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Microstructure and optical appearance of anodized friction stir processed Al - Metal oxide surface composites

机译:阳极氧化搅拌加工al - 金属氧化物表面复合材料的微观结构和光学外观

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摘要

Multiple-pass friction stir processing (FSP) was employed to impregnate Ti, Y and Ce oxide powders into the surface of an Aluminium alloy. The FSP processed surface composite was subsequently anodized with an aim to develop optical effects in the anodized layer owing to the presence of incorporated oxide particles which will influence the scattering of light. This paper presents the investigations on relation between microstructure of the FSP zone and optical appearance of the anodized layer due to incorporation of metal oxide particles and modification of the oxide particles due to the anodizing process. The effect of anodizing parameters on the optical appearance of the anodized surface was studied. Characterization was performed using FIB-SEM and TEM. The surface appearance was analysed using spectrophotometry technique which measures the diffuse and total reflectance of the surface. The appearance of the anodized surface changed from dark to bright upon increasing the anodizing voltage. Particles in the FSP zone were partially or completely modified during the anodizing process and modified the morphology of the surrounding anodized Al matrix which has a clear influence on the mechanism of light interaction like scattering and absorption from the anodized surface.
机译:采用多次摩擦搅拌工艺(FSP)将Ti,Y和Ce氧化物粉末浸渍到铝合金表面。随后对经过FSP处理的表面复合材料进行阳极氧化处理,目的是在阳极氧化层中产生光学效果,原因是存在会影响光散射的掺入氧化物颗粒。本文介绍了由于金属氧化物颗粒的掺入和阳极氧化工艺对氧化物颗粒的改性而引起的FSP区微观结构与阳极氧化层光学外观之间关系的研究。研究了阳极氧化参数对阳极氧化表面光学外观的影响。使用FIB-SEM和TEM进行表征。使用分光光度法分析表面外观,该技术可以测量表面的漫反射和全反射率。随着阳极氧化电压的增加,阳极氧化表面的外观从暗变亮。 FSP区中的颗粒在阳极氧化过程中被部分或完全修饰,并修饰了周围的阳极氧化铝基体的形态,这对光相互作用的机理(如从阳极氧化表面的散射和吸收)产生了明显影响。

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