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Ultrasonic Treatment Induced Fluoride Conversion Coating without Pores for High Corrosion Resistance of Mg Alloy

机译:超声波处理诱导氟化物转化涂层,无孔用于镁合金的高耐腐蚀性

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Fluoride conversion (MgF2) coating with facile preparation and good adhesion is promising to protect Mg alloy, but defects of pores in the coating lead to limited corrosion resistance. In this study, a compact and dense MgF2 coating was prepared by the combination of fluoride treatment and ultrasonic treatment. The ultrasonically treated MgF2 coating showed a compact and dense structure without pores at the frequency of 28 kHz. The chemical compositions of the coating were mainly composed of F and Mg elements. The corrosion potential of the ultrasonically treated Mg alloy shifted towards the noble direction in the electrochemical tests. The corrosion current density decreased due to the protectiveness of MgF2 coating without defects of pores or cracks. During immersion tests for 24 h, the ultrasonically treated Mg alloy exhibited the lowest H2 evolution (0.32 mL/cm2) and pH value (7.3), which confirmed the enhanced anti-corrosion ability of MgF2 coating. Hence, the ultrasonically treated fluoride coating had great potentials for their use in anti-corrosion applications of Mg alloy.
机译:氟化物转化率(MgF2)涂层具有容易的制剂和良好的粘合性是有望保护Mg合金,但涂层中孔的缺陷导致耐腐蚀性有限。在该研究中,通过氟化物处理和超声处理的组合来制备紧凑且致密的MGF2涂层。超声处理的MGF2涂层显示紧凑且致密的结构,无孔径为28kHz。涂层的化学成分主要由F和Mg元素组成。超声处理的Mg合金的腐蚀电位在电化学测试中朝向惰性方向移动。由于MgF2涂层的保护性而没有孔或裂缝的缺陷,腐蚀电流密度降低。在浸渍试验期间24小时,超声处理的Mg合金表现出最低的H 2进化(0.32ml / cm 2)和pH值(7.3),这证实了MgF2涂层的增强的抗腐蚀能力。因此,超声处理的氟化物涂层对其在Mg合金的抗腐蚀应用中使用具有很大的潜力。

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