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Formation of Anticorrosive Film for Suppressing Pitting Corrosion on Al-Mg-Si Alloy by Steam Coating

机译:通过蒸汽涂层抑制Al-Mg-Si合金对蚀腐蚀的抗腐蚀膜的形成

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Al alloys offer excellent physical and mechanical properties, such as a low density, high specific strength, and good ductility. However, their low corrosion resistance has restricted their application in corrosive environments. There is a need, therefore, for a novel coating technology that is capable of improving the corrosion resistance of Al alloys. In the present study, we examined a steam-based method of forming a corrosion-resistant film on Al alloys. Al-Mg-Si alloy was used as the substrate. The cleaned substrates were set in an autoclave with ultrapure water as the steam source and processed using different temperatures and holding times, resulting in the formation of anticorrosive films on the alloy. FE-SEM images of the film surfaces showed that plate-like nanocrystals were densely formed over the entire surface. XRD patterns indicated that the film was composed mainly of AlOOH crystals. The potentiodynamic polarization curves revealed that the corrosion current density of the film-coated substrates significantly decreased, and that the pitting corrosion was completely suppressed, indicating that the corrosion resistance of the Al-Mg-Si alloy was improved by the film formed by means of steam coating.
机译:Al合金提供出色的物理和机械性能,例如低密度,高比强度和良好的延展性。然而,它们的低耐腐蚀性限制了它们在腐蚀性环境中的应用。因此,需要一种新型涂布技术,其能够提高Al合金的耐腐蚀性。在本研究中,我们研究了一种基于蒸汽的形成耐腐蚀膜的耐腐蚀性膜。 Al-Mg-Si合金用作基材。清洁的基材用纯水作为蒸汽源,并使用不同的温度和保持时间加工,导致合金上的防腐蚀膜形成。薄膜表面的Fe-SEM图像显示,在整个表面上密集地形成板状纳米晶体。 XRD图案表明,薄膜主要由Alooh晶体组成。电位动力学偏振曲线显示,膜涂覆的基材的腐蚀电流密度显着降低,并且完全抑制了蚀腐蚀,表明通过通过薄膜形成的膜改善了Al-Mg-Si合金的耐腐蚀性蒸汽涂层。

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