阳极氧化和Al2O3修饰电解液微弧氧化复合工艺沉积铝合金陶瓷涂层的新方法

Samir Hamid Awad
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引用次数: 0

摘要

本工作采用阳极氧化和微弧氧化双重工艺对铝6061合金表面进行了涂层处理。使用(2-6克/升)Al2O3添加剂对MAO电解质进行改性。采用X射线衍射(XRD)、扫描电子显微镜(SEM)、维氏压头、原子力显微镜(AFM)和微处理器涂层测厚仪对沉积涂层进行了表征-氧化铝的形貌特征是不同程度的孔隙率不均匀分布,其厚度和硬度随着Al2O3添加剂的增加而增加。研究表明,使用含有MAO电解质的Al2O3添加剂,可以成功地在预氮化铝合金(12-15?m,硬度为190Hv)上沉积相对坚硬(421-490Hv)、较厚(43-65?m)和均匀的涂层,这是一种新的方法,可用于进一步研究铝合金的表面改性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NEW METHOD FOR DEPOSITION OF CERAMIC COATING ON AL ALLOY USING DUPLEX PROCESSES OF ANODIZING AND Al2O3 MODIFIED ELECTROLYTE MICRO -ARC OXIDATION (MAO)
  In this work, surfaces of Al 6061 alloy were coated using anodizing and micro–arc oxidation ( MAO) duplex processes. MAO electrolyte was modified using ( 2-6 g/l )Al2O3 additives . X-ray diffraction (XRD), scanning electron microscopy (SEM), Vickers indenter, atomic force microscopy (AFM), and Microprocessor coating thickness meter ,were employed for characterization of the deposited coatings .Results showed that the coatings contained porous oxide ?-alumina with morphologies characterized by different levels of porosity non-uniform distribution, and their thickness and hardness increased by the increasing of Al2O3 additives. The research demonstrates that a relatively hard (421-490Hv), thick (43-65?m) and uniform coatings, can successfully be deposited on preanodized Al alloy (12-15 ?m with hardness of 190Hv) using Al2O3 additives containing MAO electrolytes as a new method for more future research on surface improvements of Al alloys  
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