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Incorporation of alloying elements into porous anodic films on aluminium alloys: The role of cell diameter

机译:将合金元素掺入铝合金上的多孔阳极膜:细胞直径的作用

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The presence of alloying elements in aluminium alloys has a significant impact on the anodizing behaviour and results in the formation of porous anodic films with different chemical composition and morphology compared with those generated on pure aluminium. In this work, the effect of alloy element enrichment at the alloy/film interface and of cell diameter on the incorporation and distribution of alloying element species in porous anodic films is considered. It is proposed that above a critical cell diameter, D-crit, the critical alloy enrichment sufficient for oxidation of the alloying element and its incorporation into the film can be maintained across the alloy/film interface. Below D-crit, only a subcritical enrichment can be maintained and the alloying element is then incorporated into the film at the cell boundaries. D-crit depends on the concentration of the alloying element in solid solution and on the critical enrichment. The proposed role of D-crit is supported by alloying element distributions from literature data for model Al-Au and Al-W alloys and new results for anodic films on AA 2024-T3 alloy. (C) 2018 Elsevier Ltd. All rights reserved.
机译:铝合金中的合金元素的存在对阳极氧化行为具有显着影响,并导致与在纯铝上产生的那些相比,形成具有不同化学成分和形态的多孔阳极膜。在这项工作中,考虑了合金/薄膜界面和细胞直径对多孔阳极膜中合金元素物种掺入和分布的合金元素富集的影响。提出,高于临界细胞直径,D-CRIT,足以氧化合金元素的关键合金富集及其掺入薄膜中,可以在合金/薄膜界面上保持。低于D-CRIT,只能保持亚临界富集,然后将合金元素掺入细胞界面的膜中。 D-CRIT取决于固体溶液中合金元素的浓度和关键富集。 D-CRIT的拟议作用是由Al-Au和Al-W合金的文献数据的合金元素分布以及AA 2024-T3合金上的阳极膜的新结果。 (c)2018年elestvier有限公司保留所有权利。

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