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The study of mechanical properties and corrosion resistance of Molybdenum coating and Aluminum coating using Thermal Spray method on stainless steel 316L

机译:钼涂层机械性能及耐铝涂层在不锈钢316L中使用热喷涂法的耐腐蚀性研究

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Thermal spray is one of the most common coating technologies used in oil and gas industries. This research applied two thermal spray methods, namely High Velocity Oxygen Fuel for Molybdenum coating and Electric Arc Spray for Aluminum coating to compare the coating formed by different methods on stainless steel 316L substrates. The thickness of the Mo coating ranges from 15-20μm, whereas Al coating has a thickness of 90-100μm. Coating characterization was assessed by using several testing methods, i.e. the Positive Material Identification (PMI) to identify the coating composition, the metallographic testing to observe the interface bonding of substrate and coating, hardness test and wear test to characterize the mechanical properties of the coating and salt spray test to identify the corrosion resistance. Base on the PMI testing, the Al coating show 98.15% wt of aluminum, while Mo coating contains only 9.832% wt molybdenum. The SEM/EDX applied in the metallographic test shows that the coating has a mechanical bond with the surface of the substrate, in which the Mo coating has a more effective bond than the Al coating on the substrate. The aluminum coating has a lower hardness value of 96 HB, while the Mo coating is approximately 106 HB. The wear test shows the Mo coating has a better wear resistance than the Al coating because the Mo coating has a smaller slit width of 0.375mm. The salt spray test shows the two types of coating did not affect the scratched area but there is significant discolouring that indicates the formation of uniform corrosion.
机译:热喷涂是石油和天然气行业中最常见的涂料技术之一。该研究应用了两种热喷涂方法,即用于钼涂层的高速氧气燃料和用于铝涂层的电弧喷涂,以比较通过不同方法在不锈钢316L基板上形成的涂层。 Mo涂层的厚度范围为15-20μm,而Al涂层的厚度为90-100μm。通过使用几种测试方法来评估涂层表征,即鉴定涂料组合物,涂层组合物,观察涂层的界面粘合,硬度试验和磨损试验,以表征涂层的机械性能来评估涂层组合物的涂层表征,以表征涂层的机械性能和盐喷雾试验以识别耐腐蚀性。基于PMI测试,Al涂层显示98.15%的铝,而Mo涂层仅含有9.832%wt钼。在金相试验中施加的SEM / EDX表明,涂层具有与基板表面的机械结合,其中MO涂层具有比基板上的Al涂层更有效的键。铝涂层具有较低的硬度值为96Hb,而Mo涂层约为106hb。磨损试验表明,Mo涂层具有比Al涂层更好的耐磨性,因为Mo涂层的狭缝宽度为0.375mm。盐雾试验表明两种类型的涂层不影响划痕区域,但存在显着的变色,表明形成均匀腐蚀。

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