In this paper the features of temperature control of aluminum electrode during the anodization are discussed. Temperature monitoring in this exothermic process is a necessary condition for obtaining a high ordered nanoporous structure. A new electrochemical cell with a Peltier device working in cooling or heating mode was proposed. Time dependences of the electrolyte and Peltier element temperatures without and during anodizing process were presented. The results demonstrated that the cell construction allows precise control of the electrode temperature
The effect of composite anodizing electrolyte with reduced content of organic acids on the formation...
Aluminum is produced by the electrolytic reduction of alumina dissolved in molten cryolite. This pro...
Heat is generated during anodizing of aluminium, leading to macroscopic anodic film thickness variat...
Anodic aluminium oxide (AAO) thin films, containing hexagonally ordered nanopores, are widely used a...
The fabrication of ordered nano-structured materials through anodic alumina oxide (AAO) template has...
In the present study, we investigated the effect of an anode temperature on current transient proces...
The temperature development during anodizing processes plays a key role in the case of industrial ha...
The results of research on anodizing thin aluminum films 100 nm thick on SiO2–Si plates at 30 V in a...
Joule healing of the oxide-covered aluminum electrode is the major heal source during anodizing, and...
Effect of electrolyte temperature on the thickness of resulting oxide layer has been studied. Unlike...
This paper presents the studies on the cooling of the aluminum surface during its anodization by con...
In this work, we present a systematic influence of electrolyte temperature along with anodizing pote...
The temperature distribution within the anodic alumina during the anodic process has been studied. T...
The results of studies on the effect of electrolyte temperature during anodizing of thin aluminum fi...
Due to increase in energy consumption it is important for researcher to develop an efficient thermal...
The effect of composite anodizing electrolyte with reduced content of organic acids on the formation...
Aluminum is produced by the electrolytic reduction of alumina dissolved in molten cryolite. This pro...
Heat is generated during anodizing of aluminium, leading to macroscopic anodic film thickness variat...
Anodic aluminium oxide (AAO) thin films, containing hexagonally ordered nanopores, are widely used a...
The fabrication of ordered nano-structured materials through anodic alumina oxide (AAO) template has...
In the present study, we investigated the effect of an anode temperature on current transient proces...
The temperature development during anodizing processes plays a key role in the case of industrial ha...
The results of research on anodizing thin aluminum films 100 nm thick on SiO2–Si plates at 30 V in a...
Joule healing of the oxide-covered aluminum electrode is the major heal source during anodizing, and...
Effect of electrolyte temperature on the thickness of resulting oxide layer has been studied. Unlike...
This paper presents the studies on the cooling of the aluminum surface during its anodization by con...
In this work, we present a systematic influence of electrolyte temperature along with anodizing pote...
The temperature distribution within the anodic alumina during the anodic process has been studied. T...
The results of studies on the effect of electrolyte temperature during anodizing of thin aluminum fi...
Due to increase in energy consumption it is important for researcher to develop an efficient thermal...
The effect of composite anodizing electrolyte with reduced content of organic acids on the formation...
Aluminum is produced by the electrolytic reduction of alumina dissolved in molten cryolite. This pro...
Heat is generated during anodizing of aluminium, leading to macroscopic anodic film thickness variat...