Method of assessment of cavitation-erosion wear resistance of metals in electrolyte media

Nadiya Stechyshynа, Myroslav Stechyshyn, M. Lukyanyuk, Andriy Martynyuk, M. Tsepenyuk
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Abstract

The paper considers a method of assessing the cavitation-erosion wear resistance of metals, which can be used to obtain data on the cavitation-erosion wear resistance of materials and coatings in laboratory conditions, which correspond to the data of operational tests. The essence of the method is the intensification of corrosion processes during cavitation-erosive wear of samples on a magneto-strictive vibrator (MSV) with the help of their anodic polarization. The value of the polarization current is found by the values of the coefficient of amplification of the mechanical factor of the destruction of the surface during tests on a magneto-strictive vibrator (MSV) and the data of field tests. Corrosion current in a given environment is found during full-scale tests. To reduce the labor intensity and time of research, operational data is obtained on a specially designed and manufactured installation, which is a simplified version of a hydrodynamic tube (HT). The developed assessment method applies only to corrosive electrolyte environments.
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金属在电解介质中抗空蚀磨损性能的评定方法
本文提出了一种评估金属空蚀磨损性能的方法,该方法可以在实验室条件下获得材料和涂层的空蚀磨损性能数据,并与实际试验数据相对应。该方法的实质是利用磁致伸缩振动器(MSV)的阳极极化,研究样品在空化-侵蚀磨损过程中的腐蚀强化过程。根据磁致伸缩振动器试验中表面破坏的力学因子放大系数和现场试验数据,确定了极化电流的取值。腐蚀电流在给定环境中是在全尺寸测试中发现的。为了减少研究的劳动强度和时间,操作数据是在一个专门设计和制造的装置上获得的,这是一个简化版的水动力管(HT)。所开发的评估方法仅适用于腐蚀性电解质环境。
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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