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Experimental and analytical study of bond behavior between recycled aggregate concrete and steel bars using a pullout test

机译:再生混凝土与钢筋粘结性能的拉拔试验与分析研究。

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The paper presents the results of an experimental program carried out on 96 concrete pullout specimens prepared with natural and recycled aggregates using 10 and 12 mm diameter deformed steel bars. Steel rebars were concentrically embedded in pullout specimens with two embedded length of 5 and 10 times the rebar diameter. The present work includes six recycled concrete aggregate mixtures and two conventional concrete mixtures with C25/30 and C35/45 target class of compressive strength and S4 class of workability. For both series, specimens were fabricated with different incorporation ratios of fine and coarse recycled aggregates and only coarse recycled aggregates. Tensile load was applied gradually until the pullout failure occurred and the slip between the rebar and concrete was measured at the free and loaded ends for each loading level. Furthermore, systematic observations of failure surface have been made at both macroscopic and microscopic scales. Test results showed that for the same class of compressive strength the bond strength and related failure mechanisms remain very close and the obtained values are, at least, four times higher than the predicted values by Eurocode 2. The experimental results of this study, together with an extensive number of results reported in the literature, were used to describe the variation of bond strength with concrete compressive strength, embedded length, and concrete cover. In addition, an analytical bond-slip relationship is proposed and the parameters of bond-slip law were calibrated by an optimization algorithm.
机译:本文介绍了一个实验程序的结果,该程序对96个混凝土拔出标本进行了测试,这些标本由天然和再生骨料制成,使用10和12 mm直径的变形钢筋。将钢筋同心地嵌入拉拔试样中,其嵌入长度分别为钢筋直径的5倍和10倍。目前的工作包括六种再生混凝土骨料混合物和两种常规混凝土混合物,其抗压强度目标等级为C25 / 30和C35 / 45,可加工性等级为S4。对于这两个系列,均以不同比例的细粒和粗粒再生骨料和仅粗粒再生骨料制备了试样。逐渐施加拉伸载荷,直到发生拉拔故障,并在每种载荷水平的自由端和载荷端测量钢筋和混凝土之间的滑动。此外,已经在宏观和微观尺度上对破坏面进行了系统的观察。测试结果表明,对于相同等级的抗压强度,粘结强度和相关的破坏机制保持非常接近,并且获得的值至少比欧洲规范2的预测值高四倍。本研究的实验结果以及大量文献报道的结果被用来描述粘结强度随混凝土抗压强度,埋入长度和混凝土覆盖层的变化。另外,提出了一种解析的粘滑关系,并通过优化算法对粘滑定律的参数进行了标定。

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