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Synergistic effects of micro-abrasion–corrosion of UNS S30403, S31603 and S32760 stainless steels

机译:UNs s30403,s31603和s32760不锈钢微磨损腐蚀的协同效应

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摘要

In this study, the synergistic effects of abrasion and corrosion on UNS S30403, S31603 and S32760 stainless steels have been investigated using a micro-abrasion test rig. The stainless steel samples have been studied under both pure abrasion (PA) and abrasion–corrosion (AC) conditions simulated by using silicon carbide based slurries in either distilled water or 3.5% sodium chloride solutions. Tests have been conducted at various abrasive concentrations (0.006–0.238 g/cm3) and at 38 and 180m sliding distance to enable the interactions between abrasion and corrosion to be better understood. Wear mode identification and regime mapping was used to establish the dominant wear mechanism at the different slurry concentrations. The synergistic effect has been quantified and related to the material composition and the grooving or rolling abrasive wear mechanisms present. The synergistic levels were typically positive and have been discussed in terms of their dependence on the integrity of the passive films and the repassivation kinetics. The three-body abrasion–corrosion rates for all steels were found to be 14 times higher than two-bodyabrasion–corrosion rates. S30403 shows weak repassivation performance with electrochemical activity being proportional to mechanical activity. S31603 showed a constant electrochemical activity over a variety of mechanical conditions, indicating a stronger repassivation performance than S30403. S32760 has the best repassivation performance with negative synergistic characteristics until abrasion rate are such that depassivationoccurs and the electrochemical activity is then comparable to the other steels.
机译:在这项研究中,已经使用微磨损试验机研究了磨损和腐蚀对UNS S30403,S31603和S32760不锈钢的协同作用。通过在蒸馏水或3.5%氯化钠溶液中使用碳化硅基浆料对不锈钢样品进行了纯磨蚀(PA)和磨蚀腐蚀(AC)条件的模拟。在各种磨料浓度(0.006-0.238 g / cm3)下以及在38和180m的滑动距离下进行了测试,以使磨损和腐蚀之间的相互作用得到更好的理解。磨损模式识别和状态映射用于建立不同浆液浓度下的主要磨损机制。协同作用已被量化,并且与材料成分以及存在的开槽或滚动磨料磨损机理有关。协同水平通常是积极的,并且已经根据它们对无源膜的完整性和再钝化动力学的依赖性进行了讨论。发现所有钢的三体磨损-腐蚀速率比二体磨损-腐蚀速率高14倍。 S30403显示弱的钝化性能,电化学活性与机械活性成正比。 S31603在各种机械条件下均表现出恒定的电化学活性,表明其钝化性能比S30403强。 S32760具有最佳的再钝化性能,具有负的协同特性,直到磨损率达到发生钝化的程度,然后电化学活性即可与其他钢媲美。

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