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Recycled concrete beams subjected to combined reinforcement corrosion and static pre-loading

机译:再生混凝土梁经受钢筋腐蚀和静预压联合作用

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摘要

To investigate the flexural behavioural characteristics of recycled concrete beams under the combined action of steel corrosion and static pre-loading, 12 recycled concrete beam specimens, encompassing a combination of three recycled coarse aggregate (RCA) replacement ratios (0, 50 and 100%) and four static pre-load levels expressed as ratio of the ultimate moment capacity (0, 0.2, 0.4 and 0.6), were prepared for accelerated corrosion test and four-point bending test. The test results indicated that under a given RCA replacement ratio of the beams, the maximum width of corrosion-induced longitudinal cracks exhibited a linear relationship with the corresponding corrosion depth of longitudinal tension reinforcement. For the beams with 50% RCA replacement ratio, when the applied static pre-load level increased from 0 to 0.6, the ultimate load and ultimate deflection reduced by 10.4% and 21.2%, respectively, whereas for the beams with 100% RCA replacement ratio, the corresponding reduction in ultimate load and ultimate deflection were respectively 8.9% and 35.5%. Theoretical degradation models for the ultimate moment capacity and yield moment capacity of corroded beams were proposed, whereby the analytical values were in good agreement with the experimental values. This study provides useful reference for practical analysis of recycled concrete beams, which promote sustainable concrete construction.
机译:为研究再生混凝土梁在钢腐蚀和静预紧力共同作用下的弯曲行为特征,以12个再生混凝土梁试件为研究对象,包括3个再生粗骨料(RCA)置换比(0、50和100%)和4个以极限弯矩承载力比值表示的静态预载水平(0、0.2、0.4和0.6), 准备进行加速腐蚀试验和四点弯曲试验。试验结果表明,在给定的RCA置换率下,腐蚀引起的纵向裂纹的最大宽度与相应的纵向拉筋腐蚀深度呈线性关系。对于RCA置换率为50%的梁,当施加的静预荷载水平从0增加到0.6时,极限荷载和极限挠度分别降低了10.4%和21.2%,而对于RCA置换率为100%的梁,极限荷载和极限挠度分别降低了8.9%和35.5%。提出了腐蚀梁极限弯矩承载力和屈服弯矩承载力的理论退化模型,分析值与实验值吻合较好。本研究为再生混凝土梁的实际分析提供了有益的参考,促进了混凝土的可持续施工。

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