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Corrosion monitoring of flexural reinforced concrete members under service loads using distributed long-gauge carbon fiber sensors

机译:使用分布式长规格碳纤维传感器在使用载荷下抗弯钢筋混凝土构件的腐蚀监测

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摘要

Currently, corrosion of steel reinforcements is a major topic for several researchers because of the early deterioration and shortening of the service life of structures, particularly those prone to salt attacks. This study proposes a new technique for monitoring corrosion of steel reinforcements in flexural reinforced concrete structures using distributed embedded long-gauge packaged carbon fiber line sensors with self-compensation under service loads. Three different approaches including continuous-strain ratio, distributed-strain ratio, and section fiber model were proposed to evaluate corrosion levels using strain measurements. Different groups of distributed packaged carbon fiber line sensors were installed on the concrete surface and steel reinforcements of the reinforced concrete beam to verify the proposed approaches experimentally using the accelerated corrosion technique. The sensors installed on the concrete surface affected by cracks can only localize the corrosion locations but are unable to determine the actual values of corrosion levels. The degree of corrosion calculated using each approach was compared with the weight loss of an experimental corrosion model. The results showed that the continuous-strain ratio approach will be suitable to localize and evaluate the corrosion degrees if corrosion occurs before the formation of cracks, while the distributed-strain ratio is more effective in the presence of cracks. In highly damaged conditions, the section fiber model will be the most accurate method to evaluate and localize corrosion in steel reinforcements.
机译:目前,钢筋腐蚀是许多研究人员的主要课题,因为结构的早期退化和使用寿命缩短,尤其是那些容易发生盐分侵蚀的结构。这项研究提出了一种新技术,该技术使用分布嵌入式长规包装的碳纤维线传感器在使用载荷下具有自补偿功能,来监测抗弯钢筋混凝土结构中钢筋的腐蚀。提出了三种不同的方法,包括连续应变比,分布应变比和截面纤维模型,以使用应变测量来评估腐蚀程度。将不同组的分布式包装的碳纤维线传感器安装在混凝土表面和钢筋混凝土梁的钢筋上,以使用加速腐蚀技术通过实验验证提出的方法。安装在受裂缝影响的混凝土表面上的传感器只能确定腐蚀位置,而无法确定腐蚀水平的实际值。将使用每种方法计算出的腐蚀程度与实验腐蚀模型的重量损失进行比较。结果表明,如果在裂纹形成前发生腐蚀,连续应变比法将适合于局部化和评估腐蚀程度,而在存在裂纹的情况下,分布应变比更有效。在严重受损的情况下,截面纤维模型将是评估和定位钢筋中腐蚀的最准确方法。

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