International audienceThe effect of the composition, morphology and thickness of pre-formed porous anodic films on the subsequent formation of coatings on aluminium by plasma electrolytic oxidation is investigated. The pre-formed films, of a wide range of thickness, are shown to be incorporated into the coatings. Further, an increased thickness of the film is revealed as beneficial to the establishment of a microarc regime that is favourable for the formation of the coatings. The anodic alumina undergoes melting under the microdischarges, which changes the cellular film morphology and reduces the concentration of anion contaminants
Anodic oxidation plays an important role in microelectronics as well as in thin film devices. Oxide ...
The growth behavior of anodic oxide films formed via anodizing in glutaric and its derivative acid s...
Porous alumina films had been fabricated by anodizing from aluminum films after an electropolishing ...
A fabrication of porous alumina films by electrochemical anodization of aluminium foils and aluminiu...
The effect of composite anodizing electrolyte with reduced content of organic acids on the formation...
The effect of composite anodizing electrolyte with reduced content of organic acids on the formation...
Electrochemical measurements, recorded during the growth of the duplex layer, in combination with hi...
Bright white plasma electrolytic oxidation (PEO) films with uniform maze-like structures were obtain...
The present study is concerned with the mechanism of growth of porous anodic films formed on high pu...
A plasma electrolytic oxidation (PEO)/anodic aluminum oxide (AAO) multi-layer film was fabricated vi...
[EN] Pure aluminium and aluminium alloy 1100 samples were anodized by one step and two step process....
Porous aluminium anodization process has been investigated in 63 wt % sulfuric electrolyte. Porous a...
Mechanism of the formation of pores in the anodic oxide films on Al in sulfuric acid solution was st...
EO is an anodization technique where the applied voltage is sufficiently high to create plasma disch...
Abstract Porous alumina films had been fabricated by anodizing from aluminum films after an electrop...
Anodic oxidation plays an important role in microelectronics as well as in thin film devices. Oxide ...
The growth behavior of anodic oxide films formed via anodizing in glutaric and its derivative acid s...
Porous alumina films had been fabricated by anodizing from aluminum films after an electropolishing ...
A fabrication of porous alumina films by electrochemical anodization of aluminium foils and aluminiu...
The effect of composite anodizing electrolyte with reduced content of organic acids on the formation...
The effect of composite anodizing electrolyte with reduced content of organic acids on the formation...
Electrochemical measurements, recorded during the growth of the duplex layer, in combination with hi...
Bright white plasma electrolytic oxidation (PEO) films with uniform maze-like structures were obtain...
The present study is concerned with the mechanism of growth of porous anodic films formed on high pu...
A plasma electrolytic oxidation (PEO)/anodic aluminum oxide (AAO) multi-layer film was fabricated vi...
[EN] Pure aluminium and aluminium alloy 1100 samples were anodized by one step and two step process....
Porous aluminium anodization process has been investigated in 63 wt % sulfuric electrolyte. Porous a...
Mechanism of the formation of pores in the anodic oxide films on Al in sulfuric acid solution was st...
EO is an anodization technique where the applied voltage is sufficiently high to create plasma disch...
Abstract Porous alumina films had been fabricated by anodizing from aluminum films after an electrop...
Anodic oxidation plays an important role in microelectronics as well as in thin film devices. Oxide ...
The growth behavior of anodic oxide films formed via anodizing in glutaric and its derivative acid s...
Porous alumina films had been fabricated by anodizing from aluminum films after an electropolishing ...