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Non-Destructive Testing of Steel Corrosion Fluctuation Parameters Based on Spontaneous Magnetic Flux Leakage and Its Relationship with Steel Bar Diameter

机译:基于自发磁通量泄漏的钢腐蚀波动参数无损检测及其与钢筋直径的关系

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摘要

In an actual structure, the arrangement of steel bars is complicated, there are many factors affecting the corrosion of steel bars, and these factors affect each other. However, accurately reflecting the corrosion of steel bars in actual engineering through theoretical calculations is difficult. Besides, it is impossible to detect and evaluate steel bars rust completely and accurately. This article is based on spontaneous magnetic leakage detection technology and adopts the method of stage corrosion and scanning along the reinforcing bar. Based on spontaneous magnetic flux leakage detection technology, the linear change rate of the tangential component curve of the magnetic flux leakage signal generated after the corrosion of a steel bar is studied, and a comparison is made between the steel bar coated concrete samples with different steel bar diameters. In this paper, the “origin of magnetic flux leakage signal” is defined as a reference point, which is convenient for effectively comparing the magnetic signal curves under all operating conditions. Besides, the “rust-magnetic fluctuation parameter” is proposed to accurately reflect the sudden change of leakage magnetic field caused by disconnection due to the corrosion of a steel bar. A new data processing method is provided for the non-destructive testing of steel corrosion using the spontaneous magnetic flux leakage effect, which can effectively reduce the influence of steel bar diameter on magnetic flux leakage signal and improve the precision of non-destructive testing technology of steel bar corrosion using the metal magnetic memory effect.
机译:在实际的结构中,钢筋的排列是复杂的,影响钢筋腐蚀的因素很多,这些因素相互影响。但是,很难通过理论计算准确反映实际工程中钢筋的腐蚀情况。此外,不可能完全准确地检测和评估钢筋锈蚀。本文基于自发漏磁检测技术,采用阶段腐蚀和沿钢筋扫描的方法。基于自发的漏磁检测技术,研究了钢筋腐蚀后产生的漏磁信号的切向分量曲线的线性变化率,并比较了不同钢材涂覆的混凝土试样条直径。本文将“漏磁信号的起源”定义为参考点,方便了在所有工作条件下有效比较磁信号曲线。此外,提出了“锈磁波动参数”,以准确反映由于钢筋腐蚀而断开引起的漏磁场的突然变化。为利用自发磁通泄漏效应对钢筋腐蚀进行无损检测提供了一种新的数据处理方法,可以有效降低钢筋直径对漏磁信号的影响,提高了钢管无损检测技术的精度。钢筋腐蚀利用了金属的磁记忆效应。

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