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Effects of alloying elements on microstructure and protective properties of Al2O3 coatings formed on aluminum alloy substrates by plasma electrolysis

机译:合金元素对等离子电解在铝合金基体上形成的Al2O3涂层组织和保护性能的影响

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摘要

Hard alumina coatings were formed on three typical Al alloys using a plasma electrolytic oxidation (PEO) process. The microstructure and protective behavior of the coatings were characterized in the context of the elements alloyed in the substrates. The substrates investigated were three commercial aluminum alloys (Al 6061, 2024, 7075) and various Al-x-Mg binary alloys with x = 0.6-4.6 wt% The major portion of all coating films consisted of a mixture of gamma- and alpha-alumina on top of a very thin amorphous substrate-based layer. Examination of the coatings on the commercial alloys reveals that the ratio of alpha- to gamma-alumina is inversely proportional to the total concentration of residual Mg, Cu, and Zn ions in the coatings. Additional experiments on Al-x-Mg binary alloy substrates suggest that Mg ions play the most important role in suppressing the transition of gamma- to alpha-alumina. Our results suggest that Mg content >= 3 wt.% yields only the gamma-alumina. We propose a mechanism that correlates the residual elements in the coatings to the alumina phase transition. A higher content of the dense (X-alumina in the coatings yielded greater hardness as well as improved wear tolerance and crack resistance of the coating layers.
机译:使用等离子电解氧化(PEO)工艺在三种典型的铝合金上形成硬质氧化铝​​涂层。涂层的微观结构和保护行为是通过在基材中合金化元素的背景来表征的。所研究的基材是三种商用铝合金(Al 6061、2024、7075)和各种x = 0.6-4.6 wt%的Al-x-Mg二元合金。所有涂膜的主要部分由γ-和α-的混合物组成极薄的基于非晶质基材的层顶部的氧化铝。对商用合金涂层的检查表明,α-γ-氧化铝的比例与涂层中残留的Mg,Cu和Zn离子的总浓度成反比。在Al-x-Mg二元合金基材上进行的其他实验表明,Mg离子在抑制γ-氧化铝过渡到α-氧化铝方面发挥着最重要的作用。我们的结果表明,Mg含量> = 3 wt。%只会产生γ-氧化铝。我们提出了一种机制,使涂层中的残留元素与氧化铝相变相关。涂层中较高含量的致密(X-氧化铝)产生更高的硬度,并改善了涂层的耐磨性和抗裂性。

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