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Seismic behavior of post-tensioned column base for steel self-centering moment resisting frame

机译:钢自定心矩框架抗张后柱基础的抗震性能

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This paper presents experimental and analytical investigation of cyclic response of a post-tensioned column (PT) base connection. The PT column base connection is designed to eliminate structural damage at column bases in self-centering moment resisting frames (SC-MRFs) under seismic loading; the softening behavior at the connection is provided by gap opening and elongation of PT bars rather than yielding in the column. Additional shear resistance is provided by bolted keeper plates; additional energy dissipation is provided by buckling restrained steel (BRS) plates. To investigate the cyclic behavior of the PT column base connection, a series of PT column base connection subassemblies were subjected to axial load and cyclic lateral displacements. Test parameters included initial post-tension force, initial axial force in column (constant or varying), column size and loading history. Limit states investigated for the PT column base connections included PT bar yielding and fracture of BRS plates. The test results demonstrated that properly designed PT column base connections were able to undergo lateral displacement up to 4% interstory drift while the columns and grade beams remained elastic. Also, the BRS plates showed good energy dissipation capacity by yielding in tension and compression without fracture. Structural damage at column bases was limited to the replaceable fuse BRS plates. In addition, analytical models were developed to predict the moment-rotation relationship of the PT column base connection and showed good correlation with the experimental data.
机译:本文介绍了后张应力柱(PT)基础连接的循环响应的实验和分析研究。 PT柱基连接的设计旨在消除地震荷载作用下自定心抗弯框架(SC-MRF)中柱基的结构损坏;连接处的软化行为是由缝隙的开度和PT棒的伸长而不是在塔中的屈服提供的。螺栓固定的挡土板提供了额外的剪切阻力;屈曲约束钢板(BRS)可提供额外的能量消散。为了研究PT柱基连接的循环特性,对一系列PT柱基连接子组件进行了轴向载荷和循环侧向位移。测试参数包括初始后张力,柱中的初始轴向力(恒定或变化),柱尺寸和加载历史。 PT柱基础连接的极限状态包括PT钢筋屈服和BRS板断裂。测试结果表明,经过适当设计的PT柱基础连接能够承受高达4%的层间位移的横向位移,而柱和坡度梁仍保持弹性。另外,BRS板通过产生拉伸和压缩而没有断裂而显示出良好的能量消散能力。列基座的结构损坏仅限于可更换的保险丝BRS板。此外,建立了分析模型来预测PT柱基连接的弯矩-旋转关系,并显示出与实验数据的良好相关性。

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