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Fabrication of n-SiO_2 reinforced Al_2O_3 composite coatings on 7A52 aluminium alloy by micro-arc oxidation

机译:通过微弧氧化在7A52铝合金上制造N-SiO_2增强的Al_2O_3复合涂层

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Micro-arc oxidation (MAO) is an effective approach to improve the properties of aluminium and its alloys by forming ceramic coatings on the surface. However, the oxide layers often have a porous surface structure, which limits their mechanical properties. In order to enhance the properties of the layers produced by micro-arc oxidation, SiO_2 nanoparticles reinforced Al_2O_3 composite coatings were produced on 7A52 aluminium alloy by adding SiO_2 nanoparticles into the electrolyte. With the addition of SiO_2 nanoparticles in the electrolyte, the formation rate of Al_2O_3 coating enhanced considerably and the current density through the sample surface became much higher than that without SiO_2 at the same voltage. The coatings were investigated with X-ray fluorescence spectrometry (XRF), Scanning electron microscopy (SEM), Vickers hardness test, and reciprocating friction and wear test. Compared with the Al_2O_3 coatings without SiO_2 nanoparticles, the n-SiO_2 reinforced Al_2O_3 composite coatings are much denser and harder, and the wear resistance is also improved significantly. The improvement can be attributed to the enhancement of the surface structure and morphology of the n- SiO_2 reinforced Al_2O_3 composite coatings.
机译:微电弧氧化(MAO)是通过在表面上形成陶瓷涂层来改善铝及其合金的性能的有效方法。然而,氧化物层通常具有多孔表面结构,其限制其机械性能。为了增强通过微弧氧化产生的层的性质,通过将SiO_2纳米颗粒添加到电解质中,在7a52铝合金中制备SiO_2纳米颗粒增强的Al_2O_3复合涂层。随着电解质中的SiO_2纳米颗粒加入,Al_2O_3涂层的形成速率显着提高,并且通过样品表面的电流密度变得远高于同一电压的情况下的不具有SiO_2的高得多。用X射线荧光光谱法(XRF)研究涂层,扫描电子显微镜(SEM),维氏硬度测试和往复摩擦和磨损试验。与没有SiO_2纳米颗粒的Al_2O_3涂层相比,N-SiO_2增强的Al_2O_3复合涂层具有多大密集,更稠密,并且耐磨性也显着提高。改善可以归因于增强N-SiO_2增强Al_2O_3复合涂层的表面结构和形态。

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