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Comparative study on the new-old mortar interface deterioration after wet-dry cycles and heat-cool cycles

机译:干湿循环和热冷循环后新旧砂浆界面劣化的比较研究

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A well-bonded interface between concrete substrate and repair materials is of great significance for the durable repaired concrete. In this paper, the performance of the new-old mortar interface and deteriorations after wet-dry or heat-cool cycles were investigated by mechanical tests and microstructural analyses. Slant shear test, four-point bending strength test, back scattering electron microscopy (BSEM), microhardness test and thermogravimetric analysis (TGA) were carried out to characterize the interface deterioration. The results show that the slant shear test is suitable for evaluating the new-old mortar bond strength. The constituents of repair mortars affect the bond strength, but have little impact on the bending strength of composite beams. After cycled treatments, coupled effect of wet-dry and heat-cool cycles result in severer deteriorations of new-old mortar interface than heat-cool cycles do. Effect of heat-cool cycles is mainly attributed to reduction of interlocking point, while reductions in both interlocking point and chemical bond force are responsible for the interface deterioration after coupled cycles. The microstructural analyses further reveal the characterization of the new-old interface zone. (C) 2020 Elsevier Ltd. All rights reserved.
机译:混凝土基材和修补材料之间的良好粘结界面对于经修补的耐用混凝土具有重要意义。本文通过力学测试和微观结构分析研究了新旧砂浆界面的性能以及干湿循环或热冷循环后的劣化。进行了斜切测试,四点弯曲强度测试,背散射电子显微镜(BSEM),显微硬度测试和热重分析(TGA)来表征界面劣化。结果表明,斜剪试验适合评价新旧砂浆的粘结强度。修补砂浆的成分会影响粘结强度,但对复合梁的抗弯强度影响很小。经过循环处理后,干冷循环和热-冷循环的耦合作用导致新旧砂浆界面的破坏比热-冷循环严重。冷热循环的影响主要归因于互锁点的降低,而互锁点和化学键合力的降低是耦合循环后界面劣化的原因。微观结构分析进一步揭示了新旧界面区域的特征。 (C)2020 Elsevier Ltd.保留所有权利。

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