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Preliminary Study on Preparation of Black Ceramic Coating Formed on Magnesium Alloy by Micro-arc Oxidation in Carbon Black Pigment-contained Electrolyte

机译:炭黑颜料含有微弧氧化在镁合金中形成黑陶瓷涂层的初步研究

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Based on orthogonal design, black ceramic coating was obtained on AZ91D magnesium alloy with addition of carbon black pigment in electrolyte by micro-arc oxidation (MAO). The blackness, thickness, phase, morphology and composition of the coating were analyzed by visual detection, eddy current thickness meter, XRD, digital cameras and EDS. The reasonable preparation parameters were obtained, and the influences of current density, carbon ink concentration, Na2WO4 concentration, Na2SiO3 concentration and sodium citrate concentration on the blackness and thickness of the coating were studied. The results showed that adopting constant current mode, the ceramic coating with good color uniformity, blackness of 0.9 and thickness over 30pm could be prepared on AZ91D magnesium alloy surface by MAO under the conditions of current density 3A/dm~2, carbon ink concentration 25mL/L, Na2WO4 concentration 1.5g/L, Na2SiO3 concentration 6g/L and sodium citrate concentration 0.3g/L. Carbon ink concentration and current density were the main effect factors of the coating blackness and thickness, respectively. Coating blackness rose significantly with the increasing of carbon ink concentration and coating thickness increased with the increasing of current density at first and then decreased. Coating blackness and thickness all increased with the increasing of Na2WO4 concentration. As Na2SiO3 concentration increased, coating blackness gradually decreased, and there was little change of coating thickness. Sodium citrate concentration has little influence on coating blackness, while coating thickness decreased as it increased.
机译:基于正交设计,通过微弧氧化(MAO)在AZ91D镁合金中获得黑陶瓷涂层。通过视觉检测,涡流厚度计,XRD,数码相机和EDS分析涂层的黑度,厚度,相,形态和组成。研究了合理的制备参数,研究了研究电流密度,碳油墨浓度,Na2WO4浓度,Na 2 SiO 3浓度和柠檬酸钠浓度对涂层的黑度和厚度的影响。结果表明,采用恒定电流模式,具有良好颜色均匀性的陶瓷涂层,在电流密度3A / DM〜2的条件下,通过MAO在AZ91D镁合金表面上制备0.9的黑度,厚度超过30磅,碳油墨浓度25ml / L,Na2wO4浓度1.5g / L,Na2siO3浓度6g / L和柠檬酸钠浓度0.3g / L.碳油墨浓度和电流密度分别是涂层黑度和厚度的主要效果因子。涂层黑度随着碳油墨浓度的增加而显着上升,涂层厚度在首先增加电流密度然后降低。随着NA2WO4浓度的增加,涂层黑色和厚度均增加。随着Na2SiO3浓度增加,涂层黑度逐渐降低,涂层厚度几乎没有变化。柠檬酸钠浓度对涂层黑度影响不大,而涂层厚度随着涂层厚度而降低。

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