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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Experimental investigations of the seismic performance of bridge piers with rounded rectangular cross-sections
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Experimental investigations of the seismic performance of bridge piers with rounded rectangular cross-sections

机译:圆角矩形截面桥墩抗震性能的试验研究

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摘要

Solid piers with a rounded rectangular cross-section are widely used in railway bridges for highspeed trains in China. Compared to highway bridge piers, these railway bridge piers have a larger crosssection and less steel reinforcement. Existing material models cannot accurately predict the seismic behavior of this kind of railway bridge piers. This is because only a few parameters, such as axial load, longitudinal and transverse reinforcement, are taken into account. To enable a better understanding of the seismic behavior of this type of bridge pier, a simultaneous influence of the various parameters, i.e. ratio of height to thickness, axial load to concrete compressive strength ratio and longitudinal to transverse reinforcements, on the failure characteristics, hysteresis, skeleton curves, and displacement ductility were investigated. In total, nine model piers were tested under cyclic loading. The hysteretic response obtained from the experiments is compared with that obtained from numerical studies using existing material models. The experimental data shows that the hysteresis curves have significantly pinched characteristics that are associated with small longitudinal reinforcement ratios. The displacement ductility reduces with an increase in ratio of axial load to concrete compressive strength and longitudinal reinforcement ratio. The experimental results are largely in agreement with the numerical results obtained using Chang-Mander concrete model.
机译:具有圆角矩形横截面的实心桥墩在中国的高速列车的铁路桥梁中广泛使用。与公路桥墩相比,这些铁路桥墩具有较大的横截面和较少的钢筋。现有的材料模型无法准确预测这种铁路桥墩的地震行为。这是因为仅考虑了一些参数,例如轴向载荷,纵向和横向钢筋。为了更好地了解此类桥墩的抗震性能,需要同时考虑各种参数(即高高比,轴向载荷与混凝土抗压强度比以及纵向与横向钢筋)对破坏特性,滞后的影响。 ,骨架曲线和位移延展性进行了研究。总共有9个模型墩在循环荷载下进行了测试。将实验获得的磁滞响应与使用现有材料模型进行数值研究获得的磁滞响应进行比较。实验数据表明,磁滞曲线具有明显的收缩特性,与较小的纵向增强比有关。位移延性随着轴向载荷与混凝土抗压强度之比和纵向增强比的增加而降低。实验结果与使用Chang-Mander混凝土模型获得的数值结果基本一致。

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