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Cyclic tests of post-tensioned precast CFT segmental bridge columns with unbonded strands

机译:无粘结股线后张预应力CFT分段桥柱的循环试验

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Two ungrouted post-tensioned, precast concrete-filled tube (CFT) segmental bridge columns were tested under lateral cyclic loading to evaluate the seismic performance of the column details. The specimens included a load stub, four equal-height circular CFT segments, and a footing. Strands were placed through the column and post-tensioned to provide a precompression of the column against the footing. One specimen also contained energy-dissipating devices at the base to increase the hysteretic energy. The test results showed that (1) both specimens could develop the maximum flexural strength at the design drift and achieve 6% drift with small strength degradation and residual displacement, (2) the proposed energy-dissipating device could increase energy dissipation in the hysteresis loops, and (3) the CFT segmental columns rotated not only about the base but also about the interface above the bottom segment. This study proposed and verified a method to estimate the experimental flexural displacement using two plastic hinges in the segmental column.
机译:在横向循环荷载下测试了两个未注浆的后张预应力混凝土预制管(CFT)分段桥柱,以评估柱细节的抗震性能。标本包括一个测头,四个等高的圆形CFT段和一个基脚。将钢绞线穿过柱子,并进行后张紧,以对柱子进行预压缩。一个标本的底部还装有耗能装置,以增加磁滞能量。测试结果表明:(1)两种试件都可以在设计漂移时产生最大的挠曲强度,并达到6%的漂移,而强度衰减和残余位移较小,(2)所提出的消能装置可以增加磁滞回线中的能量消散,以及(3)CFT分段列不仅绕着基体旋转,而且绕着底部段上方的界面旋转。这项研究提出并验证了一种使用分段柱中的两个塑料铰链估算实验弯曲位移的方法。

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