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A shear stress-slip relationship in steel fibre-reinforced concrete obtained from push-off testing

机译:钢纤维钢筋混凝土中的剪切应力滑移关系

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摘要

This paper presents the results of an experimental programme carried out to evaluate the shear stress slip relationship in steel fibre-reinforced concrete. Two types of direct shear tests are modified and used. Firstly, a general, double-notched, direct shear test was modified to minimise the confinement stress provided by the restricted supports in the general test setup. Secondly, a traditional Z-type push-off test, with reinforcement crossing the pre-cracked shear plane, was used to determine the shear crack propagation in steel fibre-reinforced concrete. Two aggregates with different maximum particle sizes and two volume fractions of steel fibres were used. The modified, double-notched, direct shear test reduces the influence of the horizontal restraint forces on the supports and provides more accurate shear strength values for non-cracked shear planes. The results of push-out tests in specimens with pre-cracked shear planes, show that steel fibres contribute to reducing the crack width of the shear plane in the pre peak shear stress branch. A model for predicting the shear stress-slip is proposed and is based on three components: shear strength of cracked concrete, shear-friction and contribution of steel fibres crossing the cracked plane. A good correlation was obtained for the experimental results and the values predicted by this model. (C)& nbsp;2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了对钢纤维钢筋混凝土中剪切应力滑移关系进行的实验程序的结果。修改和使用两种类型的直接剪切测试。首先,修改一般,双缺口直接剪切测试,以最小化通过一般测试设置中受限制的支持提供的限制应力。其次,使用传统的Z型推关测试,其具有加强前裂纹剪切平面的加固,用于确定钢纤维钢筋混凝土中的剪切裂纹繁殖。使用具有不同最大粒径和钢纤维的两个体积分数的两个聚集体。改性,双缺口直接剪切测试降低了水平约束力对支撑件上的影响,并为非裂纹剪切平面提供更精确的剪切强度值。具有预裂纹剪切平面的试样的推出试验结果表明,钢纤维有助于降低预峰值剪切应力分支中的剪切平面的裂缝宽度。提出了一种预测剪切应力滑动的模型,基于三个部件:裂纹混凝土,剪切摩擦和穿过裂纹平面的钢纤维贡献的剪切强度。获得了实验结果的良好相关性,并且通过该模型预测的值。 (c)  2021 elestvier有限公司保留所有权利。

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