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The influence of alloying on the passive behavior of steels in a bicarbonate medium studied by electrochemistry and XPS

机译:合金化对电化学和XPS研究碳酸氢盐介质中钢被动行为的影响

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Passive films formed in 0.5 M NaHCO{sub}3 and 0.5 M NaHCO{sub}3 +0.01 M KCl aqueous solution on carbon steel, chromium steel and high speed steel have been characterized by electrochemistry and XPS. The influence of heat treatment on the passive film properties of chromium steel and HSS was also studied. Polarisation curves show that the steel composition influences the onset of passive film formation. Chromium and high speed steels show a higher ability to passivate as a result of the higher alloying content, corroborated by open circuit potential measurements. Passive current density values, obtained from potentiodynamic curves and by chronoamperometry, were higher for HSS than for carbon and chromium steels, and are associated with the presence of Mo and W oxides in the passive film, as confirmed by XPS analysis. The presence of 0.01 M chloride ion in solution shifts the passivation of chromium steel and USS to more positive potentials but does not interfere with passive film stability. For carbon steel, chloride ion does not influence the initiation of passive film formation, but diminishes film stability. Tempered chromium steel and HSS show passive film behaviour with similar characteristics to the respective as-received steels.
机译:通过电化学和XPS在0.5M NaHCO {Sub} 3和0.5M NaHCO {Sub} 3 + 0.01M KCl水溶液中形成的无源膜已经表征了碳钢,铬钢和高速钢。还研究了热处理对铬钢和HSS无源膜性能的影响。偏振曲线表明,钢结构会影响被动膜形成的发作。铬和高速钢显示出较高的合金化含量钝化能力,通过开路电位测量得到了较高的。从电位动力学曲线和按时间计量获得的被动电流密度值,HSS比碳和铬钢更高,并且与XPS分析证实的被动膜中的MO和W氧化物的存在相关。在溶液中存在0.01米的氯离子离子,使铬钢的钝化和USS更加积极电位,但不会干扰被动膜稳定性。对于碳钢,氯离子不会影响被动膜形成的启动,但减少薄膜稳定性。钢化铬钢和HSS显示了具有与相应的接收钢的类似特性的被动膜行为。

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