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Microstructural analysis of the adhesion mechanism between old concrete substrate and UHPFC

机译:旧混凝土与UHPFC粘结机理的微观结构分析

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摘要

The performance of any repaired concrete structure, and thus its service life, depends on the quality of the interfacial transition zone of the composite system formed by the repair material and the existing concrete substrate. In this work, the properties of the interfacial transition zone between normal concrete (NC) substrate as an old concrete and ultra-high performance fiber-reinforced concrete (UHPFC) as a repair material was investigated. Pull-off and splitting cylinder tensile tests were performed to quantify the bond strength in direct and indirect tensions, respectively. The microstructure of the interfacial transition zone was also studied using scanning electron microscopy and energy dispersive X-ray spectroscopy (SEM/EDS). Different types of NC substrate surface preparation methods were used. An optical three-dimensional surface metrology device was used to estimate the substrate roughness parameters. Based on the results, high interfacial bond strength was achieved on the 3rd, 7th, and 28th days. The pull-off test results revealed that all failures occurred in the substrate, regardless of the substrate surface roughness. The majority of failures in the split tensile test also occurred in the substrate. SEM/EDS proved that the use of UHPFC as a repair material chemically, physically, and mechanically improved the repaired interfacial transition zone to become stronger and denser, as well as more uniform, and durable. Moreover, the use of UHPFC increased the service life of repaired structures and minimized the number and extent of interventions to the lowest possible level.
机译:任何修复的混凝土结构的性能以及使用寿命,都取决于修复材料和现有混凝土基材形成的复合系统界面过渡区域的质量。在这项工作中,研究了普通混凝土(NC)作为旧混凝土基材与超高性能纤维增强混凝土(UHPFC)作为修补材料之间的界面过渡区的性能。进行拉断和裂开圆柱体拉伸试验,以分别量化直接和间接拉伸中的粘结强度。还使用扫描电子显微镜和能量色散X射线光谱法(SEM / EDS)研究了界面过渡区的微观结构。使用了不同类型的NC基板表面制备方法。使用光学三维表面计量设备来估计基板粗糙度参数。根据结果​​,在第3天,第7天和第28天获得了很高的界面粘结强度。拉拔测试结果表明,所有故障均发生在基板中,而与基板表面粗糙度无关。分裂拉伸试验中的大多数失败也发生在基材中。 SEM / EDS证明,使用UHPFC作为修复材料在化学,物理和机械方面均改善了修复后的界面过渡区,使其变得更牢固,更致密,更均匀,更耐用。此外,UHPFC的使用可延长已修复结构的使用寿命,并将干预的次数和范围最小化到最低水平。

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