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Experimental Evaluation of the Seismic Performance of Reinforced Concrete Bridge Columns

机译:钢筋混凝土桥柱抗震性能的试验评估

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摘要

A current focus in earthquake engineering research and practice is the development of seismic design procedures whose aim is to achieve a specified performance. To implement such procedures, engineers require methods to define damage in terms of engineering criteria. Previous experimental research on bridge columns has focused on component failure, with relatively little attention to other damage states. A research program was undertaken to assess the seismic performance of well-confined, circular-cross-section, reinforced concrete bridge columns at a range of damage states. The test variables included aspect ratio, longitudinal reinforcement ratio, spiral reinforcement ratio, axial load ratio, and the length of the well-confined region adjacent to the zone where plastic hinging is anticipated. The progression of damage was similar for all columns. Analysis of the experimental results suggest that key damage states of residual cracking, cover spalling, and core crushing can best be related to engineering parameters, such as longitudinal reinforcement tensile strain and concrete compressive strain, using cumulative probability curves.
机译:地震工程研究和实践的当前重点是抗震设计程序的开发,其目的是实现指定的性能。为了实施此类程序,工程师需要根据工程标准定义损坏的方法。以前对桥柱的实验研究集中在构件失效上,而对其他损坏状态的关注相对较少。进行了一项研究计划,以评估在各种破坏状态下密闭的圆形截面钢筋混凝土桥柱的抗震性能。测试变量包括长宽比,纵向增强比,螺旋增强比,轴向载荷比以及与预期发生塑性铰接区域相邻的密闭区域的长度。损坏的进程在所有列中都是相似的。对实验结果的分析表明,使用累积概率曲线,残余开裂,覆盖剥落和岩心破碎的关键破坏状态最好与工程参数有关,例如纵向钢筋拉伸应变和混凝土压缩应变。

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