1 results listed
Aluminium and aluminium alloys have superior properties such as low density, high thermal conductivity, easy
producibility and easy machinability. However, negative properties such as low hardness and low wear resistance
limit the applications of aluminium. Making aluminium metal matrix composite (MMC) and various coating
applications are also applied to increase wear resistance. [1].
One of the techniques used to increase the wear resistance of light metals is plasma electrolytic oxidation (PEO),
in other words micro arc oxidation (MAO) [2]. PEO, an environmentally friendly coating method, allows coatings
with very different mechanical and physical structures to be formed on the surfaces of materials such as Al, Mg,
Ti. In this method, the sample is exposed to electrochemical oxidation similar to hard anodizing but with higher
voltage. The growth of the oxide layer occurs at the potentials above the dielectric breakdown voltage of this
insulating layer. Under these conditions, numerous short-time micro-arc discharges are formed on the coated
surface. The coated surface usually consists of a porous oxide as a consequence of the localized electrochemical
discharges at the electrode surface and the short-term melting is caused by these discharges. PEO operation
provides a thick, hard oxide layer resistant to abrasion and corrosion. [3-6].
In this study, PEO coating was applied on 5% and 10% Al2O3 particle reinforced aluminium matrix composite
material produced by powder metallurgy and their wear behaviours were investigated. The mixture of aluminium
powder and reinforcing particles was pressed at 500MPa in a uniaxial cold press and sintered at 600°C for 8 hours.
The PEO coating was applied on the samples at a constant current density of 20A/dm2 for 30 minutes in a Keronite
G2 Micro Arc Oxidation unit.
Scanning electron microscope (SEM) images were obtained for visual characterization of the uncoated
and coated samples (Figure 1). Material stiffness was measured by micro Vickers method, applying 2kg load. It is
seen that the reinforcement particles added to increase the strength increase the hardness, decrease the coating
continuity and quality
International Symposium on Light Alloys and Composite Materials
UHAKS
Şöhret Melda Aydın
Serdar Karaoğlu