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Evaluating the bond strength between concrete substrate and repair mortars with full-factorial analysis

机译:用全因分析法评估混凝土基层与修补砂浆之间的粘结强度

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Concrete structures need repairing due to various reasons such as deteriorative effects, overloading, poor quality of workmanship and design failures. Cement based repair mortars are the most widely used solutions for concrete repair applications. Various factors may affect the bond strength between concrete substrate and repair mortars. In this paper, the effects of polymer additives, strength of the concrete substrate, surface roughness, surface wetness and aging on the bond between concrete substrate and repair mortar has been investigated. Full factorial experimental design is employed to investigate the main and interaction effects of these factors on the bond strength. Analysis of variance (ANOVA) under design of experiments (DOE) in Minitab 14 Statistical Software is used for the analysis. Results showed that the interaction bond strength is higher when the application surface is wet and strength of the concrete substrate is comparatively high. According to the results obtained from the analysis, the most effective repair mortar additive in terms of bonding efficiency was styrene butadiene rubber (SBR) within the investigated polymers and test conditions. This bonding ability improvement can be attributed to the self-flowing ability, high flexural strength and comparatively low air content of SBR modified repair mortars. On the other hand, styrene acrylate rubber (SAR) modified mortars was found incompatible with the concrete substrate.
机译:由于各种原因,例如恶化的效果,过载,工艺质量差和设计失败,需要修复混凝土结构。水泥基修补砂浆是混凝土修补应用中使用最广泛的解决方案。各种因素可能会影响混凝土基材与修补砂浆之间的粘结强度。本文研究了聚合物添加剂,混凝土基质强度,表面粗糙度,表面湿度和老化对混凝土基质与修补砂浆之间粘结力的影响。采用全因子实验设计来研究这些因素对键强度的主要作用和相互作用。使用Minitab 14 Statistics软件中的实验设计(DOE)下的方差分析(ANOVA)进行分析。结果表明,当施涂表面潮湿时,混凝土的强度较高,相互作用粘结强度较高。根据从分析中获得的结果,就粘合效率而言,最有效的修补砂浆添加剂是所研究的聚合物和测试条件下的丁苯橡胶(SBR)。这种结合能力的提高可归因于SBR改性修补砂浆的自流能力,高抗弯强度和较低的空气含量。另一方面,发现苯乙烯丙烯酸酯橡胶(SAR)改性砂浆与混凝土基材不相容。

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