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Accelerated growth of oxide film on aluminium alloys under steam: Part I: Effects of alloy chemistry and steam vapour pressure on microstructure

机译:蒸汽下铝合金上氧化膜的加速生长:第一部分:合金化学和蒸汽压对微观结构的影响

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Aluminium alloys were treated with steam of varying vapour pressures which resulted in the growth of aluminium oxyhydroxide layers of an average thickness of similar to 450-825 nm. The microstructure and composition of the generated layers were characterised by GD-OES, FEG-SEM, GI-XRD and TEM. The thickness of the oxide layer as well as the compactness increased with steam vapour pressure. The increase in vapour pressure also resulted in a better coverage over the intermetallic particles. Oxide layer showed a layered structure with more compact layer at the Al interface and a nano-scale needle like structure at the top. The kinetics of formation of film under steam was rapid; approx. 350 nm thick layers were generated within 5 s of steam treatment, however increase in thickness of the oxide retarded further growth. The enrichment or depletion of different alloying elements at the surface of aluminium as a result of alkaline etching pre-treatment influenced the thickness and growth of the oxide. Moreover the steam treatment resulted in the partial oxidation of second phase intermetallic particles present in the aluminium alloy microstructure. (C) 2015 Elsevier B.V. All rights reserved.
机译:用变化的蒸气压的蒸汽处理铝合金,这导致平均厚度类似于450-825nm的羟基氧化铝层的生长。通过GD-OES,FEG-SEM,GI-XRD和TEM对生成层的微观结构和组成进行了表征。氧化物层的厚度以及致密性随蒸汽压而增加。蒸气压的增加还导致更好地覆盖金属间颗粒。氧化物层显示出层状结构,在Al界面处具有更致密的层,在顶部具有纳米级针状结构。在蒸汽下成膜的动力学是快速的。大约在蒸汽处理后5秒内产生了350 nm厚的层,但是氧化物厚度的增加阻碍了进一步的生长。碱性蚀刻预处理的结果是,铝表面上不同合金元素的富集或耗尽影响了氧化物的厚度和生长。此外,蒸汽处理导致存在于铝合金微结构中的第二相金属间颗粒的部分氧化。 (C)2015 Elsevier B.V.保留所有权利。

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