首页> 外文期刊>Corrosion science >Understanding corrosion via corrosion product characterization: I. Case study of the role of Mg alloying in Zn-Mg coating on steel
【24h】

Understanding corrosion via corrosion product characterization: I. Case study of the role of Mg alloying in Zn-Mg coating on steel

机译:通过腐蚀产物表征了解腐蚀:I.镁合金在钢上锌镁涂层中作用的案例研究

获取原文
获取原文并翻译 | 示例
           

摘要

In the present work the corrosion inhibitive role of Mg in Zn-Mg coatings is considered for different stages of corrosion. Corrosion product characterization was carried out using XRD, IRRAS, MEB-FEG-EDS on technical Zn-Mg coatings after various exposure times in a standardized cyclic corrosion test. The results are compared with artificial corrosion products obtained by chemical and electrochemical synthesis. The importance of the ageing and the role of the atmospheric CO_2 on the nature and morphology of the corrosion products are discussed. The corrosion resistance of Zn-Mg alloy is correlated with the stabilization of simonkolleite against its transformation into smithsonite, hydrozincite, and zincite during ageing cycles in presence of CO_2. The stabilization appears to be due to the preferential formation of magnesium carbonates. Thermodynamic modeling and titrometric analysis demonstrate that Mg~(2+) enhances simonkolleite during dry-wet cycling by (1) removing carbonate from the environment and thereby limiting of the transformation of simonkolleite into zincite, smithsonite, and hydrozincite and by (2) buffering the pH of the electrolyte around 10.2 due to the precipitation of Mg(OH)_2 preventing the dissolution of zinc based corrosion products into soluble hydroxide complexes.
机译:在目前的工作中,考虑了镁在锌镁涂层中的腐蚀抑制作用,用于腐蚀的不同阶段。在标准的循环腐蚀试验中,经过各种暴露时间后,使用XRD,IRRAS,MEB-FEG-EDS对工业Zn-Mg涂层进行了腐蚀产物的表征。将结果与通过化学和电化学合成获得的人工腐蚀产物进行比较。讨论了老化的重要性以及大气中的CO_2对腐蚀产物的性质和形态的影响。 Zn-Mg合金的耐蚀性与SIMonkolleite的稳定性有关,后者在存在CO_2的时效循环过程中不会转变为新铁矿,水锌矿和锌铁矿。稳定似乎是由于优先形成碳酸镁。热力学建模和滴定分析表明,Mg〜(2+)在干湿循环过程中通过以下方式增强了新蒙脱石:(1)从环境中除去碳酸盐,从而限制了新蒙脱石向锌铁矿,新铁矿和水锌矿的转化以及(2)缓冲由于Mg(OH)_2的沉淀,电解液的pH值约为10.2,从而阻止了锌基腐蚀产物溶解到可溶性氢氧化物络合物中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号