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Effect of Mullite Film Layers on the High-Temperature Oxidation Resistance of AISI 304 Stainless Steel

机译:莫来矿膜层对AISI 304不锈钢高温抗氧化性的影响

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Protective coating is an effective way to extend materials’ high-temperature service life. In order to improve the high-temperature oxidation resistance of AISI 304 stainless steel, mullite films with different layers were successfully prepared by the sol-gel method and the sintering process on the surface of stainless steel. The effect of the film layers on the high-temperature oxidation resistance of stainless steel at 900 °C for 100 h was studied. The analysis results of oxidation kinetics, X-rays diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive analysis (EDS) show that Al1.4Si0.3O2.7 mullite film effectively improved the high-temperature oxidation resistance of stainless steel. The sample with three-layer mullite film has the best high-temperature oxidation resistance. The mass gain and oxidation spalling mass are only 4.6% and 34.5% of those of the uncoated sample after 100 h cyclic oxidation at 900 °C. A chromium oxide layer was formed at the interface of mullite film and the substrate during the sintering process. The generation of selective Cr2O3 scale was promoted at the cyclic oxidation stage so that the sample with three-layers has excellent high-temperature oxidation resistance.
机译:保护性涂层是一种延长材料的高温使用寿命的有效途径。为了改善AISI 304不锈钢的高温氧化性,通过溶胶 - 凝胶法和不锈钢表面的烧结过程成功制备了具有不同层的莫来石膜。研究了薄膜层对900℃的不锈钢高温抗氧化性100小时的影响。氧化动力学的分析结果,X射线衍射(XRD),扫描电子显微镜(SEM)和能量分散分析(EDS)显示,Al1.4SI0.3O2.7莫来石膜有效地提高了不锈钢的高温抗氧化性。具有三层莫来石膜的样品具有最佳的高温抗氧化性。在900℃下100小时环氧化后,质量增益和氧化剥落质量仅为未涂覆的样品的4.6%和34.5%。在烧结过程中在莫来石膜和基板的界面处形成氧化铬层。在环状氧化阶段促进了选择性CR2O3刻度的产生,使得具有三层的样品具有优异的高温氧化性。

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