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Three dimensional imaging of reinforcement corrosion using micro-computed tomography: Literature review

机译:使用微计算机断层扫描的增强腐蚀三维成像:文献综述

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A deeper understanding of steel reinforcement corrosion and corrosion-induced cracking in concrete structures is crucial for taking preventive measures and performing effective and efficient repair. Recently, researchers started utilizing high-resolution and non-destructive micro-computed tomography (mu CT) imaging systems to investigate the diffusion of corrosion products and the resulted cracks within structural elements throughout the corrosion process. Natural and accelerated reinforcement corrosion modes are induced using two techniques, namely: impressed current and wet-dry cyclic methods. The test specimens are scanned periodically using mu CT during the corrosion process to accurately capture microstructural change. The reported findings demonstrated the potential of using mu CT imaging to monitor the corrosion diffusion and crack propagation in addition to measuring the mass loss of reinforcement. This research area, however, is still relatively new with many uncovered areas that need to be investigated. Therefore, the main objective of this article is to provide a comprehensive review of the current research progress by reviewing the specifications of examined specimens, the applied corrosion-induction conditions, and the utilized imaging parameters to capture high-resolution mu CT images. The reported corrosion diffusion and crack propagation mechanisms are presented. The effects of impressed current, type of steel reinforcement, structural defects, and physical confinement on the corrosion and cracking processes are discussed. Also, the accuracy of mu CT measurements of reinforcement mass loss is described. (C) 2021 The Author(s). Published by Elsevier Ltd.
机译:更深入地了解混凝土结构中的钢筋腐蚀和腐蚀诱导的裂缝对于采取预防措施并进行有效和有效的修复至关重要。最近,研究人员利用高分辨率和非破坏性微型计算机断层摄影(MU CT)成像系统来研究腐蚀产品的扩散和在整个腐蚀过程中结构元件内的产生裂缝。使用两种技术诱导自然和加速的增强腐蚀模式,即:压印电流和湿干循环方法。在腐蚀过程中,在腐蚀过程中定期扫描试样,以精确地捕获微观结构变化。报告的研究结果证明了使用MU CT成像来监测腐蚀扩散和裂纹传播的可能性,除了测量钢筋的质量损失之外。然而,该研究领域仍然对需要进行调查的许多未发现的地区仍然相对较新。因此,本文的主要目标是通过审查检测的样本,应用的腐蚀诱导条件和利用成像参数来捕获高分辨率MU CT图像来全面审查目前的研究进展。提出了报道的腐蚀扩散和裂缝繁殖机制。讨论了压印电流,钢筋型,结构缺陷和物理限制对腐蚀和开裂过程的影响。而且,描述了MU CT测量的加强质量损失的测量。 (c)2021提交人。 elsevier有限公司出版

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