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Characterization of a C-Based Coating Applied on an AA6063 Alloy and Developed by a Novel Electrochemical Synthesis Route

机译:在AA6063合金上施加C基涂层的表征,通过新型电化学合成路线开发

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摘要

This research aimed to obtain a C-based coating electrochemically applied on an AA6063 alloy. Two electrochemical cells were designed and manufactured to obtain the C-based coating film on flat and cylindrical samples. Structural and microstructural characterizations were performed along with fatigue and corrosion performance testing. The structural and microstructural characterization revealed that the C-based coating deposited on AA6063 corresponded to carbon nanofibers and/or polycrystalline graphite. The performance testing showed an increase in fatigue life along with a decrease in corrosion resistance. The fracture surfaces of the fatigued samples were inspected by Scanning Electron Microscopy and 3D optical microscopy to correlate them with fatigue life estimation. The aforementioned process is a step towards the future development of a complete coating system that will overcome corrosion susceptibility. The carbon film obtained by this electrochemical route has not previously been reported elsewhere.
机译:该研究旨在获得在AA6063合金上电化学施加的基于C基涂层。设计并制造了两个电化学电池以在平坦和圆柱形样品上获得基于C的涂膜。结构和微观结构表征随着疲劳和腐蚀性能测试进行。结构和微观结构表征显示,在AA6063上沉积的C基涂层对应于碳纳米纤维和/或多晶石墨。性能测试显示疲劳寿命的增加以及耐腐蚀性的降低。通过扫描电子显微镜和3D光学显微镜检查疲劳样品的断裂表面,以将它们与疲劳寿命估算相关联。上述过程是朝向未来发展的完整涂层系统的一步,这将克服腐蚀易感性。通过此电化学途径获得的碳膜尚未在其他地方报告。
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