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Strength and ductility evaluation of steel bridge piers with linearly tapered plates

机译:线性锥形板钢桥墩的强度和延性评估

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Important issues on the application of linearly tapered steel plates to highway bridge piers are discussed in this paper based on extensive experimental work. The factors that affect the seismic resisting performance of tapered plate steel columns were examined. The main factors considered are: (1) types of tapering mold line (outer, central, and inside tapering); (2) tapering ratio (or the slope of thickness change); (3) stiffeners' rigidity; and (4) tapered stiffeners. To this end, four groups of specimens were tested under cyclic lateral loads and constant axial load. The columns with the outside taper plates were found to have the best strength and ductility characteristics among the three types of mold lines. In the case of different tapering ratios, the largest ductility was observed in the specimens with the tapering ratio slightly less than or equal to unity. The stiffeners' rigidity ratio of around 3.0 was found to give the best ductility performance in columns with both constant thickness and varying thickness stiffeners. The test results were compared with a recently proposed design equation for limit strain of box columns with tapered plates. Finally, finite element analyses were performed and comparisons between the test and the analyses' results of several test specimens are presented.
机译:在广泛的实验工作的基础上,本文讨论了将线性锥形钢板应用于公路桥墩的重要问题。研究了影响锥形板钢柱抗震性能的因素。考虑的主要因素是:(1)锥形模具线的类型(外部,中央和内部锥形); (2)锥度比(或厚度变化的斜率); (3)加劲肋的刚度; (4)锥形加劲肋。为此,在周期性的横向载荷和恒定的轴向载荷下测试了四组试样。发现在三种类型的模具生产线中,具有外部锥板的柱具有最佳的强度和延展性。在不同的渐缩比的情况下,在渐缩比略小于或等于1的样品中观察到最大的延展性。发现加劲肋的刚度比约为3.0,在具有恒定厚度和变厚度加劲肋的立柱中,可提供最佳延展性。将测试结果与最近提出的设计公式进行了比较,以得出带有锥形板的箱形柱的极限应变。最后,进行了有限元分析,并对测试结果与多个测试样品的分析结果进行了比较。

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