Characteristic of ceramic coatings on aluminum by plasma electrolytic oxidation in silicate and phosphate electrolyte

In the present work, four processes were carried out to produce ceramic coatings on aluminum substrate in two kinds of electrolytes (silicate and phosphate solution systems) using plasma electrolytic oxidation (PEO) technology. The voltage–time responses were recorded during different PEO processes....

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Veröffentlicht in:Applied surface science 2006-12, Vol.253 (5), p.2947-2952
Hauptverfasser: Lv, Guohua, Gu, Weichao, Chen, Huan, Feng, Wenran, Khosa, M. Latif, Li, Li, Niu, Erwu, Zhang, Guling, Yang, Si-Ze
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container_end_page 2952
container_issue 5
container_start_page 2947
container_title Applied surface science
container_volume 253
creator Lv, Guohua
Gu, Weichao
Chen, Huan
Feng, Wenran
Khosa, M. Latif
Li, Li
Niu, Erwu
Zhang, Guling
Yang, Si-Ze
description In the present work, four processes were carried out to produce ceramic coatings on aluminum substrate in two kinds of electrolytes (silicate and phosphate solution systems) using plasma electrolytic oxidation (PEO) technology. The voltage–time responses were recorded during different PEO processes. SEM/EDX and XRD were adopted to investigate the microstructure, elements distribution and phase composition of the coatings prepared in the two electrolyte systems. It is found that coatings produced in the silicate electrolyte have a more homogeneous morphology than those produced in the phosphate system. EDX analysis shows that silicon element tends to present primarily in the outer region of the coatings while phosphorus distributes uniformly throughout the coating thickness. According to the conventional anodic oxidation mechanism, a model is set up to explain the different characteristics of ceramic coatings fabricated in different electrolytes which is helpful to understand the growth mechanism of PEO coatings.
doi_str_mv 10.1016/j.apsusc.2006.06.036
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subjects Aluminum
Element distribution
Plasma electrolytic oxidation
title Characteristic of ceramic coatings on aluminum by plasma electrolytic oxidation in silicate and phosphate electrolyte
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