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Experimental study on the seismic performance of round-ended hollow piers

机译:圆端空心墩抗震性能试验研究

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To investigate the seismic performance of railway bridge piers with round-ended hollow section, five 1/6-scale specimens were tested under low-cyclic loading. The two variable parameters were the volumetric stirrup ratio and axial load level. The damage evolution, strain response, and plastic hinge behavior were meticulously explored. The load-drift relationship, displacement ductility, strength/stiffness degradation, dissipated energy, and viscous damping were analyzed in depth. The quantification of seismic performance objectives was implemented by displacement ductility based on damage assessment. The relationships among the ductility and strength/stiffness degradation and equivalent damping ratio were regressed using the test data. The experiment and analysis results showed that all specimens suffered flexural failure, with flexural cracks covering nearly two-thirds of the pier height. The plastic hinge region lengthened and moved upwards along the column due to the existence of solid segment, internal chamfer and variable section. The displacement ductility capacity enhanced noticeably with increasing stirrup ratio. The increasing axial compression ratio led to higher initial stiffness and seismic capacity to some extent, but excessive axial load would decrease ductility with premature concrete crushing. Furthermore, the seismic safety of the piers were ensured under a ductility factor limitation of 4.8 required by the current seismic code for railway engineering of China.
机译:为了研究圆形端部空心截面的铁路桥墩的抗震性能,在低周向荷载下测试了五个1/6比例的标本。两个可变参数是体积箍筋比和轴向载荷水平。仔细研究了损伤的演变,应变响应和塑性铰行为。深入分析了载荷-漂移关系,位移延性,强度/刚度降低,耗能和粘滞阻尼。地震性能目标的量化是通过基于破坏评估的位移延展性来实现的。使用测试数据回归了延展性与强度/刚度下降以及等效阻尼比之间的关系。实验和分析结果表明,所有试样都发生了弯曲破坏,弯曲裂缝几乎覆盖了墩台高度的三分之二。由于存在实心段,内部倒角和可变截面,塑料铰链区域加长并沿圆柱向上移动。随着箍筋比的增加,位移延展能力明显提高。轴向压缩比的增加在一定程度上导致了较高的初始刚度和抗震能力,但过大的轴向载荷会降低混凝土过早破碎的延性。此外,在现行中国铁路工程抗震规范要求的延性系数限制为4.8的情况下,确保了码头的地震安全性。

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