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A high anticorrosive chromium-free conversion coating prepared with an alkaline conversion bath on electroless Ni-P coating

机译:在化学镀Ni-P涂层上用碱转化浴制备的高防腐无铬转化膜

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摘要

A molybdate conversion coating (MCC) thin film was deposited on electroless Ni-P (ENP) coating by treating in an alkaline chemical conversion bath. A chromate conversion coating (CCC) was also prepared for comparison. Surface morphology of the conversion coatings exhibited no obvious difference with the as-plated ENP coating. Acid exposure test indicated that the oxidation resistance of the MCC was improved about 45 times higher than that of untreated ENP coating, respectively. The corrosion current density (6) values for both passivated surfaces were dramatically reduced by conversion treatment. However, MCC specimen showed the lowest i(corr) value of 0.19 mu A cm(-2) compared to 6.55 mu A cm(-2) for ENP and 0.38 mu A cm(-2) for CCC. EIS studies revealed that the MCC thin film possessed the highest charge transfer resistance (R-ct) value, about 5 times higher than the CCC. XPS analysis indicated that the MCC thin film was made up of Ni, P, O, and Mo; the values of binding energy (BE) implied that both Ni and P participated in the formation of conversion coating thin film and the Mo was in the form of MO3. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在碱性化学转化浴中进行处理,将钼酸盐转化膜(MCC)薄膜沉积在化学Ni-P(ENP)涂层上。还准备了铬酸盐转化膜(CCC)进行比较。转化膜的表面形貌与电镀后的ENP膜无明显差异。酸暴露测试表明,MCC的抗氧化性分别比未处理的ENP涂层提高了约45倍。通过转换处理,两个钝化表面的腐蚀电流密度(6)值都大大降低。但是,MCC标本显示的最低i(corr)值为0.19μAcm(-2),而ENP为6.55μAcm(-2),CCC为0.38μAcm(-2)。 EIS研究表明,MCC薄膜具有最高的电荷转移电阻(R-ct)值,约为CCC的5倍。 XPS分析表明,MCC薄膜由Ni,P,O和Mo组成。结合能(BE)的值表明Ni和P都参与了转化膜的形成,而Mo以MO3的形式存在。 (C)2015 Elsevier B.V.保留所有权利。

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