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首页> 外文期刊>Materials Science >Corrosion Resistance of VC-FeCr and VC-FeCrC Coatings Obtained by Supersonic Gas-Flame Spraying
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Corrosion Resistance of VC-FeCr and VC-FeCrC Coatings Obtained by Supersonic Gas-Flame Spraying

机译:通过超声波气体喷涂获得的VC-FECR和VC-FECRC涂层的耐腐蚀性

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We study coatings of the VC-FeCr system with a thickness of 100 m on a substrate of D16 aluminum alloy deposited by the method of supersonic gas-flame spraying (High Velocity Oxygen Fuel Flame Spraying Process; propane-oxygen fuel). For comparison, we apply the method of plasma spraying of coatings in a dynamic vacuum guaranteeing the highest quality of gas-thermal coatings. The powders for spraying were produced by the method of mechanical alloying with the use of a planetary mill. As initial components, we used powders of vanadium carbide, ferrochrome, and a cobalt-nickel alloy. We evaluate the corrosion-electrochemical properties of the coatings in a 3% NaCl solution at a temperature of 20 +/- 0.2 degrees C and show that they are characterized by high corrosion resistances, which correlates with their porosity. As a result of long-term holding of samples with coatings in a 3% NaCl solution, we observe the penetration of the corrosive medium to the coating-substrate interface, which may lead to underfilm corrosion and exfoliation of the coating. It is shown that a VC-FeCrCo coating whose porosity does not exceed 0.5% obtained by the plasma method in a dynamic vacuum has the lowest corrosion resistance. Its corrosion currents are twice weaker than for the coating obtained by the HVOF method.
机译:我们研究厚度为100μm的VC-FECR系统的涂层,通过超声波气体喷涂方法(高速氧气燃料火焰喷涂工艺的方法,沉积的D16铝合金的基板上。为了比较,我们在动态真空中应用涂层等离子体喷涂方法,保证了最高质量的气体热涂层。通过使用行星磨机的机械合金化方法生产用于喷涂的粉末。作为初始组分,我们使用碳化钒,铬铁和钴镍合金的粉末。我们在20 +/- 0.2℃的温度下评估涂层中涂层的腐蚀 - 电化学性质,并表明它们的特征在于高耐腐蚀性,其与它们的孔隙率相关。由于3%NaCl溶液中具有涂层的样品的长期保持样品,我们观察到腐蚀性培养基渗透到涂层底物界面,这可能导致涂层的耐腐蚀和去剥离。结果表明,在动态真空中通过等离子体方法获得的孔隙率不超过0.5%的VC-Fecroco涂层具有最低的耐腐蚀性。其腐蚀电流弱于通过HVOF方法获得的涂层较弱。

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