TY - GEN
T1 - Molarity relationship of electrolyte solution to aluminum anodizing process on morphology and corrosion resistance
AU - Setyarini, Putu Hadi
AU - Purnomo,
N1 - Publisher Copyright:
© 2019 Trans Tech Publications Ltd, Switzerland.
PY - 2019
Y1 - 2019
N2 - One type of aluminum widely use is AA 6061 because it has a good mechanical properties and corrosion resistance when compared to the other types of aluminum. Those properties of this alloy can be improved even better by using the anodizing process. In this study, the results of anodizing AA 6061 will be investigated using molarity of sulfuric acid 1 M, 2 M and 3 M, with an anodizing processing time of 60 minutes and temperature of electrolyte solution 10oC towards morphology and corrosion rate. The cathode used in this process is titanium alloy. After the anodizing process was completed, a Scanning Electron Microscopy (SEM) test was carried out to examine the surface morphology produced, Energy Dispersive X-Ray (EDX) testing is used to determine the chemical composition of the anodic layer formed after the anodizing process and the test of corrosion rate is done using 128N Autolab PGSTAT Potentiodynamic in 3.5% sodium chloride. From the test results, it appears that there is an increase in pore size and corrosion rate along with an increase in the molarity of the electrolyte solution. In addition, there is also an increase in sulfate levels and a decrease in titanium deposits in anodizing results with higher solution molarity.
AB - One type of aluminum widely use is AA 6061 because it has a good mechanical properties and corrosion resistance when compared to the other types of aluminum. Those properties of this alloy can be improved even better by using the anodizing process. In this study, the results of anodizing AA 6061 will be investigated using molarity of sulfuric acid 1 M, 2 M and 3 M, with an anodizing processing time of 60 minutes and temperature of electrolyte solution 10oC towards morphology and corrosion rate. The cathode used in this process is titanium alloy. After the anodizing process was completed, a Scanning Electron Microscopy (SEM) test was carried out to examine the surface morphology produced, Energy Dispersive X-Ray (EDX) testing is used to determine the chemical composition of the anodic layer formed after the anodizing process and the test of corrosion rate is done using 128N Autolab PGSTAT Potentiodynamic in 3.5% sodium chloride. From the test results, it appears that there is an increase in pore size and corrosion rate along with an increase in the molarity of the electrolyte solution. In addition, there is also an increase in sulfate levels and a decrease in titanium deposits in anodizing results with higher solution molarity.
KW - AA 6061
KW - Anodizing
KW - Corrosion resistance
KW - Molarity
KW - Morphology
UR - https://www.scopus.com/pages/publications/85071840029
U2 - 10.4028/www.scientific.net/MSF.961.91
DO - 10.4028/www.scientific.net/MSF.961.91
M3 - Conference contribution
AN - SCOPUS:85071840029
SN - 9783035715217
T3 - Materials Science Forum
SP - 91
EP - 96
BT - Advanced Materials Science
A2 - Siswanto, Waluyo Adi
A2 - Besar Riyadi, Tri Widodo
PB - Trans Tech Publications Ltd
T2 - International Conference on Advanced Materials Science, ICOAMS 2018
Y2 - 24 October 2018 through 25 October 2018
ER -