> The passivity and passivity breakdown of low temperature p'/> Passivity and its breakdown on low temperature plasma carburized AISI 204Cu stainless steel in chloride‐containing solution
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Passivity and its breakdown on low temperature plasma carburized AISI 204Cu stainless steel in chloride‐containing solution

机译:含氯溶液中低温等离子体渗碳AISI 204CU不锈钢的定性及其分解

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> The passivity and passivity breakdown of low temperature plasma carburized AISI 204Cu stainless steel were studied in borate buffer solution (pH 8.4) in the absence and presence of 150?mM KCl, performing potentiodynamic polarization, potentiostatic transients, and electrochemical impedance spectroscopy (EIS) measurements complemented with scanning electron microscopy (SEM). In the absence of chloride ions, the surface treatment exercise a beneficial role in the passivating characteristics of AISI 204Cu. Plasma carburizing significantly modifies the electrochemical response of 204Cu steel resulting in a more stable passive film. In the presence of chloride ions, both the untreated and plasma carburized specimen experience localized corrosion (pitting). However, plasma carburizing increases the breakdown potential and the extent of passivation domain, indicating improved resistance to initiation of pitting corrosion. Furthermore, EIS measurements performed at the breakdown state evidenced higher R ct and lower depression angle values for the carburized specimen compared to the untreated alloy, confirming its better localized corrosion behavior. The high amount of interstitial carbon is believed to be responsible for the enhanced protective function of passive film which exerts an effective inhibiting action towards the localized corrosion process.
机译:
>在硼酸盐缓冲溶液(pH8.4)中,在硼酸盐缓冲溶液(pH8.4)中,在不存在和存在下,在150×mm KCl,进行电位动力学极化,电位静脉阻抗光谱(EIS)测量互补扫描电子显微镜(SEM)。在没有氯离子的情况下,表面处理在AISI 204CU的钝化特征中运动作用。等离子体渗碳显着改变204Cu钢的电化学响应,导致更稳定的无源膜。在氯离子的存在下,未处理和等离子体渗碳标本经历局部腐蚀(点蚀)。然而,等离子体渗碳增加了击穿电位和钝化结构域的程度,表明对蚀腐蚀的引发改善的抗性。此外,与未处理的合金相比,在击穿状态下执行的EIS测量可以证明渗碳样品的较高的 R 和较低的凹陷角度值,确认其更好的局部腐蚀行为。据信高度的间质碳负责被动膜的增强的保护功能,这对局部腐蚀过程产生了有效的抑制作用。

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