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Kabupaten Nias Selatan

Badan Riset dan Inovasi Nasional

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07-11-2022

12-08-2024

0196ef06-69d3-40a3-9b3c-d65d81d9d5a0

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Evaluation of anticorrosion and antifouling paint performance after exposure und...

The performance of carbon steel, galvanized steel and aluminium after one month ...

The corrosivity and performance evaluation of antifouling paint exposed in seawa...

Antifouling paints were applied on a wide range of the under seawater structures...

The corrosivity and performance evaluation for antifouling paint exposed in seaw...

Antifouling paints are applied on a wide range of the under seawater structures ...

GC/MS Profiling and Evaluation of Antibacterial and Antioxidant Activities of Ba...

This study aims to identify the chemical compounds of ethyl acetate extract of t...

Surface area and conductivity of polyaniline synthesized under UV irradiation

This paper reports our study on the synthesis of high electrical conductivity an...

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Evaluation of anticorrosion and antifouling paint performance after exposure under seawater Surabaya–Madura (Suramadu) Bridge

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Antifouling paints are used widely to coat the underwater structures to prevent various fouling organisms. The evaluation of the performance for the two commercial anticorrosion and antifouling paints was carried out in the piles of Suramadu Bridge, East Java during 1 month exposure. The 20 cm width x 25 cm high x 0.3 cm thick specimens of mild steel were sandblasted and coated by anticorrosion and antifouling paint. Blank specimen (without exposed) were also prepared as a control. On the other hand, the 7.5 cm width x 15 cm high x 0.3 cm thick specimen bare mild steel was prepared for measure the corrosion rate throught weight loss method. The test panels containing specimens were exposure up to 1 months for immersion in splash zone and tidal zone (0, 1, 3, meters from sea level). Sea water parameters consisting of temperature, pH, salinity, conductivity and dissolved oxygen (DO) were also measured. The thickness, glossy, hardness and adhesion strength of the coating performance were carried out. The results show that both surfaces of anticorrosive paint and bare mild steel specimen covered by fouling organisms, whereas no fouling took place on the surface of antifouling paint. The corrosion rate of bare mild steel in the 0, 1, and 3 meters are 15.1;13.7 and 17.0 mpy, respectively. AIP Conference Proceeding IC3PE

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