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Effect of loading rates on pullout behavior of high strength steel fibers embedded in ultra-high performance concrete

机译:装载率对超高效混凝土嵌入式高强度钢纤维拉出行为的影响

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In this paper single fiber pull-out performance of high strength steel fibers embedded in ultra-high performance concrete (UHPC) is investigated. The research emphasis is placed on the experimental performance at various pullout rates to better understand the dynamic tensile behavior of ultra-high performance fiber reinforced concrete (UHP-FRC). Based on the knowledge that crack formation is strain rate sensitive, it is hypothesized that the formation of micro-splitting cracks and the damage of cement-based matrix in the fiber tunnel are mainly attributing to the rate sensitivity. Hereby, different pull-out mechanisms of straight and mechanically bonded fibers will be examined more closely. The experimental investigation considers four types of high strength steel fibers as follows: straight smooth brass-coated with a diameter of 0.2 mm and 038 mm, half end hooked with a diameter of 0.38 mm and twisted fibers with an equivalent diameter of 03 mm. Four different pull out loading rates were applied ranging from 0.025 mm/s to 25 mm/s. The loading rate effects on maximum fiber tensile stress, use of material, pullout energy, equivalent bond strength, and average bond strength are characterized and analyzed. The test results indicate that half-hooked fibers exhibit highest loading rate sensitivity of all fibers used in this research, which might be attributed to potential matrix split cracking. Furthermore, the effect of fiber embedment angles on the loading rate sensitivity of fiber pullout behavior is investigated. Three fiber embedment angles, 0 degrees, 20 degrees, and 45 degrees, are considered. The results reveal that there is a correlation between fiber embedment angle and loading rate sensitivity of fiber pullout behavior. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了嵌入超高性能混凝土(UHPC)中的高强度钢纤维的单纤维拉出性能。研究重点是在各种拉出速率下进行实验性能,以更好地了解超高性能纤维钢筋混凝土(UHP-FRC)的动态拉伸行为。基于裂缝形成是应变率敏感的知识,假设微分裂裂缝的形成和纤维隧道中的水泥基质的损伤主要归因于速率灵敏度。因此,将更接近地检查直的直线和机械粘合纤维的不同拉出机制。实验研究考虑了四种类型的高强度钢纤维,如下:直径为0.2mm和038mm的直径光滑的黄铜涂层,半端钩,直径为0.38mm,扭曲的纤维等当量直径为03mm。施加四种不同的拉出加载率,范围为0.025 mm / s至25 mm / s。对最大光纤拉伸应力,材料,拉出能量,等效粘合强度和平均粘合强度的加载速率效应进行了特征和分析。测试结果表明,半钩纤维表现出本研究中使用的所有纤维的最高负载率敏感性,这可能归因于潜在的矩阵分流裂。此外,研究了纤维栓塞角对光纤拉出行为的装载率灵敏度的影响。考虑三个光纤嵌入角,0度,20度和45度。结果表明,光纤嵌入角度与光纤拉出行为的加载速率灵敏度之间存在相关性。 (c)2016 Elsevier Ltd.保留所有权利。

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