Effects of Electrolyte Compositions and Electrical Parameters on Micro-Arc Oxidation Coatings on 7075 Aluminum Alloy

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES Journal of Composites Science Pub Date : 2023-11-11 DOI:10.3390/jcs7110472
Aqeel Abbas, Ting-Yi Wang, Hsin-Chih Lin
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Abstract

Aluminum alloys are widely used in a variety of industries nowadays for their high strength-to-weight ratio, good formability, low density, and recyclability. However, their poor corrosion and wear resistance properties restrict their applications. This study investigated the effects of electrical parameters and electrolyte compositions on the microstructures of micro-arc oxidation (MAO) film on a 7075 Al alloy substrate. The morphology, microstructure, and compositions of the MAO coatings were characterized using a scanning electron microscope (SEM), X-ray diffraction (XRD), and an electron probe micro-analyzer (EPMA). Furthermore, measurements of microhardness, corrosion resistance, and wear resistance were also conducted. The cathodic current and duty ratio are proportional to film thickness, which consequently improves the wear and corrosion resistance. The microstructural observations of the aluminate-based coatings revealed that increasing cathodic current reduces the pancake-like structures, and a lot of small pores appear on the top of the coatings, which makes the surface smoother. Moreover, the aluminate-based coatings are mainly composed of α-Al2O3 and γ-Al2O3, while the silicate-based coatings mainly consist of γ-Al2O3 and a small amount of α-Al2O3 phase. Due to the phase compositions, the microhardness of the aluminate-based coatings can reach 1300~1500 HV and exhibit better wear resistance than silicate-based coatings.
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电解液成分和电参数对7075铝合金微弧氧化涂层的影响
铝合金具有强度重量比高、成形性好、密度低、可回收等优点,广泛应用于各种工业领域。然而,其较差的耐腐蚀和耐磨损性能限制了其应用。研究了电学参数和电解液组成对7075铝合金微弧氧化膜微观组织的影响。此外,还进行了显微硬度、耐蚀性和耐磨性的测试。阴极电流和占空比与薄膜厚度成正比,从而提高了耐磨性和耐腐蚀性。对铝酸盐基涂层的微观组织观察表明,阴极电流的增加使涂层表面的饼状结构减少,涂层顶部出现大量的小孔隙,使涂层表面更加光滑。铝酸盐基涂层主要由α-Al2O3和γ-Al2O3组成,硅酸盐基涂层主要由γ-Al2O3和少量α-Al2O3组成。受相组成的影响,铝酸盐基涂层的显微硬度可达1300~ 1500hv,耐磨性优于硅酸盐基涂层。
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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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