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Seismic performance of lap-spliced columns with glass FRP

机译:玻璃纤维增​​强搭接搭接柱的抗震性能

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The present paper represents experimental studies on the seismic performance of reinforced concrete circular columns with lap-splice details using glass fibre reinforced polymer (FRP) wrapping. Five full-scale model columns of 1200 mm diameter and 6550 mm height were classified into one column with no lap-splice, one column with lap-splice and three glass FRP retrofitted columns with lap-splice; those models were conducted by quasi-static cyclic loading test. The prototype structure is an existing circular reinforced concrete bridge pier designed by the following pre-seismic codes and constructed in South Korea in 1979. The lap-spliced column was expected to have a brittle failure owing to the bond-slip of lap-spliced longitudinal reinforcement. The retrofitted columns using glass FRP wrapping showed a significant improvement of seismic performance and developed the stable hysteretic loops. However, from the strain gauge readings, the unyieldingness of lap-spliced longitudinal bars was observed regardless of glass FRP thickness. It is concluded that the displacement ductility factor cannot be defined owing to the unyieldingness of longitudinal bar and the estimated displacement ductility factor should be introduced in order to evaluate the performance of the columns with lap-spliced longitudinal bars. Glass FRP retrofit design methods suggested by other researchers were verified in the experiment and a new modified design method was proposed.
机译:本文代表了对采用玻璃纤维增​​强聚合物(FRP)包裹的搭接细节的钢筋混凝土圆柱抗震性能的实验研究。将五个直径为1200 mm,高度为6550 mm的全尺寸模型柱分为:无搭接的一柱,带搭接的一柱和三根带搭接的玻璃钢加固玻璃柱。这些模型是通过准静态循环荷载试验进行的。原型结构是现存的圆形钢筋混凝土桥墩,该桥墩是按照以下地震规则设计的,并于1979年在韩国建造。由于搭接纵骨的粘结滑移,搭接纵梁预计会发生脆性破坏。加强。使用玻璃纤维增​​强塑料包裹的改型色谱柱显示出抗震性能的显着改善,并形成了稳定的磁滞回线。但是,从应变仪读数来看,无论玻璃FRP厚度如何,都可以观察到搭接纵筋的不屈服性。结论是,由于纵向钢筋的不屈服性,无法确定位移延性因子,因此应引入估算的位移延性因子,以评估搭接纵筋的柱的性能。实验验证了其他研究人员提出的玻璃纤维增​​强塑料改造设计方法,并提出了一种新的改进设计方法。

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