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Bond strength between concrete and repair mortar and its relation with concrete removal techniques and substrate composition

机译:混凝土与修补砂浆之间的粘结强度及其与混凝土去除技术和基材组成的关系

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摘要

This study investigates how concrete removal techniques affect substrates of different compositions, and as a result, the bonding with repair mortar. To this end, substrate surfaces of different concrete compositions, micro-concrete (MC), gravel concrete (GC) and crushed stone concrete (CC), were treated by using three commonly used removal techniques; hydrodemolition/water-jetting (WJ), jack-hammering (JH) and grit blasting (GB). Automated laser measurements (ALM) and the volumetric sand patch technique were employed to determine the surface roughness of the substrates. The effect of the substrates parameters such as aggregate size and uniformity on the bonding and failure modes was investigated. Uniformity of the substrates was evaluated by porosity measurements. According to the results, bond strength, surface tensile strength, failure modes and surface roughness were dependent on the aggregate size, aggregate shape and uniformity of mixture. The largest aggregate size and highest porosity along with the highest microcrack density and roughness belonged to CC mixtures. A high correlation was observed between the measured water transport and bond strength of samples. Micro-cracking and a weak interfacial transition zone (ITZ) seem to be the detrimental factors influencing the bond strength of samples treated with JH and WJ, respectively. The influence of WJ on the bond strength was dependent on the mix composition parameters such as aggregate size. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究调查了混凝土去除技术如何影响不同成分的基材,以及如何与修补砂浆粘结。为此,使用三种常用的去除技术对不同混凝土组成的基材表面(微混凝土(MC),砾石混凝土(GC)和碎石混凝土(CC))进行了处理。加氢拆除/喷水(WJ),千斤顶(JH)和喷砂(GB)。采用自动激光测量(ALM)和体积沙斑技术确定基材的表面粗糙度。研究了诸如骨料尺寸和均匀度之类的基材参数对粘结和破坏模式的影响。通过孔隙率测量评估基材的均匀性。根据结果​​,粘结强度,表面拉伸强度,破坏模式和表面粗糙度取决于聚集体的大小,聚集体的形状和混合物的均匀性。最大的骨料尺寸和最高的孔隙度以及最高的微裂纹密度和粗糙度属于CC混合物。在测得的水迁移率和样品的粘结强度之间观察到高度相关性。微裂纹和较弱的界面过渡区(ITZ)似乎分别是影响用JH和WJ处理的样品的结合强度的有害因素。 WJ对粘结强度的影响取决于混合物组成参数,例如骨料尺寸。 (C)2019 Elsevier Ltd.保留所有权利。

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