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Axial Strength of Eccentrically Loaded FRP-Confined Short Concrete Columns

机译:偏心受压FRP约束混凝土短柱的轴心强度。

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摘要

This paper presents an experimental program that includes 78 fiber reinforced polymer (FRP)-confined square concrete columns subjected to eccentric loading. The degradation of the axial strength of FRP-confined short concrete columns due to the load eccentricity is investigated in this work. A larger load eccentricity leads to a greater decrease in the axial strength. From the test results, it is found that FRP confinement can cause less strength degradation compared with that of unconfined concrete specimens. For FRP-confined square concrete specimens, the strength enhancement due to FRP confinement increases with increasing load eccentricity. However, the increasing load eccentricity decreases the confinement efficiency for FRP-confined circular concrete specimens. The relationship between the strength of eccentrically loaded FRP-confined square columns and their corner radii is evaluated.
机译:本文提出了一个实验程序,该程序包括78根承受偏心荷载的纤维增强聚合物(FRP)约束的方形混凝土柱。在这项工作中,研究了由于荷载偏心引起的FRP约束混凝土短柱轴向强度的降低。较大的负载偏心率会导致轴向强度的更大降低。从测试结果中发现,与无约束的混凝土试样相比,FRP的约束能引起较少的强度下降。对于FRP约束的方形混凝土试样,由于FRP约束而导致的强度增强随着载荷偏心率的增加而增加。然而,增加的载荷偏心率会降低FRP约束的圆形混凝土试样的约束效率。评估了偏心加载FRP约束的方柱的强度与其转角半径之间的关系。

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