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Particle reinforced open porous anodizing layers on AA5005

机译:AA5005上的颗粒增强开放式多孔阳极氧化层

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The present work deals with the target aimed design of anodic oxide films on AA5005 by modified phosphoric acid anodizing and reinforcement by subsequent impregnation with nanosized silicon dioxide by chemical nanotechnology. The authors show the influence of the anodizing time on the oxide layer thickness, the pore diameter and the morphology. It is revealed that silicon dioxide nanoparticles are successful when incorporated into the open structure pores of the layer. The anodizing and the incorporation process were carried out wet on wet. Complementary electrochemical measurements show the potential of the modified oxide layer in view of corrosion protection despite their deliberated open porosity.
机译:本工作涉及通过用化学纳米技术用纳米化二氧化碳的浸渍,通过改性的磷酸阳极氧化和增强来涉及AA5005上的阳极氧化膜的靶向设计。 作者展示了阳极氧化时间对氧化物层厚度,孔径和形态的影响。 当掺入层的开放结构孔中时,二氧化硅纳米颗粒是成功的。 在湿法上进行阳极氧化和掺入过程。 互补电化学测量表明,考虑到腐蚀保护,所以改性氧化物层的电位尽管它们刻意的开放孔隙率。

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