Advances in Chemical Engineering and Science

Volume 1, Issue 2 (April 2011)

ISSN Print: 2160-0392   ISSN Online: 2160-0406

Google-based Impact Factor: 1.41  Citations  h5-index & Ranking

The Corrosion Protection Behaviour of Zinc Rich Epoxy Paint in 3% NaCl Solution

HTML  Download Download as PDF (Size: 4641KB)  PP. 51-60  
DOI: 10.4236/aces.2011.12009    14,505 Downloads   31,386 Views  Citations

Affiliation(s)

.

ABSTRACT

Electrochemical impedance spectroscopy (EIS) in the l00 kHz-10 mHz frequency range was employed as the main electrochemical technique to study the corrosion protection behaviour of zinc rich epoxy paint in 3% NaCl solution. The EIS results obtained at the open-circuit corrosion potential have been interpreted using a model involving the impedance of particle to particle contact to account for the increasing resistance between zinc particles with immersion period, in addition to the impedance due to the zinc surface oxide layer and the electrical resistivity of the binder. Galvanic current and dc potential measurements allowed us to conclude that the cathodic protection effect of the paint takes some time to be achieved. The loss of cathodic protection is due to a double effect: the decrease of the Zn/Fe area ratio due to Zn corrosion and the loss of electric contact between Zn to Zn particles. Even when the cathodic protection effect by Zn dust become weak, the substrate steel is still protected against corrosion due to the barrier nature of the ZRP film reinforced by Zn.

Share and Cite:

N. Hammouda, H. Chadli, G. Guillemot and K. Belmokre, "The Corrosion Protection Behaviour of Zinc Rich Epoxy Paint in 3% NaCl Solution," Advances in Chemical Engineering and Science, Vol. 1 No. 2, 2011, pp. 51-60. doi: 10.4236/aces.2011.12009.

Cited by

[1] Effect of 2-mercaptobenzothiazole on the corrosion inhibition of Cu–10Ni alloy in 3 wt% NaCl solution
Journal of Applied Electrochemistry, 2022
[2] Effect of Aluminum Flakes on Corrosion Protection Behavior of Water-Based Hybrid Zinc-Rich Coatings for Carbon Steel Substrate in NaCl Environment
Coatings, 2022
[3] Durability evaluation framework for new building materials
2022
[4] Enhanced anticorrosion performance of zinc rich epoxy coatings modified with stainless steel flakes
Johansen, CE Weinell, H Bi… - Progress in Organic …, 2022
[5] Cathodic protection of 75% zinc-rich coatings compared under immersion and atmospheric conditions: Protection for defect areas
Corrosion Communications, 2021
[6] Improving zinc-rich epoxy primer performance with lamellar zinc incorporation
2021
[7] Electrochemical Evaluation of Three Zinc-Rich Paints on Carbon Steel Substrates Exposed to 3.5% NaCl
2021
[8] Comparison of cathodic protection processes of 40% zinc-rich coatings under immersion and atmospheric conditions: Protection for defective areas
2021
[9] Organic zinc-rich protective coatings with improved electrochemical properties: The role of nano-powder additions
2021
[10] Introduction to Composite Materials: Nanocomposites and their Potential Applications
2021
[11] Potential of zinc based-graphene oxide composite coatings on mild steel in acidic solution
Journal of the Indian …, 2021
[12] Concepts of steel protection by coatings with a reduced content of zinc pigments
Progress in Organic …, 2021
[13] Determining efficiency of inhibition of johar flower ethanol extract (Cassia siamea Lamk.) in the corrosion reaction of A36
2021
[14] Sacrificial Dissolution of Zinc Electroplated and Cold Galvanized Coated Steel in Saline and Soil Environments: A Comparison
2021
[15] Sacrificial Dissolution of Zinc Electroplated and Cold Galvanized Coated Steel in Saline and Soil Environments: A Comparison. Materials 2021, 14, 744
2021
[16] Research progress in organic zinc rich primer coatings for cathodic protection of metals–A comprehensive review
2021
[17] Haftung und Korrosionsbeständigkeit von Klebstofffilmen auf oberflächenmodifizierten Zinklegierungsüberzügen
2020
[18] Polyester-graphene primer coatings: corrosive and mechanical properties
2020
[19] Highlighting performances of lanthanum-intercalated stevensite and the commercially available triphosphate aluminium (TPA) as anticorrosive pigments for brass in 3 …
2020
[20] RANCANG BANGUN ALAT PENGGULUNG SERAT DARI DAUN NANAS (Ananas comusus L.)
2020
[21] A review of cathodic protection in repairing reinforced concrete structures
2019
[22] A Review on the Role of Nanoparticles in Improvement of Anti-corrosion Properties of Zinc Rich Coatings
2019
[23] Advances in Nanostructured Composites: Volume 1: Carbon Nanotube and Graphene Composites
2019
[24] Predicting the corrosion rate of steel in cathodically protected concrete using potential shift
Construction and Building Materials, 2019
[25] Electrochemical characterizations of epoxy coatings embedded by modified calcium carbonate particles
2019
[26] 碳纳米管对水性环氧富锌防腐涂料防腐性能的影响
2019
[27] Studying the corrosion mitigation behavior and chemical durability of FeTiO3/melamine formaldehyde epoxy composite coating for steel internal lining applications
2019
[28] Nano iron oxide dispersed alkyd coating as an efficient anticorrosive coating for industrial structures
2019
[29] Electrochemical evaluations of zinc-rich epoxy primers modified with polyaniline and exfoliated polyaniline graphite nanocomposite
2019
[30] Salt spray corrosion and electrochemical corrosion performances of Dacromet fabricated Zn–Al coating
2019
[31] A Novel Dendrite‐Free Mn2+/Zn2+ Hybrid Battery with 2.3 V Voltage Window and 11000‐Cycle Lifespan
2019
[32] Effect of surface treatment by sandblasting on the quality and electrochemical corrosion properties of a C-1020 carbon steel used by an Algerian oil company
2019
[33] A Mechanistic Study of Corrosion of Graphene and Low zinc-rich Epoxy Coatings on Carbon Steel in Salt Environment
2019
[34] ẢNH HƯỞNG CỦA HÀM LƯỢNG KẼM TRONG MÀNG PHỦ THỦY TINH LỎNG TỚI HIỆU QUẢ BẢO VỆ CATOT TRÊN THÉP CT3
2019
[35] Nowa generacja antykorozyjnych gruntów cynkowych o ulepszonych właściwościach ochronnych, użytkowych i ekologicznych
2019
[36] Improved anti-corrosion performance of epoxy zinc rich coating on rusted steel surface with aluminum triphosphate as rust converter
2019
[37] Nanocomposite coatings on steel for enhancing the corrosion resistance: A review
2019
[38] Development of new criteria for evaluating the effectiveness of Zn-rich primers in protecting Al-Mg alloys
2019
[39] Anticorrosive effectiveness of coatings with reduced content of Zn pigments in comparison with zinc-rich primers
2019
[40] Nanocomposites: Recent Trends, Developments and Applications
2019
[41] A Review of Modern Assessment Methods for Metal and Metal-Oxide Based Primers for Substrate Corrosion Protection
2019
[42] A Comparison of the Corrosion Response of Zinc-Rich Coatings with and Without Presence of Carbon Nanotubes Under Erosion and Corrosion Conditions
2018
[43] Bond strength behaviour of zinc rich paint coating on concrete surface
2018
[44] Corrosion Analysis
2018
[45] Improvement of the sacrificial behavior of zinc in scratches of zinc-rich polymer coatings by incorporating clay nanosheets
2017
[46] ZINC-RICH LITHIUM SILICATE COATINGS FOR CORROSION PREVENTION IN STEELS
2017
[47] A mechanistic study of the enhanced cathodic protection performance of graphene-reinforced zinc rich nanocomposite coating for corrosion protection of carbon steel …
Journal of Alloys and Compounds, 2017
[48] Study on evolution of coating state and role of graphene in graphene-modified low-zinc waterborne epoxy anticorrosion coating by electrochemical impedance …
Journal of Materials Engineering and Performance, 2017
[49] Drugs as environmentally benign corrosion inhibitors for ferrous and nonferrous materials in acid environment: an overview
2017
[50] Scanning Kelvin probe blister studies of the delamination of epoxy films on organosilane modified ZnMgAl alloy coated steel
Materials and Corrosion, 2017
[51] Smart inhibition action of layered double hydroxide nanocontainers in zinc-rich epoxy coating for active corrosion protection of carbon steel substrate
Journal of Alloys and Compounds, 2017
[52] Study on Evolution of Coating State and Role of Graphene in Graphene-Modified Low-Zinc Waterborne Epoxy Anticorrosion Coating by Electrochemical Impedance Spectroscopy
Journal of Materials Engineering and Performance, 2017
[53] Scanning Kelvin Probe Blister test measurements of adhesive delamination–Bridging the gap between experiment and theory
International Journal of Adhesion and Adhesives, 2017
[54] INFLUENCE ON THE DECANTAION WATER ON THE CORROSION RESISTANCE OF AN ORGANIC COATING APPLIED TO THE INTERNAL PARTS OF THE …
2017
[55] Corrosion Characteristics of Downstream Metal Material of Boiler System in Solution of By-product Ammonium Bisulfate from SCR Denitrification
2016
[56] ПРОТЕКТОРНЫЕ ЦИНКОНАПОЛНЕННЫЕ ГРУНТОВКИ. ВЛИЯНИЕ КОМПОНЕНТОВ НА ПРОТИВОКОРРОЗИОННУЮ ЭФФЕКТИВНОСТЬ. ЧАСТЬ 1
2016
[57] Effect of Nano Clay on Corrosion Protection of Zinc-Rich Epoxy
2016
[58] Amelioration of anticorrosion and hydrophobic properties of epoxy/PDMS composite coatings containing nano ZnO particles
Progress in Organic Coatings, 2016
[59] Corrosion resistance and improved adhesion properties of propargyl alcohol impregnated mesoporous titanium dioxide built-in epoxy zinc rich primer
Progress in Organic Coatings, 2016
[60] The Study of Thin Films by Electrochemical Impedance Spectroscopy
Nanostructures and Thin Films for Multifunctional Applications, 2016
[61] Effect of Nano Clay on Corrosion Protection of Zinc-Rich Epoxy Coatings on Steel 37
Journal of Materials Science & Technology, 2016
[62] Electrochemical impedance study for modeling the anticorrosive performance of coatings based on accelerated tests and outdoor exposures
Journal of Coatings Technology and Research, 2016
[63] Rehabilitation of Concrete Industrial Building Facades Attacked by Acids
New Approaches to Building Pathology and Durability, 2016
[64] SCR 脱硝副产物硫酸氢铵对锅炉尾部金属材料的腐蚀特性研究
2016
[65] Протекторные цинконаполненные грунтовки. Влияние компонентов на противокоррозионную эффективность. Часть 2
2016
[66] Electrochemical characterization in CO2 saturated environment of Zn-rich epoxy nanocoatings on API X52 pipeline grade steel substrate under flow conditions
2015
[67] Pelagia Research Library
Studies, 2015
[68] Spent tyre valorisation: new polymer modified asphalts for steel protection in an aggressive marine environment
RSC Advances, 2015
[69] Khả năng bảo vệ chống ăn mòn thép cacbon của màng sơn epoxy giàu kẽm kết hợp với ống nano cacbon
2015
[70] Paper No. CMT-02
2015
[71] Electrochemical Characterization Of Zinc-Rich Epoxy Primer-Cnt Nanocoating/Steel Interface In Co2 Saturated Under Different Flow Conditions
2015
[72] On the Role of Zn Pigments Against Natural and Cathodic Overprotection Disbondment of a Multilayer Paint System
Corrosion, 2015
[73] Enhanced anticorrosion properties of epoxy coatings from Al and Zn based pigments
Chemical Research in Chinese Universities, 2015
[74] Study of the Efficiency of Polypyrrole/ZnO Nanocomposites as Additives in Anticorrosion Coatings
Materials Research, 2015
[75] Hybrid nanostructured coatings for corrosion protection of base metals: a sustainability perspective
Materials Research Express, 2015
[76] Towards lightweight nanocomposite coatings for corrosion inhibition: Graphene, carbon nanotubes, and nanostructured magnesium as case studies
ProQuest Dissertations Publishing, 2015
[77] Synthesis of conductive polyaniline–graphite nanocomposite in supercritical CO2 and its application in zinc-rich epoxy primer
The Journal of Supercritical Fluids, 2014
[78] András Gergely*, Zoltán Pászti*, Imre Bertóti†, Judith Mihály
2014
[79] Hybrid Zinc-Rich Paint Coatings: The Impact of Incorporation of Nano-Size Inhibitor and Electrical Conducting Particles
Intelligent Coatings for Corrosion Control, 2014
[80] Effect of Molar Ratio and Resin Modification on the Protection Properties of Zinc-rich Alkali Silicate Primer
Iranian Journal of Oil & Gas Science and Technology, 2014
[81] A study of effect of micaceous iron oxide on corrosion protection behavior of waterborne zinc-rich silicate coatings
Majlesi Journal of Materials Engineering, 2014
[82] Synthesis of conductive polyaniline–graphite nanocomposite in supercritical CO 2 and its application in zinc-rich epoxy primer
The Journal of Supercritical Fluids, 2014
[83] Nanostructured Magnesium Composite Coatings for Corrosion Protection of Low-Alloy Steels
Industrial & Engineering Chemistry Research, 2014
[84] Electrochemical corrosion behavior of arc sprayed Al–Zn–Si–RE coatings on mild steel in 3.5% NaCl solution
Transactions of Nonferrous Metals Society of China, 2014
[85] Evaluating protection performance of zinc rich epoxy paints modified with polyaniline and polyaniline-clay nanocomposite
Progress in Organic Coatings, 2014
[86] Acrylic Resin Derivatives as Modifier for Potassium Silicate Binder in Zinc-Rich Coatings: Electrochemical Studies
Institute for Color Science and Technology, 2014
[87] Eco‐friendly, acrylic resin‐modified potassium silicate as water‐based vehicle for anticorrosive zinc‐rich primers
Journal of Applied Polymer Science, 2014
[88] Ionic liquids improve the anticorrosion performance of Zn-rich coatings
RSC Advances, 2014
[89] 电弧喷涂 Al-Zn-Si-RE 合金涂层在 3.5% NaCl 溶液中的电化学腐蚀行为 (英文)
中国有色金属学报: 英文版, 2014
[90] PENGARUH KONSENTRASI INHIBITOR ASAM ASKORBAT DAN KONSENTRASI LARUTAN NATRIUM KLORIDA TERHADAP LAJU KOROSI BAJA KARBON RENDAH PASCA PELAPISAN CAT EPOXY
Jurnal Nosel, 2014
[91] مطالعه اثر اکسید آهن میکایی بر رفتار حفاظت از خوردگی پوشش پایه آبی سیلیکاتی غنی از روی‎
2014
[92] Study on applying the computer network technology to construct the enterprise information system
2014
[93] Pengaruh Konsentrasi Inhibitor Asam Askorbat dan Konsentrasi Larutan Natrium Klorida Terhadap Laju Korosi Baja Karbon Rendah Pasca Pelapisan Cat …
2014
[94] Characterization of Microstructure, Phase composition and Corrosion Resistance of Al-Zn-Si-RE Waterborne Coatings
2014
[95] András Gergely*, Zoltán Pászti*, Imre Bertóti, Judith Mihály
2014
[96] Evaluation of cathodic protection behavior of waterborne inorganic zinc‐rich silicates containing various contents of MIO pigments
2013
[97] Improvement of electrochemical action of zinc-rich paints by addition of nanoparticulate zinc
Corrosion Science, 2013
[98] 一种高分散性富锌漆的制备及性能研究
表面技术, 2013
[99] Evaluation of cathodic protection behavior of waterborne inorganic zinc-rich silicates containing various contents of MIO pigments
Anti-Corrosion Methods and Materials, 2013
[100] Investigation of corrosion protection afforded by inorganic anticorrosive coatings comprising micaceous iron oxide and zinc dust
Corrosion Engineering, Science and Technology, 2013
[101] Сенсорное противокоррозионное покрытие
2013
[102] Electrochemical Impedance Spectroscopy of Hybrid Epoxy Resin Emulsion Coatings
Journal of Minerals and Materials Characterization and Engineering, 2012
[103] Reinforcement Fibers in Zinc-Rich Nano Lithiun Silicate Anticorrosive Coatings
Corrosion Resistance, InTech, 2012
[104] Corrosion Performance of Hybrid Epoxy Resin Coatings with Electrochemical impedance Spectroscopy.
Der Chemica Sinica, 2012
[105] Reinforcement fibers in zinc-rich silicate anticorrosive coatings
2012
[106] Studies on [(tetrahydrophthalated cyclohexanone-formaldehyde resin)-(epoxy
Pelagia Research Library, 2011

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.