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Experimental Study on Composite Action in Reinforced Concrete-Filled Steel-Tube Shaft Foundations

机译:钢管混凝土竖井地基中复合作用的试验研究

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摘要

A single enlarged shaft foundation is often used to support bridge columns. In some conditions, it is constructed with a permanent steel casing, which is typically ignored in calculating the structural resistance of the shaft. This study investigated the contribution of this steel casing to the structural resistance and seismic response of single shaft foundations. The composite action between the steel casing and the interior reinforced concrete shaft was investigated. A series of six cyclic large-scale tests were conducted on cantilevering shafts of 50.8- and 76.2-cm diameters with heights of 5.2 and 7.6 m, respectively, with reinforced concrete columns at their top. Different interface conditions were applied to the specimens, which included the natural bond, grease, bentonite slurry, and use of shear mechanisms. In addition to the different interface conditions, the effects of the diameter-to-thickness ratio (D:t) and applied axial load were also considered. The composite behavior of the tested specimens and the plastic hinge development under large deformations were investigated and compared to results from plastic moment calculations.
机译:通常使用单个扩大的轴基础来支撑桥柱。在某些情况下,它由永久钢制外壳构成,在计算轴的结构阻力时通常会忽略它。这项研究调查了这种钢套管对单轴基础的结构抗力和地震响应的贡献。研究了钢壳与钢筋混凝土内部轴之间的复合作用。在直径分别为5.2和7.6 m的50.8-cm和76.2-cm的悬臂轴上进行了一系列的六个循环大型测试,顶部是钢筋混凝土柱。样品采用了不同的界面条件,包括自然粘结,油脂,膨润土浆料和剪切机制的使用。除了不同的界面条件外,还考虑了直径与厚度之比(D:t)和施加的轴向载荷的影响。研究了试样的复合性能和大变形下塑性铰的发展,并将其与塑性弯矩计算的结果进行了比较。

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