Journal of Industrial and Engineering Chemistry, Vol.19, No.3, 1031-1039, May, 2013
The effects of zinc aluminum phosphate (ZPA) and zinc aluminum polyphosphate (ZAPP) mixtures on corrosion inhibition performance of epoxy/polyamide coating
E-mail:
The epoxy/polyamide coating was loaded with different pigment mixtures of the zinc phosphate (ZP), zinc aluminum phosphate (ZPA) and zinc aluminum polyphosphate (ZAPP) pigments. The electrochemical impedance spectroscopy (EIS) and salt spray test were used to investigate corrosion inhibition performance of the coatings. The adhesion strengths of the coatings were measured by a pull-off test. Results revealed lower coating pull-off strength loss when the ZPA and ZAPP pigments were used. A significant decrease in number of blisters together with low pull-off strength loss and best corrosion inhibition properties were observed when the mixture of 80:20 of ZAPP:ZPA was used.
- Jui-Ming Y, Shir-Joe L, Chiung-Yu L, Pei-Chi W, Chemistry of Materials., 13, 1131 (2001)
- Jui-Ming Y, Shir-Joe L, Ching-Yi L, Chiao-Yu C, Ya-Wen C, Chemistry of Materials., 14, 154 (2002)
- Chi-Hao C, Tsao-Cheng H, Chih-Wei P, Tzu-Chun Y, Hsin LI, Wei HI, Chang-Jian W, Ta YI, Jui-Ming Y, Carbon., 50, 5044 (2012)
- Weng CJ, Huang JY, Huang KY, Jhuo YS, Tsai MH, Yeh JM, Electrochim. Acta, 55(28), 8430 (2010)
- Sinko J, Progress in Organic Coatings., 42, 267 (2001)
- Sørensen PA, Kiil S, Weinell CE, Journal of Coatings Technology and Research., 6(2), 135 (2009)
- Buxbaum G, Pfaff G, Industrial Inorganic Pigments, third ed., Wiley-VCH, Weinheim (2005)
- Ramezanzadeh B, Attar MM, Journal of Coatings Technology and Research, doi:10.1007/s11998-012-9426-6.
- Ebrahimi-Mehr M, Shahrabi T, Hosseini MG, Anti-Corrosion Methods and Materials., 51, 399 (2004)
- Naderi R, Attar MM, Electrochim. Acta, 53(18), 5692 (2008)
- Leidheiser H, Wang W, Igetoft L, Progress in Organic Coatings., 11, 19 (1983)
- Beiro M, Collazo A, Izquierdo M, No´ voa XR, Pe´ rez C, Progress in Organic Coatings., 46, 97 (2003)
- Naderi R, Attar MM, Progress in Organic Coatings., 66, 314 (2009)
- Kalendova A, Anti-Corrosion Methods and Materials., 50, 82 (2003)
- Hatch G, Materials Protection., 8(11), 5 (1969)
- Forsgren A, Corrosion Control Through Organic Coatings, CRC Press, FL (2006)
- Naderi R, Attar MM, Corrosion Science., 51, 1671 (2009)
- Rammelt U, Reinhard G, Progress in Organic Coatings., 21, 205 (1992)
- Amirudin A, Thierry D, Progress in Organic Coatings., 26, 1 (1995)
- Grundmeier G, Schmidt W, Stratmann M, Electrochim. Acta, 45(15-16), 2515 (2000)
- Pebere N, Th Picaud, Duprat M, Dabosi F, Corrosion Science., 29, 1073 (1989)
- Barsoukov E, Ross Macdonald J, Impedance Spectroscopy: Theory Experiment and Applications, second ed., John Wiley and Sons, New Jersey (2005)
- Szauer T, Progress in Organic Coatings., 10, 171 (1982)
- Patton TC, Paint Flow and Pigment Dispersion: A Rheological Approach to Coating and Ink Technology, second ed., Wiley, New York (1979)
- Mahdavian M, Attar MM, Electrochim. Acta, 50(24), 4645 (2005)
- Liu X, Xiong J, Lv Y, Zuo Y, Progress in Organic Coatings., 64, 497 (2009)
- Montemor MF, Snihirova DV, Taryba MG, Lamaka SV, Kartsonakis IA, Balaskas AC, Kordas GC, Tedim J, Kuznetsova A, Zheludkevich ML, Ferreira MGS, Electrochimica Acta., 60, 31 (2012)
- Naderi R, Attar MM, Corrosion Science., 52, 1291 (2010)
- Naderi R, Attar MM, Progress in Organic Coatings., 69, 392 (2010)
- Romagnoli R, Vetere VF, Corrosion., 51(2), 116 (1995)
- Naderi R, Attar MM, J. Appl. Electrochem., 39(12), 2353 (2009)
- Ramezanzadeh B, Attar MM, Surface and Coatings Technology., 205, 4649 (2011)