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首页> 外文期刊>Surface & Coatings Technology >Effect of porosity sealing treatments on the corrosion resistance of high-velocity oxy-fuel (HVOF)-sprayed Fe-based amorphous metallic coatings
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Effect of porosity sealing treatments on the corrosion resistance of high-velocity oxy-fuel (HVOF)-sprayed Fe-based amorphous metallic coatings

机译:孔隙密封处理对高速喷涂含氧燃料(HVOF)的铁基非晶态金属涂层耐蚀性的影响

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摘要

High-velocity oxy-fuel-sprayed FeCrMoMnWBCSi amorphous metallic coatings were sealed with sodium orthosilicate (Na_3SiO_4), aluminium phosphate (AlPO_4), and cerium salt sealants. The microstructure of the sealed coatings was characterised by scanning electron microscopy, energy dispersive spectrometer, and X-ray diffraction. Corrosion behaviour was examined using electrochemical methods of potentiodynamic polarisation, cyclic polarisation, electrochemical impedance spectroscopy, and Mott-Schottky tests. The results indicated that the uniform corrosion resistance of the three sealed coatings was enhanced greatly, and the passive current densities were decreased by one order of magnitude after the sealing treatments. The AlPO_4 sealant can penetrate the coatings by no less than 50μm and enhance their hardness, which exhibited a more uniform corrosion resistance, fairly good pitting corrosion resistance, and can be applied in long-term corrosive and/or abrasive environments. The cerium salt-sealed coating showed better pitting corrosion resistance but inferior corrosion resistance in the local regions of micro-cracks, which was practically used for temporary corrosion protection. The Na_3SiO_4-sealed coating showed better uniform corrosion resistance and inferior pitting corrosion resistance, which can be applied in short-term corrosion environments. The stability of the passive film affected the corrosion behaviour of the sealed coatings. The AlPO_4-sealed coating performed better as a protective passive film during the long-term immersion test for a lower defect concentration and a more protective passive film.
机译:用原硅酸钠(Na_3SiO_4),磷酸铝(AlPO_4)和铈盐密封剂密封高速喷涂含氧燃料的FeCrMoMnWBCSi非晶态金属涂层。通过扫描电子显微镜,能量分散光谱仪和X射线衍射对密封涂层的微观结构进行了表征。使用电位动力学极化,循环极化,电化学阻抗谱和莫特-肖特基试验的电化学方法检查了腐蚀行为。结果表明,密封处理后,三种密封涂层的均匀耐蚀性得到了大大提高,无源电流密度降低了一个数量级。 AlPO_4密封胶可以穿透涂层不少于50μm并提高其硬度,表现出更均匀的耐腐蚀性,相当好的耐点蚀性,并且可以在长期的腐蚀和/或磨蚀环境中使用。铈盐密封涂层在微裂纹的局部区域表现出较好的耐点蚀性,但耐蚀性较差,实际上被用于临时腐蚀防护。 Na_3SiO_4密封涂层表现出更好的均匀耐蚀性和较差的点蚀耐蚀性,可用于短期腐蚀环境。钝化膜的稳定性影响密封涂层的腐蚀行为。在长期浸没测试中,AlPO_4密封涂层作为保护性钝化膜表现得更好,因为较低的缺陷浓度和保护性更好的钝化膜。

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