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The erosive wear of mild and stainless steels under controlled corrosion in alkaline slurries containing alumina particles

机译:在含有氧化铝颗粒的碱性浆料中,在受控腐蚀下低碳钢和不锈钢的腐蚀磨损

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The erosive wear in an alkaline slurry containing alumina particles of three typical engineering materials, the mild steel BS 6323 (Fe-C), the AISI 410 stainless steel (Fe-Cr-C), and the AISI 304 stainless steel (Fe-Cr-Ni), was carried out, by means of rotating cylinder, three-electrode erosion-corrosion test, with a view to investigation into the roles of the typical elements and the mechanical and chemical properties in the erosive wear under simultaneous controlled corrosion. The total weight loss of erosion-corrosion was obtained by precision weighing and the result was compared and interpreted, for each material, by a full microscopical examination of the erosion-corrosion scars using scanning electron microscopy (SEM). It was found that the overall performance under erosion-corrosion in an descending order was the stainless steels AISI 304, AISI 410, and the mild steel, although the precise difference in performance was dependent upon the process conditions. Such a ranking of performance was not in total consistence with that expected only from the mechanical or the chemical property differences of the materials concerned. The individual contribution of each erosion and corrosion process was thus further separated through corrosion charge conversion using the Faraday's second law and the results were interpreted by discussion, on basis of the experimental and microscopical evidences, of the main factors that influenced the mechanical and wear behaviour, in conjunction with those influencing corrosion and passivity. Finally, schematic diagrams were proposed to outline the typical erosion and corrosion features thus obtained for all the three materials during erosion-corrosion.
机译:碱性浆料中的侵蚀性磨损,其中包含三种典型工程材料的氧化铝颗粒,低碳钢BS 6323(Fe-C),AISI 410不锈钢(Fe-Cr-C)和AISI 304不锈钢(Fe-Cr -Ni),通过旋转圆筒进行三电极腐蚀-腐蚀试验,以研究典型元素的作用以及机械腐蚀和化学性能在同时控制腐蚀的情况下在腐蚀磨损中的作用。通过精密称重获得腐蚀腐蚀的总重量损失,并对每种材料的结果进行比较和解释,方法是使用扫描电子显微镜(SEM)对腐蚀腐蚀痕迹进行全面的显微镜检查。发现在腐蚀-腐蚀下的整体性能按降序排列是不锈钢AISI 304,AISI 410和低碳钢,尽管性能的精确差异取决于工艺条件。这样的性能等级与仅根据有关材料的机械或化学性质差异所预期的性能等级并不完全一致。因此,使用法拉第第二定律通过腐蚀电荷转换进一步分离了每个腐蚀和腐蚀过程的个体贡献,并根据实验和微观证据讨论了影响机械和磨损行为的主要因素,从而对结果进行了解释。 ,以及那些影响腐蚀和钝化的因素。最后,提出了示意图以概述由此在腐蚀过程中对所有三种材料获得的典型腐蚀和腐蚀特征。

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