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Microstructure and corrosion behavior of AISI 316L duplex treated by means of ion nitriding and plasma based ion implantation and deposition

机译:离子氮化和基于等离子体的离子注入和沉积处理的AISI 316L双相钢的组织和腐蚀行为

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Austenitic stainless steels are the preferred materials for mechanical components in the food, oil and chemical industries due to their good corrosion resistance but they often suffer severe wear due to their poor tribological properties. Plasma surface engineering has been extended to stainless steel hardening, through the modification of the surface with ion nitriding or the application of hard coatings. In this work, AISI 316L samples were coated with titanium nitride by means of a cathodic arc (CA) and this technique was combined with plasma immersion ion implantation, in a process called plasma based ion implantation and deposition (PBII&D). The effect on corrosion resistance was analyzed, also considering ion nitriding as a pre-treatment. Microstructure and composition were analyzed by means of glancing angle XRD, SIMS, SEM, SEM-FIB and EDS. Localized corrosion resistance was analyzed in a cyclic potentiodynamic polarization experiment in 3.5% NaCl solution, and the corroded surface was analyzed with AFM, SEM and EDS as well. It was found that nitriding at 400 °C produces a thin nitrided layer with good corrosion resistance. A duplex TiN coating resulted in a further improvement of the corrosion resistance. Comparing cathodic arc and PBII&D coating techniques, the last one gives the thickest film and also the best corrosion behavior with good adhesion.
机译:奥氏体不锈钢由于具有良好的耐腐蚀性,因此是食品,石油和化学工业中机械部件的首选材料,但由于其摩擦学性能较差,它们通常会遭受严重磨损。等离子体表面工程已经扩展到不锈钢硬化,方法是通过离子渗氮对表面进行改性或应用硬质涂层。在这项工作中,AISI 316L样品通过阴极电弧(CA)涂覆了氮化钛,并将该技术与等离子体浸没离子注入相结合,称为基于等离子体的离子注入和沉积(PBII&D)。分析了对耐蚀性的影响,还考虑了离子渗氮作为预处理。通过掠射角XRD,SIMS,SEM,SEM-FIB和EDS分析了组织和组成。在3.5%NaCl溶液中,通过循环电位极化实验分析了局部耐腐蚀性,并使用AFM,SEM和EDS分析了腐蚀的表面。发现在400℃下氮化产生具有良好耐腐蚀性的薄氮化层。 TiN双相涂层导致耐蚀性进一步提高。比较阴极电弧和PBII&D涂层技术,最后一种可提供最厚的膜,并且具有最佳的腐蚀性能和良好的附着力。

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