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首页> 外文期刊>Journal of Structural Engineering >Posttensioned Energy Dissipating Connections for Moment-Resisting Steel Frames
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Posttensioned Energy Dissipating Connections for Moment-Resisting Steel Frames

机译:用于抗力矩钢框架的后张能耗散连接

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The seismic performance of a posttensioned energy dissipating (PTED) connection for steel frames is investigated analytically and experimentally. The PTED connection incorporates posttensioned high-strength bars to provide a self-centering response along with energy dissipating bars that are able to yield in axial tension and compression. The analytical study involves the development of an equivalent iterative sectional analysis procedure to predict the moment-rotation relationship of the PTED connection. Based on this analytical model, a simple design procedure for PTED connections is described. In the experimental study, a cyclic component test was performed on two energy dissipating bars and a cyclic test was conducted on a large-scale exterior beam-to-column PTED connection. The results of the tests show that the PTED test specimen was able to undergo large inelastic deformations without any damage in the beam or column and without residual drift. The proposed analytical model and design procedure were also validated against the experimental results.
机译:通过分析和实验研究了钢框架后张能耗散(PTED)连接的抗震性能.PTED连接采用后张高强度杆,以提供自定心响应,以及能够在轴向拉伸和压缩下屈服的能量耗散杆。分析研究涉及开发等效迭代截面分析程序,以预测PTED连接的力矩-旋转关系。基于该分析模型,描述了PTED连接的简单设计过程。在实验研究中,对两个耗能棒进行了循环分量测试,并对大型外部梁柱PTED连接进行了循环测试。试验结果表明,PTED试样能够承受较大的非弹性变形,梁柱无损伤,无残余漂移。所提出的分析模型和设计程序也与实验结果进行了验证。

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