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Comparative studies of the effect of ultrahigh-performance concrete and normal concrete as repair materials on interfacial bond properties and microstructure

机译:超高性能混凝土及普通混凝土效果对界面粘结性能和微观结构的影响研究

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This study aims to investigate the effects of repair materials such as ultra high-performance concrete (UHPC) and normal concrete (NC) on the bond performance and microstructure between a concrete substrate and the repair materials. Specifically, C25, C35, and C45 concretes were used as the substrate materials, and their surfaces were treated with high-pressure water. C45 and UHPC were used as the repair materials. Bond properties were evaluated through slant shear tests with various slant angles and splitting tensile strength tests. Cohesion strength and internal friction were obtained via the slant shear test at three angles using the Mohr-Coulomb approach to reflect the differences between different repair materials. In addition, combining the splitting tensile strength and slant shear tests at three angles, bond failure envelopes were obtained using second-order polynomial and bi-linear models, which can reflect the bond behaviour of repair materials more effectively. The results of the study indicate that UHPC combined with concrete substrates exhibit good interfacial bond performances compared with NC repair materials. Compared with NC, the interface transition zone between UHPC and a substrate is denser, stronger, and more uniform, which results in good bond performance. Using second order polynomial and bi-linear models, the UHPC repair material are more beneficial to the full utilisation of the mechanical properties of the substrate compared with the NC repair materials. Therefore, it is envisaged that the use of UHPC combined with the high-pressure water treatment of a substrate surface will provide an effective repair.
机译:本研究旨在探讨修复材料如超高性能混凝土(UHPC)和正常混凝土(NC)的影响,对混凝土基板和修复材料之间的粘合性能和微观结构。具体地,使用C25,C35和C45混凝土用作基材材料,并用高压水处理它们的表面。 C45和UHPC用作修复材料。通过具有各种倾斜角度和分裂拉伸强度试验的倾斜剪切测试来评估粘合性能。通过使用MoHR-Coulomb方法在三个角度下通过倾斜剪切测试获得粘合强度和内部摩擦,以反映不同修复材料之间的差异。另外,使用二阶多项式和双线性模型获得三角的分裂拉伸强度和倾斜剪切试验,可以更有效地反映修复材料的粘合行为。研究结果表明,与混凝土衬底结合的UHPC与NC修复材料相比表现出良好的界面粘合性能。与NC相比,UHPC和衬底之间的界面过渡区是更密集,更强,更均匀的,这导致良好的粘合性能。使用二阶多项式和双线性模型,与NC修复材料相比,UHPC修复材料更有利于与基板的机械性能的充分利用。因此,设想使用UHPC与基材表面的高压水处理结合将提供有效的修复。

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