Evaluation of measuring magnetic anisotropy parameters method to monitor the development of erosion and corrosion wear of equipment

A. K. Adamenkov, I. Veselova
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Abstract

The paper presents the results of further research in the field of assessing the development of erosion and corrosion wear (ECW) of pipeline elements using a magnetic and anisotropic method to monitor the stress-strain state of ferromagnetic material. The conducted studies show that the recorded parameters of the magnetic anisotropic method, such as the principal mechanical stress difference, make it possible to unambiguously establish a quantitative correspondence to the level of stresses operating in the controlled zone. The possibility of determining the correspondence of the level of effective stresses to the value of the principal mechanical stress difference recorded by the StressVision scanner during the inspection of the structure is proven. The paper shows that in order to organize monitoring of the development of ECW using the magnetic anisotropic method it is necessary to monitor periodically changes in the principal mechanical stress difference and its dispersion and when fixing cut-off points, prescribe additional examinations with other more labor-intensive methods. The possibility of organizing monitoring of ECW equipment development based on the use of a pipeline resource forecasting mechanism in accordance with the provisions of regulatory documentation is confirmed.
监测设备侵蚀和腐蚀磨损发展的磁各向异性参数测量方法评估
本文介绍了在使用磁性各向异性方法监测铁磁材料应力应变状态以评估管道元件侵蚀和腐蚀磨损(ECW)发展情况领域的进一步研究成果。研究结果表明,磁性各向异性法记录的参数(如主要机械应力差)可以明确地确定与受控区内应力水平的定量对应关系。事实证明,在检测结构时,可以确定有效应力水平与 StressVision 扫描仪记录的主机械应力差值的对应关系。本文表明,为了使用磁性各向异性方法对 ECW 的发展情况进行监测,有必要定期监测主机械应力差及其分散性的变化,并在确定截止点时,使用其他更耗费人力的方法进行额外检查。根据规范性文件的规定,在使用管道资源预测机制的基础上组织对导电率测量设备发展情况进行监测的可能性得到了证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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