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Experimental behavior of precast HSFRC columns in steel socket foundation under cyclic loads

机译:循环荷载下钢制承插式基础上预制HSFRC柱的试验性能

摘要

The present paper aims to investigate the influence of steel fibers on the behavior of high strength precast concrete columns in steel socket foundation under cyclic loading. The experimental program was mainly defined to study the effects of the volume fraction and the type of fibers on the behavior of full-scale precast columns subjected to reversed cyclic horizontal loading under constant axial load. Experimental parameters under investigation were: the transverse reinforcement ratio, the axial load, the fiber type and content as well as the effect of steel-to-concrete bond of rebars in the critical region. The latter was investigated since it could considerably govern the local ductility in terms of curvature and of global displacement of the precast column, especially in presence of fibrous reinforcement.udExperimental results highlight the importance of the stirrup spacing in the critical region as well as the positive effect of fibers on the crack development, by preventing the concrete cover to spall-out at earlier stages. Steel Fiber Reinforced Concrete (SFRC) tends to enhance the structural stiffness, the strength and the dissipated energy.
机译:本文旨在研究钢纤维对循环荷载作用下钢套桩基础中高强度预制混凝土柱性能的影响。该实验程序的主要目的是研究在恒定轴向载荷下,水平比例的预制柱在反向水平循环载荷作用下的行为,对体积分数和纤维类型的影响。所研究的实验参数为:在关键区域,钢筋的横向配比,轴向载荷,纤维类型和含量以及钢与混凝土粘结的影响。对后者进行了研究,因为它可以显着地控制预制柱的曲率和整体位移方面的局部延性,特别是在存在纤维增强的情况下。 ud实验结果突显了关键区域以及内部区域中箍筋间距的重要性。通过防止混凝土覆盖层在早期阶段剥落,纤维对裂缝的发展产生积极影响。钢纤维混凝土(SFRC)倾向于提高结构刚度,强度和耗散能量。

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