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Acoustic Emission Monitoring of Corrosion Damage Propagation in Large-Scale Reinforced Concrete Beams

机译:大规模钢筋混凝土梁腐蚀损伤传播的声发射监测

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An extensive experimental study was performed to apply acoustic emission (AE) monitoring to assess the bond strength of corroded large-scale RC beam specimens. This paper demonstrates the data obtained from AE monitoring of these RC beams, while being exposed to localized, accelerated corrosion procedures at one of the end sides of each beam. Five RC beams were corroded through an electrically accelerated corrosion process to reach 5, 10, 20, and 30% of steel mass loss. The beams were constantly monitored during the accelerated corrosion tests via half-cell potential (HCP) measurements and three attached AE sensors distributed along the span of the beam. During the test, the corrosion and cover crack initiation were monitored and the crack width measurements were attained daily. The results showed that the analysis of AE signal parameters acquired throughout the corrosion period enabled the detection of both corrosion and cover crack onset earlier than HCP readings and prior to any signs of visual cracking, regardless of sensor location. Acoustic emission parameters examined in this paper {cumulative number of hits, cumulative signal strength (CSS), historic index [H (t)], and severity (Sr)} were shown to be highly correlated with the level of corrosion propagation. The study also presents developed damage classification charts interrelating the results of crack growth and mass losses to the average values of H (t) and Sr. These charts can be used to quantify the level of deterioration of RC structures due to reinforcement corrosion. (c) 2017 American Society of Civil Engineers.
机译:进行了广泛的实验研究,以应用声学发射(AE)监测,以评估腐蚀大规模RC束标本的粘合强度。本文展示了从对这些RC光束的AE监测获得的数据,同时暴露于每个光束的一个端侧的局部加速的腐蚀程序。通过电加速的腐蚀过程腐蚀五个RC梁,达到5,10,20和30%的钢质量损失。在加速腐蚀测试期间通过半电池电位(HCP)测量和沿着梁跨度分布的三个连接的AE传感器在加速腐蚀测试期间持续监测梁。在测试期间,监测腐蚀和覆盖裂纹引发,每天达到裂缝宽度测量。结果表明,在整个腐蚀时段中获取的AE信号参数的分析使得检测到比HCP读数更早的腐蚀和覆盖裂缝发作,并且在任何视觉裂缝的任何迹象之前,无论传感器位置如何。在本文中检查的声学发射参数{累积次数的命中,累积信号强度(CSS),历史指数[H(T)]和严重程度(SR)}与腐蚀传播的水平高度相关。该研究还提出了产生的损伤分类图表,将裂缝生长和质量损失的结果相互关联,以对H(t)和Sr的平均值。这些图表可用于量化由于增强腐蚀而定量RC结构的劣化水平。 (c)2017美国土木工程师协会。

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