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Influence of loading-rate and steel fibers on the shear strength of ultra high performance concrete

机译:加载速率和钢纤维对超高性能混凝土抗剪强度的影响

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摘要

The paper describes quasi-static and dynamic experimental methods used to examine the confined shear strength of an Ultra High Performance Concrete, with and without the presence of steel fibers in the concrete composition. An experimental setup was created to investigate the concrete shear strength under quasi-static loading regime using a hydraulic press Schenk while dynamic shear strength was characterized by subjecting concrete samples to dynamic loading through a modified Split Hopkinson Pressure Bar. Both methods are based on a Punch Through Shear (PTS) test with a well-instrumented aluminum passive confinement ring that allows measuring the change of radial stress in the shear ligament throughout the test. Firstly, four equally distributed radial notches have been performed in order to deduce the radial stress by suppressing a self-confinement of the sample peripheral part. However, by analyzing the strain gauge data from the confinement ring, it has been noticed that these were apparently insufficient, especially for fiber-reinforced samples, resulting in subsequently practicing eight radial notches through the sample peripheral part. The results obtained from both procedures are reported and discussed.
机译:本文描述了准静态和动态实验方法,用于检查超高性能混凝土在混凝土组合物中是否存在钢纤维的局限剪切强度。创建了一个实验装置来研究使用液压机Schenk在准静态载荷条件下的混凝土抗剪强度,而动态抗剪强度的特征在于通过改进的Split Hopkinson压力棒对混凝土样品进行动态载荷。两种方法均基于穿孔式剪切(PTS)试验,该试验采用结构良好的铝制被动约束环,可在整个测试过程中测量剪切韧带的径向应力变化。首先,已经执行了四个均匀分布的径向凹口,以便通过抑制样本外围部分的自约束来推导径向应力。但是,通过分析来自限制环的应变仪数据,发现这些显然不足,特别是对于纤维增强的样品,导致随后在样品外围部分形成了八个径向缺口。报告并讨论了从两种方法获得的结果。

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