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A general strategy for the ultrafast surface modification of metals

机译:金属超快表面改性的一般策略

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Surface modification is an essential step in engineering materials that can withstand the increasingly aggressive environments encountered in various modern energy-conversion systems and chemical processing industries. However, most traditional technologies exhibit disadvantages such as slow diffusion kinetics, processing difficulties or compatibility issues. Here, we present a general strategy for the ultrafast surface modification of metals inspired by electromigration, using aluminizing austenitic stainless steel as an example. Our strategy facilitates the rapid formation of a favourable ductile surface layer composed of FeCrAl or β-FeAl within only 10?min compared with several hours in conventional processes. This result indicates that electromigration can be used to achieve the ultrafast surface modification of metals and can overcome the limitations of traditional technologies. This strategy could be used to aluminize ultra-supercritical steam tubing to withstand aggressive oxidizing environments.
机译:表面改性是工程材料中必不可少的步骤,可以承受各种现代能量转换系统和化学加工行业中日益严酷的环境。然而,大多数传统技术表现出诸如扩散动力学慢,加工困难或相容性问题的缺点。在这里,我们以渗铝的奥氏体不锈钢为例,提出了一种受电迁移启发对金属进行超快表面改性的一般策略。我们的策略有助于在10µmin内快速形成由FeCrAl或β-FeAl组成的良好的延展性表面层,而传统工艺需要几个小时。该结果表明电迁移可用于实现金属的超快表面改性,并可以克服传统技术的局限性。该策略可用于对超超临界蒸汽管进行镀铝处理,以承受侵蚀性的氧化环境。

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