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Behavior of high-strength concrete slender columns strengthened with steel fibers under concentric axial loading

机译:同心轴向载荷下钢纤维增强高强混凝土细长柱的性能

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The deflection demand of slender reinforced concrete columns could be magnified substantially due to its interaction with the axial load, i.e., the P-Delta effect. This study experimentally investigated the behavior of ten slender high-strength concrete columns under concentric axial loads. The experimental variables were the amounts of confinement steel and steel fibers. The adopted high-strength concrete material had an average compressive strength of about 100 MPa. When it was reinforced with steel fibers at a volume fraction of 0.75% or more, it showed the characteristics of high performance fiber reinforced concrete, i.e., tensile strain hardening behavior and multiple narrow cracks. The behavior of the slender high-strength columns was evaluated using various performance measures, such as the failure type, peak strength, dilatation, ductility, steel reinforcement strain, and the P-Delta effect. The results showed that all the columns failed significantly due to the adverse P-Delta effect. The inclusion of steel fibers with a volume fraction of 0.75% or more effectively restrained concrete spalling and crushing and also promoted multiple narrow cracking patterns in the column. In particular, the inclusion of a 1.5% volume fraction of steel fibers enabled the column without steel confinement to exhibit comparable behavior to that of the control specimen that was detailed according to current codes of practice. Furthermore, reasonably accurate equations were suggested for predicting the axial strength of the tested slender, high-strength concrete columns. (C) 2018 Elsevier Ltd. All rights reserved.
机译:细长钢筋混凝土柱的挠曲要求由于其与轴向载荷的相互作用,即P-Delta效应而可以大大放大。这项研究通过实验研究了十根细长的高强度混凝土柱在同心轴向载荷下的性能。实验变量是约束钢和钢纤维的数量。所采用的高强度混凝土材料的平均抗压强度约为100 MPa。当用体积分数为0.75%或以上的钢纤维增强时,它表现出高性能纤维增强混凝土的特性,即拉伸应变硬化行为和多个窄裂缝。使用各种性能指标来评估细长高强度柱的性能,例如破坏类型,峰值强度,膨胀,延展性,钢增强应变和P-Delta效应。结果表明,所有的色谱柱均由于不利的P-Delta效应而严重失效。体积分数为0.75%或更高的钢纤维的夹杂物可有效地抑制混凝土剥落和破碎,并促进柱中出现多个狭窄的开裂模式。尤其是,包含1.5%体积分数的钢纤维可使无钢约束的色谱柱表现出与对照试样类似的性能,根据现行操作规范对这种试样进行了详细描述。此外,建议使用合理准确的方程式来预测测试的细长高强度混凝土柱的轴向强度。 (C)2018 Elsevier Ltd.保留所有权利。

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