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Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means

Year 2022, , 227 - 237, 01.08.2022
https://doi.org/10.15671/hjbc.1052654

Abstract

Metal yüzeyleri korozyonun etkisinden korumak için organik kaplamalar yaygın olarak kullanılır. Organik kaplamalar ile korozyon korumasının mekanizmaları bilinmesine rağmen, bu mekanizmaların gelişiminin tuzlu sis (ASTM B-117) ve yoğuşma kabini (ASTM D4585) gibi geleneksel hızlandırılmış maruziyet testleri ile izlenmesi mümkün değildir. Bu testlerde korozyon sadece görsel emarelerin ortaya çıkmasıyla gözlenebilir, bu durum kaplama altında korozyon başlangıcından çok sonra gerçekleşebilir ve dolayısıyla numuneler arasında farkların ortaya çıkması için uzun test sürelerine ihtiyaç duyulabilir.
Bu çalışmada bir organik kaplamanın iki farklı hızlandırılmış maruziyet testi etkisi altında yıpranması takip edilmiştir. Farklı sürelerde maruziyet görmüş numunelerin elektriksel empedans spektrumlarının ölçülmesi ve uygun eşdeğer elektriksel devreler ile modellenmesi kaplama altında meydana gelen yıpranmayı göstermiştir. Görsel inceleme ile herhangi bir korozyon etkisi görülmese de, EIS ile 60 saat tuzlu sis testinde korozyon başlangıcı gözlemlenmiştir, ancak 240 saat yoğuşma kabini korozyon başlangıcı için yeterli olmamıştır. Sonuçlar test edilen kaplama sistemi için tuzlu sis testinin, yoğuşma testine göre çok daha fazla yıpranma meydana getirdiğini göstermiştir.

Project Number

TEYDEB 3180664

References

  • Zeno W. Wicks, Frank N. Jones, S. Peter Pappas, Douglas A. Wicks., Organic Coatings: Science and Technology, 2007, New Jersey, John Wiley & Sons.
  • Bierwagen, Gordon P., Corrosion and Its Control by Coatings, Washington: ACS Symposium Series, 1998, American Chemical Society.
  • S.B. Lyon, R. Bingam, D.J. Mills, Advances in corrosion protection by organic coatings: What we know and what we would like to know, Progress in Organic Coatings, 102 (2017) 2-7.
  • Forsgren, Amy, Corrosion Control Through Organic Coatings, 2006, Boca Raton, Florida, Taylor & Francis Group.
  • G. Grundmeier, W. Schmidt, M. Stratmann, Corrosion protection by organic coatings: electrochemical mechanism and novel methods of investigation, Electrochimica Acta, 45 (2000) 2515-2533.
  • E.P.M. Van Nesting, G.M. Ferrari, J.H.W. De Wit, The Determination of Coating Performance with Impedance Measurements-I. Coating Polymer Properties, Corrosion Science, 34 (1993) 1511-1530.
  • E.P.M. Van Nesting, G.M. Ferrari, J.H.W. De Wit, The Determination of Coating Performance with Impedance Measurements-II. Water Uptake, Corrosion Science, 36 (1994) 957-977.
Year 2022, , 227 - 237, 01.08.2022
https://doi.org/10.15671/hjbc.1052654

Abstract

Supporting Institution

TÜBİTAK

Project Number

TEYDEB 3180664

References

  • Zeno W. Wicks, Frank N. Jones, S. Peter Pappas, Douglas A. Wicks., Organic Coatings: Science and Technology, 2007, New Jersey, John Wiley & Sons.
  • Bierwagen, Gordon P., Corrosion and Its Control by Coatings, Washington: ACS Symposium Series, 1998, American Chemical Society.
  • S.B. Lyon, R. Bingam, D.J. Mills, Advances in corrosion protection by organic coatings: What we know and what we would like to know, Progress in Organic Coatings, 102 (2017) 2-7.
  • Forsgren, Amy, Corrosion Control Through Organic Coatings, 2006, Boca Raton, Florida, Taylor & Francis Group.
  • G. Grundmeier, W. Schmidt, M. Stratmann, Corrosion protection by organic coatings: electrochemical mechanism and novel methods of investigation, Electrochimica Acta, 45 (2000) 2515-2533.
  • E.P.M. Van Nesting, G.M. Ferrari, J.H.W. De Wit, The Determination of Coating Performance with Impedance Measurements-I. Coating Polymer Properties, Corrosion Science, 34 (1993) 1511-1530.
  • E.P.M. Van Nesting, G.M. Ferrari, J.H.W. De Wit, The Determination of Coating Performance with Impedance Measurements-II. Water Uptake, Corrosion Science, 36 (1994) 957-977.
There are 7 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Research Article
Authors

Mehmet Bengi Taysun 0000-0002-3890-7391

Ali Gizli This is me 0000-0001-9554-0496

Project Number TEYDEB 3180664
Publication Date August 1, 2022
Acceptance Date March 14, 2022
Published in Issue Year 2022

Cite

APA Taysun, M. B., & Gizli, A. (2022). Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means. Hacettepe Journal of Biology and Chemistry, 50(3), 227-237. https://doi.org/10.15671/hjbc.1052654
AMA Taysun MB, Gizli A. Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means. HJBC. August 2022;50(3):227-237. doi:10.15671/hjbc.1052654
Chicago Taysun, Mehmet Bengi, and Ali Gizli. “Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means”. Hacettepe Journal of Biology and Chemistry 50, no. 3 (August 2022): 227-37. https://doi.org/10.15671/hjbc.1052654.
EndNote Taysun MB, Gizli A (August 1, 2022) Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means. Hacettepe Journal of Biology and Chemistry 50 3 227–237.
IEEE M. B. Taysun and A. Gizli, “Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means”, HJBC, vol. 50, no. 3, pp. 227–237, 2022, doi: 10.15671/hjbc.1052654.
ISNAD Taysun, Mehmet Bengi - Gizli, Ali. “Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means”. Hacettepe Journal of Biology and Chemistry 50/3 (August 2022), 227-237. https://doi.org/10.15671/hjbc.1052654.
JAMA Taysun MB, Gizli A. Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means. HJBC. 2022;50:227–237.
MLA Taysun, Mehmet Bengi and Ali Gizli. “Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means”. Hacettepe Journal of Biology and Chemistry, vol. 50, no. 3, 2022, pp. 227-3, doi:10.15671/hjbc.1052654.
Vancouver Taysun MB, Gizli A. Comparison of Accelerated Exposure Tests on Organic Coatings via Electrochemical Means. HJBC. 2022;50(3):227-3.

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