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Behavior of Steel Fiber-Reinforced High-Strength Concrete Columns under Uniaxial Compression

机译:钢纤维增强高强混凝土柱的单轴受压性能

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This paper presents tests that were performed on square large-scale steel-fiber-reinforced high-strength concrete (HSC) columns under concentric compression loading. The experimental program was mainly designed to examine the effect of the volumetric steel-fiber ratio on the behavior of reinforced HSC large-scale elements subjected to axial compression loading. The test program was also designed to examine the combined confinement effect of steel fibers and transverse steel reinforcement. Thus, the test variables studied herein are the steel-fiber volumetric ratio and the volumetric ratio, yield strength, and spacing of the transverse steel ties. The results show that adding discrete fibers to HSC mixtures in reinforced concrete columns not only prevents the premature spalling of the concrete cover but also increases the strength and ductility of the axially loaded reinforced member. This behavior was predicted by the proposed fiber-reinforced concrete stress-strain model, which takes into account most of the parameters that influence confinement effectiveness: the concrete strength; the spacing, yield strength, volumetric ratio, and configuration of the transverse reinforcement; the distribution of the longitudinal reinforcement; and the diameter, length, shape, volumetric ratio, and frictional bond strength of the fibers. Predictions were found to be in good agreement with experimental results.
机译:本文介绍了在同心压缩荷载下对方形大型钢纤维增强高强度混凝土(HSC)柱进行的测试。实验程序的主要目的是检验钢纤维体积比对承受轴向压缩载荷的增强型HSC大型构件行为的影响。该测试程序还旨在检查钢纤维和横向钢筋的组合约束作用。因此,本文研究的测试变量是钢-纤维的体积比和体积比,屈服强度以及横向钢带的间距。结果表明,向钢筋混凝土柱中的HSC混合物中添加离散纤维不仅可以防止混凝土表层过早剥落,而且可以增加轴向受力钢筋构件的强度和延展性。所提议的纤维增强混凝土应力-应变模型可预测这种行为,该模型考虑了影响约束有效性的大多数参数:混凝土强度;抗拉强度。横向钢筋的间距,屈服强度,体积比和构型;纵向钢筋的分布;以及纤维的直径,长度,形状,体积比和摩擦粘合强度。发现预测与实验结果非常吻合。

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