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Effects of stirrup, steel fiber, and beam size on shear behavior of high-strength concrete beams

机译:马镫,钢纤维和光束尺寸对高强度混凝土梁剪切行为的影响

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This study investigates the effectiveness of steel fibers and minimum amount of stirrups on the shear response of various sized reinforced high-strength concrete (HSC) beams. For this, six large reinforced HSC beams with a shear span-to-depth ratio (a/d) of 3.2 were manufactured. Three of them contained 0.75% (by volume) steel fibers without stirrups as per ACI Committee 318, while the rest were reinforced with the minimum amount of stirrups without fibers. Test results indicate that, with increasing beam size, significantly lower shear strength was obtained for steel fiber-reinforced high-strength concrete (SFR-HSC) beams without stirrups, than for the plain HSC beams with stirrups. The inclusion of steel fibers effectively limited crack propagation, produced more diffused initial flexural cracks, and led to higher post-cracking stiffness, compared to plain HSC. On the other hand, the use of minimum stirrups gave better shear cracking behaviors than that of steel fibers, and effectively mitigated the size effect on shear strength. Therefore, a large decrease in shear strength, with an increase in the beam size, was only obtained for SFR-HSC beams without stirrups. A shear strength decrease of 129% was obtained by increasing the effective depth from 181 mm to 887 mm. The shear strengths of reinforced steel fiber-reinforced concrete beams were not accurately predicted by most previous prediction models. Therefore, a new shear strength formula, based on a larger dataset, that considers the size effect, is required. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究调查了钢纤维的有效性和最小量的搅拌器对各种尺寸钢筋高强度混凝土(HSC)梁的剪切响应。为此,制造了剪切跨度比(A / D)为3.2的六个大型增强HSC光束。其中三个含有0.75%(体积)钢纤维,而无需搅拌318,而其余的用最小量的没有纤维加固。试验结果表明,随着光束尺寸的增加,对于没有搅拌的钢纤维增强的高强度混凝土(SFR-HSC)梁,获得了显着降低的剪切强度,而不是搅拌的普通HSC梁。与普通HSC相比,将钢纤维有效地限制了裂纹繁殖,产生了更扩散的初始弯曲裂缝,并导致更高的后裂解刚度。另一方面,使用最小镫骨的使用比钢纤维更好地剪切开裂行为,并有效地减轻了剪切强度的尺寸效应。因此,剪切强度的大幅降低,梁尺寸的增加仅在没有搅拌的情况下获得SFR-HSC梁。通过增加181mm至887mm的有效深度来获得129%的剪切强度降低。最先前的预测模型,不准确地预测增强钢纤维钢筋混凝土梁的剪切强度。因此,需要一种基于较大数据集的新的剪切强度公式,这是考虑尺寸效应的较大数据集。 (c)2017 Elsevier Ltd.保留所有权利。

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