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Evaluation of the bond behavior of steel reinforcing bars in recycled fine aggregate concrete

机译:再生细骨料混​​凝土中钢筋的粘结性能评估

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This paper describes pullout test results on deformed reinforcing bars in natural and recycled fine aggregate (RFA) concrete. The effects of bar location and RFA grade on bond strength between reinforcing bar and recycled aggregate concrete (RAC) were evaluated through the experimental program. A total of 150 pullout specimens were fabricated for the experiment. Two reinforcing bar orientations were considered with respect to the casting direction; vertical bars and horizontal bars, the latter of which was prepared to evaluate top-bar effect. Considered variables included four RFA replacement ratios (RFArs), two water-absorption grades (RFA-A: 5.83%, RFA-B: 7.95%) of RFA and three reinforcing bar locations (75, 225 and 375 mm height from the bottom of the casting mold). In addition, to evaluate the thermal and aging effect on bond behavior between the reinforcing bar and RFA concrete, some parts of pullout specimens had exposed to rapid freeze-thaw environment or been cured at air during 28 or 730 days. Test results demonstrated that bond strength does not seem to be affected by the RFAr for higher RFA grades (RFA-A), at least up to 60% RFAr. In contrast, the RAC including lower RFA grade (RFA-B) showed clear decreases in bond strength with increasing RFAr, similar to the trend observed for compressive strength. For horizontal pullout specimens, RFA concrete specimens showed higher bond strength gap between top and bottom bars than natural aggregate concrete (NAC) specimens. Bond strengths of the horizontally cast pullout specimens were affected by the flowability of concrete rather than the RFAr or RFA grade. No noticeable degradation occurred during freeze-thaw cycling of the RAC specimens, indicating that the RFA used in this study is appropriate for use in freeze-thaw environments.
机译:本文介绍了天然和再生细骨料(RFA)混凝土中变形钢筋的拉拔试验结果。通过实验程序评估了钢筋位置和RFA等级对钢筋与再生骨料混凝土(RAC)之间粘结强度的影响。总共制作了150个拉出样本用于实验。考虑到相对于铸造方向的两个钢筋取向。垂直条和水平条,后者用于评估顶部条效果。考虑的变量包括RFA的四个RFA替换率(RFArs),RF的两个吸水等级(RFA-A:5.83%,RFA-B:7.95%)和三个钢筋位置(离底部底部75、225和375 mm高)铸造模具)。此外,为评估热和老化对钢筋与RFA混凝土之间粘结性能的影响,拉出样品的某些部分已暴露于快速的冻融环境或在空气中固化了28天或730天。测试结果表明,对于更高的RFA等级(RFA-A),至少达到60%RFAr,粘结强度似乎不受RFAr的影响。相反,包括较低RFA等级(RFA-B)的RAC随着RFAr的增加,粘结强度明显降低,类似于抗压强度的趋势。对于水平拉拔试样,RFA混凝土试样的顶部和底部钢筋之间的粘结强度间隙比天然骨料混凝土(NAC)试样高。水平浇铸拉拔试样的粘结强度受混凝土流动性的影响,而不是受RFAr或RFA级的影响。在RAC样品的冻融循环过程中,没有发生明显的降解,这表明本研究中使用的RFA适用于冻融环境。

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