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Bonding Behavior of Deformed Steel Rebars in Sustainable Concrete Containing both Fine and Coarse Recycled Aggregates

机译:含有细和粗再生料的可持续混凝土中变形钢筋的粘结行为

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摘要

In order to assess the bond behavior of deformed steel rebars in recycled-aggregate concrete (RAC) incorporating both fine and coarse recycled aggregate, pull-out tests were carried out in this study on 16-mm diameter deformed steel rebars embedded concentrically in RAC. The concrete was designed using equivalently mixed proportions of both recycled coarse aggregate and recycled fine aggregate. The tests employed five types of recycled aggregate replacement combinations and three types of rebar placement orientation (i.e., vertical bars and two-tiered and three-tiered horizontal bars). Based on the pull-out test results, the maximum bond strength tended to decrease and the slip at the maximum bond strength increased as the average water absorption of the aggregate increased, irrespective of the rebar orientation or placement location within the concrete member. The pull-out test results for the horizontal steel rebars embedded in RAC indicate that the casting position effect could be determined from the mid-depth of the concrete member, irrespective of the member’s height. The normalized bond versus slip relationship between the deformed rebar and the RAC could be predicted using an empirical model based on regression analysis of the experimental data.
机译:为了评估包含细和粗再生骨料的再生骨料混凝土(RAC)中变形钢筋的粘结性能,本研究对同心嵌入RAC中的直径为16 mm的变形钢筋进行了拉拔试验。使用再生粗骨料和再生细骨料的等量混合比例设计混凝土。该测试使用了五种类型的再生骨料替代组合和三种类型的钢筋放置方向(即,垂直钢筋以及两层和三层水平钢筋)。根据拉出试验结果,随着骨料的平均吸水率增加,最大粘结强度趋于降低,最大粘结强度下的滑移增大,而与钢筋在混凝土构件中的取向或放置位置无关。嵌入RAC的水平钢筋的拉拔测试结果表明,铸造位置的影响可以根据混凝土构件的中间深度来确定,而与构件的高度无关。可以使用基于实验数据回归分析的经验模型来预测变形钢筋与RAC之间的归一化粘结与滑动关系。

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