Monitoring the Early-Age Shrinkage Cracking of Concrete with Superabsorbent Polymers by Means of Optical Fiber (SOFO) Sensors

J. R. T. Filho, D. Snoeck, N. Belie
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Abstract

Concrete structures are subjected to shrinkage since the moment when the water makes contact with the cement. From that moment on, depending on the concrete composition and its curing conditions, chemical, autogenous and drying shrinkage might increase the risk of early-age cracking. Once a crack is formed, it may become the preferential path for the ingress of many aggressive agents inside the structure increasing the probability of damage due to corrosion, carbonation and other mechanisms.The use of superabsorbent polymers (SAPs) has been extensively studied to reduce the shrinkage cracking risk in mortar specimens by acting as internal curing agent to mitigate autogenous shrinkage. In this paper, a commercially available SAP was investigated as shrinkage reducing agentby means of internal curing in concrete specimens. The shrinkage of the concrete was monitored for 28 days with both a demountable mechanical strain gauge (DEMEC) and optical fiber sensors (SOFO).The SAP-containing concrete showed a complete mitigation of autogenous shrinkage during 28 days of measurement, for both methods. The SOFO sensors showed the occurrence of cracks after 7 days for the reference mixture, while for the SAP containing mixture, no crack was identified during the 28 days of measurements.
用光纤(SOFO)传感器监测高吸水聚合物混凝土早期收缩开裂
从水与水泥接触的那一刻起,混凝土结构就开始收缩。从那一刻起,根据混凝土的成分和养护条件,化学收缩、自收缩和干燥收缩可能会增加早期开裂的风险。裂纹一旦形成,它可能成为许多侵蚀剂进入结构内部的优先路径,增加了由于腐蚀、碳化和其他机制造成损伤的可能性。利用高吸水性聚合物(sap)作为内部固化剂来减少砂浆试样的收缩开裂风险已经得到了广泛的研究。以市售SAP为研究对象,在混凝土试件中采用内养护的方法进行了减水剂的研究。使用可拆卸的机械应变计(DEMEC)和光纤传感器(SOFO)监测混凝土的收缩28天。在28天的测量中,对于两种方法,含有sap的混凝土显示出完全的自收缩缓解。对于参考混合物,SOFO传感器在7天后显示裂纹的出现,而对于含有SAP的混合物,在28天的测量中没有发现裂纹。
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