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In situ preparation of graphene coating bonded to stainless steel substrate via Cr-C bonding for excellent anticorrosion and wear resistant

机译:通过Cr-C键合原位制备与不锈钢基材键合的石墨烯涂层,具有出色的防腐性和耐磨性

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摘要

Corrosion protection of metals is an active research area due to its importance for commercial applications. However, conventional coating exhibits limited durability, thermal stability and conductivity and is thus not suitable. Although graphene has shown the potential for corrosion protection, it is difficult to directly grow high-quality graphene on commercial steels. Herein, a simple ball-milling method is used to prepare graphene coating on stainless steel balls (SS) for corrosion protection, in which the SS are uniformly encapsulated with graphene coatings by in situ mechanical peeling of graphite crystals. The graphene coating is strongly bonded to the SS via Cr-C bonding, which provides a base for long-lasting corrosion protection. Corrosion analysis reveals that the corrosion rate of the graphene covered SS was reduced up to twenty times lower than that of the bare SS. Furthermore, in situ exfoliated graphene coating can significantly improve the wear resistance, which the wear rate decreased from 6.45 x 10(-13) to 4.31 x 10(-13) m(2)N(-1). The present study can also provide a straightforward approach towards preparing graphene coatings on metal substrate.
机译:金属的腐蚀防护由于其在商业应用中的重要性而成为活跃的研究领域。然而,常规涂层表现出有限的耐久性,热稳定性和导电性,因此不适合。尽管石墨烯已显示出防腐的潜力,但很难在商用钢上直接生长高质量的石墨烯。在此,使用简单的球磨法在不锈钢球(SS)上制备用于腐蚀防护的石墨烯涂层,其中通过石墨晶体的原位机械剥离将SS用石墨烯涂层均匀地包封。石墨烯涂层通过Cr-C键牢固地与SS结合,为持久的腐蚀防护提供了基础。腐蚀分析表明,石墨烯覆盖的SS的腐蚀速率比裸SS降低了二十倍。此外,原位脱落的石墨烯涂层可以显着提高耐磨性,其磨损率从6.45 x 10(-13)降至4.31 x 10(-13)m(2)N(-1)。本研究还可以提供一种在金属基材上制备石墨烯涂层的直接方法。

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