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Cyclic oxidation behaviour of rare earth oxide coated Fe-20Cr alloys

机译:稀土氧化物包覆的Fe-20Cr合金的循环氧化行为

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摘要

The use of rare earths (REs) to increase high temperature oxidation resistance of chromium dioxide and alumina forming alloys is well known, The REs can be added as elements (or oxides) to the alloys or applied as an oxide coating to the alloy surface. The sol gel technique is very efficient to apply fine oxide particle coatings. The influence of various RE oxide gels such as La_2O_3, CeO_2, Pr_2O_3, Nd_2O_3, Sm_2O_3, Gd_2O_3, Dy_2O_3, Y_2O_3, Er_2O_3 and Yb_2O_3 on cyclic oxidation behaviour (RT-900 deg C) of Fe-20Cr alloy has been studied. The morphology and coverage of the RE oxide gels varied with the type of RE. The cyclic oxidation resistance increases with increase in time at temperature required to reach a specific chromium dioxide layer thickness and this is influenced by RE ion radius and characteristics of the RE oxide coating such as morphology, stability, coverage, resistance to thermal stresses and consequently adhesion.
机译:众所周知,使用稀土(RE)可以提高二氧化铬和形成氧化铝的合金的高温抗氧化性。RE可以作为元素(或氧化物)添加到合金中,也可以作为氧化物涂层施加到合金表面上。溶胶凝胶技术非常有效地应用氧化物微粒涂层。研究了La_2O_3,CeO_2,Pr_2O_3,Nd_2O_3,Sm_2O_3,Gd_2O_3,Dy_2O_3,Y_2O_3,Er_2O_3和Yb_2O_3等各种RE氧化物凝胶对Fe-20Cr合金的循环氧化行为(RT-900℃)的影响。 RE氧化物凝胶的形态和覆盖率随RE的类型而变化。在达到特定的二氧化铬层厚度所需的温度下,抗循环氧化性随时间的增加而增加,这受RE离子半径和RE氧化物涂层的特性(例如形态,稳定性,覆盖率,抗热应力性和粘附性)的影响。

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