D. Feriyanto, Samir Sani Abdul Malik, Muhamad Fitri, I. Hidayat, H. Pranoto, Supaat Zakaria
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引用次数: 0
摘要
催化转化器(CATCO)材料是一种常见的陶瓷材料,比金属材料具有更高的脆性,因此成为研究的热点。因此,本研究将FeCrAl金属材料作为CATCO衬底,采用γ-Al2O3作为涂层,氧化镍(NiO)作为催化剂。镀层分析采用频率为35 kHz,超声时间分别为1、1.5、2、2.5和3小时的超声技术,采用磺胺酸电解质电镀技术,电流密度为8 a /dm2,变化时间分别为15、30、45、60和75分钟。结果表明,该材料主要由铁、铬和铝组成,其中铁元素占74.13wt%。超声波包覆的样品由Fe、Cr、Al、O和C元素组成,这是由于FeCrAl衬底由γ-Al2O3粉末沉积而成;通过电镀技术包覆的样品由Fe、Cr、Al、O、C、Ni和Na元素组成,这是由于NiO作为催化剂材料沉积而成。TGA分析发现,原料质量变化最大,为23.39 mg, UB+EL 30 min样品质量变化最小,为2.85 mg,反应点为0.07 mg/min,这可能是由于涂层过程中形成的氧化保护层所致。因此,涂层金属CATCO具有保护层热稳定性高、质量变化小等优点,取代陶瓷CATCO具有广阔的应用前景。
Effect of Material Composition on Thermal Stability Analysis of Coated and Uncoated FeCrAl CATCO by γ-Al2O3 Ultrasonic-Electroplating Technique
Catalytic Converter (CATCO) material become an interesting field to investigate due to the common CATCO material being ceramic material that has high brittleness than metallic materials. Therefore, this research investigates the FeCrAl metallic material as CATCO substrate that is coated by γ-Al2O3 as a washcoat, Nickel Oxide (NiO) as a catalyst. The coating analysis was performed by ultrasonic using a frequency of 35 kHz and various ultrasonic times of 1, 1.5, 2, 2.5, and 3 hours and electroplating technique by sulphamate types electrolyte using variation times of 15, 30, 45, 60, and 75 minutes, a current density of 8 A/dm2. The result shows that the raw material was consists of Fe, Cr and Al with Fe element was dominated for 74.13wt%. Coated sample by ultrasonic consists of Fe, Cr, Al, O, and C elements due to FeCrAl substrate was deposited by γ-Al2O3 powder and by electroplating technique consists of Fe, Cr, Al, O, C, Ni and Na elements due to NiO deposition as catalyst material. TGA analysis observed that the highest mass change was observed by raw material 23.39 mg and UB+EL 30 min samples for lowest mass change of 2.85 mg with a point of the reaction is 0.07 mg/min may be caused by a protective oxide layer that developed during the coating process. Therefore, the coated metallic CATCO has a promising prospect to replace the ceramic CATCO due to high thermal stability by protecting layer and low mass change.