余漂移不同,PTED框架在第一层中仅承受有限的残余漂移。本文提出的工作表明,所提出的PTED连接为地震地区的抗弯矩框架提供了可行的替代方案。

著录项

  • 作者

    Christopoulos, Constantin.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 286 p.
  • 总页数 286
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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