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Failure processes of modeled recycled aggregate concrete under uniaxial compression

机译:模拟再生骨料混凝土单轴压缩下的破坏过程

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摘要

In order to investigate the failure processes of Recycled Aggregate Concrete (RAC), cracking behavior of modeled RAC specimens under compressive loading was investigated using Digital Image Correlation (DIC). Strain and displacement contour maps were produced to analyze the cracks' initiation and propagation during loading. The testing results indicate that the discrepancy between the elastic moduli of coarse aggregates and mortar matrix significantly influences the mechanical properties and crack patterns of the modeled materials. It is found that the failure process is related to the relative strength of coarse aggregate and mortar matrix. For modeled RAC, the first bond cracks appear around both the old and new interfacial transition zones (1TZ), and then propagate into the old and new mortar matrix by connecting each other. The observation implies that the initiations and propagations of microcracks are different between RAC and Natural Aggregate Concrete (NAC). The findings in this investigation are useful to improve the mechanical properties of RAC by optimizing the mix proportion.
机译:为了研究再生骨料混凝土(RAC)的破坏过程,使用数字图像相关性(DIC)研究了模型RAC样品在压缩载荷下的开裂行为。绘制了应变和位移轮廓图,以分析裂纹在加载过程中的萌生和扩展。测试结果表明,粗骨料的弹性模量与砂浆基体的弹性模量差异显着影响了建模材料的力学性能和裂缝模式。发现破坏过程与粗骨料和砂浆基体的相对强度有关。对于建模的RAC,第一个粘结裂纹出现在新旧界面过渡区(1TZ)周围,然后通过相互连接传播到新旧砂浆基质中。该观察结果表明,RAC和天然骨料混凝土(NAC)之间的微裂纹的萌生和传播是不同的。通过优化混合物比例,本研究中的发现有助于改善RAC的机械性能。

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