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Spectroscopic study of electrolytic plasma and discharging behaviour during the plasma electrolytic oxidation (PEO) process

Journal of Physics D Applied Physics · 2010 · Vol. 43(10) · pp. 105203–105203
R.O. HusseinXueyuan NieD. O. NorthwoodAleksey YerokhinA. Matthews

Abstract

In this study, a plasma electrolytic oxidation (PEO) process was used to produce oxide coatings on commercially pure aluminium (1100 alloy) at a pulsed dc power mode. The effects of process parameters (i.e. current density and treatment time) on the plasma discharge behaviour during the PEO treatment were investigated using optical emission spectroscopy (OES) in the visible and near ultraviolet (NUV) band (285-800 nm). The elements present in the plasma were identified. Stark shifts of spectral lines and line intensity ratios were utilized to determine the plasma electron concentrations and temperatures, respectively. The plasma electron temperature profile, coating surface morphology and coating composition were used to interpret the plasma discharging behaviour. The different coating morphologies and compositions at different coating surface regions are explained in terms of three types of discharge, which originate either at the substrate/coating interface, within the upper layer, or at the coating top layer. The high spike peaks on the plasma intensity and temperature profiles corresponded to discharges originated from the substrate/coating interface, while the base line and small fluctuations were due to discharges at the coating/electrolyte interface.

Corrosion Behavior and InhibitionMagnesium Alloys: Properties and ApplicationsHigh-Temperature Coating BehaviorsPlasma electrolytic oxidationElectrolytePlasmaOxidation processChemical engineeringChemistryMaterials scienceInorganic chemistryElectrodePhysical chemistry
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References
Plasma electrolysis for surface engineering
Surface and Coatings Technology · 1999 · 2,910 citations
Characterization of AC PEO coatings on magnesium alloys
Surface and Coatings Technology · 2009 · 349 citations
Thermo-physical properties of plasma electrolytic oxide coatings on aluminium
Surface and Coatings Technology · 2005 · 320 citations
Characterisation of discharge events during plasma electrolytic oxidation
Surface and Coatings Technology · 2009 · 357 citations
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