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The study of the effectiveness of corrosion protection of zinc-rich coating on the base of water sodium silicate

https://doi.org/10.31615/j.corros.prot.2020.98.4-4

Abstract

The study is examines the assessment of the corrosion-protective properties of zinc-rich coating based on water sodium silicate (ZRC) using the Electrochemical Impedance Spectra (EIS) with AutoLAB PGSTAT204N. The system consists of three electrodes: Ag/AgCl reference electrode in 3 M solution of KCl, auxiliary electrode – Pt (8x8 mm) and working electrodes for determination potential (Ecorr) and impedance measurement, salt spray test method and natural teszzt method at Dam Bay Marine Research Station, Nha Trang, Khanh Hoa, Viet Nam. ZSC can provide good cathodic protection when zinc content is 70% by weight or more. ZSC with a mixing ratio of High Modulus Liquid Sodium Glass / Zinc Powde : 25/75 by weight (working title – TTL-VN) has good corrosion protection after 16 cycles salt spray test and after 18 months natural test in seawater. The paint film has basic parameters as adhesion – 4,41 MPa, flexural strength – 2 mm, pendulum hardness – 0,62 conventional units and initial coating potentia l – 0,96 V Ag/AgCl.

About the Authors

Hong Quan Le
Russian-Vietnamese Tropical Cente
Viet Nam

Le Hong Quan, researcher

63, Nguyen Van Huyen street, Cau Giay District, Hanoi city



Van Chi Nguyen
Russian-Vietnamese Tropical Cente
Viet Nam

Nguyen Van Chi, researcher

63, Nguyen Van Huyen street, Cau Giay District, Hanoi city



Van Minh Mai
Russian-Vietnamese Tropical Cente
Viet Nam

Mai Van Minh, researcher

63, Nguyen Van Huyen street, Cau Giay District, Hanoi city



Quoc Quang Nong
Russian-Vietnamese Tropical Cente
Viet Nam

Nong Quoc Quang, researcher

63, Nguyen Van Huyen street, Cau Giay District, Hanoi city



Van Kien Dong
Russian-Vietnamese Tropical Cente
Viet Nam

Dong Van Kien, researcher

63, Nguyen Van Huyen street, Cau Giay District, Hanoi city



Nhat Linh Cao
Russian-Vietnamese Tropical Cente
Viet Nam

 

63, Nguyen Van Huyen street, Cau Giay District, Hanoi city



References

1. Azizul Sofian, Kazuhiko Noda. (2013). Corrosion Analysis of Zinc Rich Epoxy Coatings on Steel in NaCl Solution. International Congress on Advanced Materials and Processing, 2171-2176.

2. Hammouda N., Kamel Belmokre. (2017). Influence on the decantaion water on the corrosion resistance of an organic coating applied to the internal parts of the crude oil storage tanks. The Eighth Jordan International Chem. Eng. Conference, 174-182.

3. Isomina, A. S., Savronov, A. P. (2011). Effect of interphase interaction within zincfilled composite coating on the potential of cathodic protection of steel. Russ. J. Phys. Chem, 85, 2227-2232.

4. Gra, L. G. S., Appleman, B. R. (2003). EIS: A tool to predict remaining coating life. J. Protective Coating sand Linings, 2, 66.

5. Abreu, C. M., Izquierdo, M., Keddam, M., & Takenouti, H. (1996). Electrochemical behaviour of zinc-rich epoxy paints in 3% NaCl solution. Electrochimica Acta, 41(15), 2405-2415.

6. Meroufel, A., Deslouis, C., & Touzain, S. (2008). Electrochemical and anticorrosion performances of zinc- rich and polyaniline powder coatings. Electrochimica Acta, 53, 2331-2338.

7. Es-Saheb, Sherif M., E.-S.M.; El- Zatahry, A.; El Rayes, M.M.; & Khalil, A.K. (2012). Corrosion passivation in aerated 3,5% NaCl solutions of brass by nanofiber coatings of polyvinyl chloride and polystyrene. Int. J. Electrochem. Sci., 7, 10442-10455.

8. http://v-lab.com.vn/tram-thu-nghiemdam-bay

9. Le Hong Quan, Nguyen Văn Chi, Mai Văn Minh, Dong Văn Kien, & Nong Quoc Quang (2019). The study of the electrochemical properties of zinc-rich coating on the base of water sodium silicate. Theory and Practice of Corrosion Protection, 24(4), 51-58.


Review

For citations:


Le H., Nguyen V., Mai V., Nong Q., Dong V., Cao N. The study of the effectiveness of corrosion protection of zinc-rich coating on the base of water sodium silicate. Theory and Practice of Corrosion Protection. 2020;25(4):32-39. (In Russ.) https://doi.org/10.31615/j.corros.prot.2020.98.4-4

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ISSN 1998-5738 (Print)
ISSN 2658-6797 (Online)