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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Fe- and Si-Enriched Secondary Precipitates and Surface Roughness on Pore Formation on Aluminum Plate Surfaces During Anodizing
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Effect of Fe- and Si-Enriched Secondary Precipitates and Surface Roughness on Pore Formation on Aluminum Plate Surfaces During Anodizing

机译:富铁和硅的二次沉淀及表面粗糙度对阳极氧化过程中铝板表面孔隙形成的影响

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摘要

Two twin roll casts (TRCs) and one hot rolled (HR) AA 1235 aluminum alloy plates with different microstructures are prepared. The plates were electrolyzed in a 1.2 wt% HCl solution with a voltage of 21 V and a current of 1.9 mA. The shape, size, and number of pores formed on the surfaces of these plates were analyzed and correlated with the microstructures of the plates. It is found that pores are easier to form on the alloy plates containing subgrains with a lower dislocation density inside the subgrains, rather than along the grain boundaries. Furthermore, Fe- and Si-enriched particles in the AA1235 aluminum alloys lead to the formation of pores on the surface during electrolyzing; the average precipitate sizes of 4, 3.5, and 2 μm in Alloy 1#, Alloy 2# and Alloy 3# result in the average pore sizes of 3.78, 2.76, and 1.9 μm on the surfaces of the three alloys, respectively; The G.P zone in the alloy also facilitates the surface pore formation. High-surface roughness enhances the possibility of entrapping more lubricants into the plate surface, which eventually blocks the formation of the pores on the surface of the aluminum plates in the following electrolyzing process.
机译:准备了两块具有不同组织的双辊铸件(TRC)和一块热轧(HR)AA 1235铝合金板。将板在1.2wt%的HCl溶液中以21V的电压和1.9mA的电流进行电解。分析在这些板的表面上形成的孔的形状,大小和数量,并将其与板的微观结构相关联。发现在含有亚晶粒的合金板上更容易形成孔,这些亚晶粒内部的位错密度较低,而不是沿着晶界。此外,AA1235铝合金中富含Fe和Si的颗粒会导致在电解过程中在表面上形成孔洞。合金1#,合金2#和合金3#的平均沉淀尺寸分别为4、3.5和2μm,这三种合金表面的平均孔径分别为3.78、2.76和1.9μm;合金中的G.P区也促进了表面孔的形成。高表面粗糙度增加了将更多的润滑剂截留到板表面中的可能性,这最终阻止了在随后的电解过程中铝板表面上的孔的形成。

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