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An electromechanical impedance-instrumented corrosion-measuring probe

机译:机电阻抗测试仪

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Corrosion of metallic structures widely existed in multiple industries, such as oil and gas, civil infrastructure, aerospace, mechanical, mining, and processing. Current available corrosion-monitoring methods are based on different sensing principles, which have their own advantages, and some drawbacks that may limit their application on some aspects. This article presents an electromechanical impedance-instrumented corrosion-measuring probe for corrosion monitoring. The proposed probe is fabricated by attaching a circular lead zirconate titanate patch onto a metal rod. Compared to other electromechanical impedance-based corrosion-monitoring methods, the probe is capable of isolating the influence of structural complexity, variations in loading and boundary conditions. Five probes were fabricated in the experimental study and three of them were subjected to accelerated corrosion tests to mimic the corrosion-induced mass loss damage. Results showed that the peak magnitude of the conductance signatures was reduced with the increase in corrosion amount. The variations in the conductance signatures were quantified by three statistical quantifying metrics, that is, root-mean-square deviation, mean absolute percentage deviation, and correlation coefficient deviation. All these metrics increase with the increase in corrosion amount, which can be used as an indicator of the corrosion process. This study proves that the proposed corrosion-measuring probe is effective in monitoring corrosion and shows promising application potential. This research also serves as a proof-of-concept study to demonstrate the capability of the electromechanical impedance technique in monitoring mass loss due to corrosion.
机译:金属结构的腐蚀广泛存在于多个行业,例如石油和天然气,民用基础设施,航空航天,机械,采矿和加工。当前可用的腐蚀监测方法基于不同的传感原理,它们具有各自的优点,而某些缺点可能会限制其在某些方面的应用。本文提出了一种用于监测腐蚀的机电阻抗测量式腐蚀测量探头。通过将圆形锆钛酸铅钛酸盐贴片附着到金属棒上来制造所提出的探针。与其他基于机电阻抗的腐蚀监测方法相比,该探头能够隔离结构复杂性,载荷变化和边界条件的影响。在实验研究中制造了五个探头,其中三个经受了加速腐蚀测试,以模拟腐蚀引起的质量损失。结果表明,随着腐蚀量的增加,电导信号的峰值幅度减小。电导签名的变化通过三个统计量化指标进行量化,即均方根偏差,平均绝对百分比偏差和相关系数偏差。所有这些指标随着腐蚀量的增加而增加,可以用作腐蚀过程的指标。这项研究证明了所提出的腐蚀测量探头能够有效地监测腐蚀,并显示出广阔的应用前景。这项研究还可以作为概念验证研究,以证明机电阻抗技术监测由于腐蚀引起的质量损失的能力。

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