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Current Thoughts on Reactive Element Effects in Alumina-Forming Systems: In Memory of John Stringer

机译:关于氧化铝成形体系中反应性元素效应的最新思考:纪念约翰·斯金格

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摘要

In memory of John Stringer (1934-2014), one of the leaders in studying the reactive element (RE) effects, this paper reviews the current status of understanding of the effect of RE dopants on high-temperature oxidation behavior, with an emphasis on recent research related to deploying alumina-forming alloys and coatings with optimal performance in commercial systems. In addition to the well-known interaction between indigenous sulfur and RE additions, effects have been observed with C, N, and O found in commercial alloys and coatings. While there are many similarities between alumina-forming alloys and coatings, the latter bring additional complicating factors such as the effects of O incorporation during thermal spraying MCrAlY coatings, coating roughness, and heat treatments that must be considered in optimizing the beneficial dopant addition. Analogies can be seen between RE effects in alloys and in the substrates beneath diffusion M-Al coatings. Recently, there has been more interest in the influence of mixed oxidant environments, since these may modify the manifestation of the RE effect. Finally, some thoughts are provided on optimizing the RE benefit and modeling oxidation of RE-doped alloys.
机译:为了纪念约翰·斯特林格(1934-2014),他是研究反应性元素(RE)效应的领导者之一,本文回顾了对RE掺杂物对高温氧化行为的影响的理解的现状,重点是最近的研究涉及在商业系统中部署具有最佳性能的氧化铝形成合金和涂层。除了众所周知的本机硫和稀土元素之间的相互作用外,在商用合金和涂层中发现的C,N和O也会产生影响。尽管形成氧化铝的合金和涂层之间有许多相似之处,但后者带来了其他复杂因素,例如在热喷涂MCrAlY涂层过程中掺入O的影响,涂层粗糙度以及在优化有益掺杂剂添加时必须考虑的热处理。在合金和扩散M-Al涂层下面的基底中的RE效应之间可以看到类似的现象。最近,人们对混合氧化剂环境的影响越来越感兴趣,因为它们可能会改变RE效应的表现。最后,提供了一些有关优化可再生能源效益和对可掺杂稀土合金进行氧化建模的想法。

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