Effect of Al<sub>2</sub>O<sub>3</sub>-Ce<sub>2</sub>O<sub>3</sub> Composite Film on High Temperature Oxidation Resistance of 304 Stainless Steel

In order to improve the high temperature oxidation resistance of 304 stainless steel, Al2O3&#x00A0;thin films and Al2O3-Ce2O3&#x00A0;composite films were respectively prepared on the surface of 304 stainless steel by sol-gel method using aluminum isopropyl alcohol and CeCl3&#x00B7;7H2O a...

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Main Author: MA Jing, WANG Tiening, JIANG Qiuyue, FENG Zhihao, ZHANG Xin, LI Jianhui
Format: Article
Language:zho
Published: Editorial Department of Materials Protection 2024-10-01
Series:Cailiao Baohu
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Online Access:http://www.mat-pro.com/fileup/1001-1560/PDF/20241003.pdf
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Summary:In order to improve the high temperature oxidation resistance of 304 stainless steel, Al2O3&#x00A0;thin films and Al2O3-Ce2O3&#x00A0;composite films were respectively prepared on the surface of 304 stainless steel by sol-gel method using aluminum isopropyl alcohol and CeCl3&#x00B7;7H2O as raw materials.The effect of Al2O3-Ce2O3&#x00A0;composite films with different Ce/Al ratios (molar ratios, the same below) on the high-temperature oxidation resistance of 304 stainless steel at 900 ℃was studied through oxidation kinetics curves, XRD, SEM, and EDS analysis.Results showed that the weight gain and spalling values of the Al2O3-Ce2O3&#x00A0;film coated with Ce ∶Al =1 ∶10 were only 34.1%and 51.8%of those of the uncoated steel after cyclic oxidation at 900 ℃for 100 h, showing the optimal high temperature oxidation resistance.The Al2&#x00A0;O3-Ce2&#x00A0;O3&#x00A0;composite film reduced the oxygen partial pressure on the substrate surface of 304 stainless steel, which facilitated the formation of a protective Cr2O3&#x00A0;oxide layer and effectively suppressed the volatilization of Cr2O3.Furthermore, the addition of Ce2O3&#x00A0;reduced the thermal stress in the oxide scale and improved its adhesion to the substrate.Ce2O3&#x00A0;played an active element effect and changed the growth mechanism of oxide scale,so the high temperature oxidation resistance of composite film was significantly improved.
ISSN:1001-1560