The Role of Zinc Phosphate Pigment in the Anticorrosion Properties of Bisphenol A Diglycidyl Ether-Polyaminoamide Coating for Aluminum Alloy AA2024-T3
Tóm tắt
Từ khóa
Tài liệu tham khảo
Zhu W, Li W, Mu S, Fu N, Liao Z (2017) Comparative study on Ti/Zr/V and chromate conversion treated aluminum alloys: anti-corrosion performance and epoxy coating adhesion properties. Appl Surf Sci 405:157–168
Dalmoro V, Alemán C, Ferreira CA, dos Santos JH, Azambuja DS, Armelin E (2015) The influence of organophosphonic acid and conducting polymer on the adhesion and protection of epoxy coating on aluminium alloy. Prog Org Coat 88:181–190
Mrad M, Amor YB, Dhouibi L, Montemor MF (2018) Corrosion prevention of AA2024-T3 aluminum alloy with a polyaniline/poly (γ-glycidoxypropyltrimethoxysilane) bi-layer coating: comparative study with polyaniline mono-layer feature. Surf Coat Technol 337:1–11
Charitha BP, Chenan A, Rao P (2017) Enhancement of surface coating characteristics of epoxy resin by dextran: an electrochemical approach. Indus Eng Chem Res 56(5):1137–1147
Niroumandrad S, Rostami M, Ramezanzadeh B (2016) Effects of combined surface treatments of aluminium nanoparticle on its corrosion resistance before and after inclusion into an epoxy coating. Prog Org Coat 101:486–501
García-Rubio M, De Lara MP, Ocón P, Diekhoff S, Beneke M, Lavía A, García I (2009) Effect of postreatment on the corrosion behaviour of tartaric–sulphuric anodic films. Electrochim Acta 54(21):4789–4800
Živković LS, Bajat JB, Popić JP, Jegdić BV, Stevanović S, Mišković-Stanković VB (2015) Protective properties of cataphoretic epoxy coating on aluminium alloy AA6060 modified with electrodeposited Ce-based coatings: effect of post-treatment. Prog Org Coat 79:43–52
Jiang MY, Wu LK, Hu JM, Zhang JQ (2015) Silane-incorporated epoxy coatings on aluminum alloy (AA2024). Part 1: improved corrosion performance. Corros Sci 92:118–126
Bajat JB, Milošev I, Jovanović Ž, Mišković-Stanković VB (2010) Studies on adhesion characteristics and corrosion behaviour of vinyltriethoxysilane/epoxy coating protective system on aluminium. Appl Surf Sci 256(11):3508–3517
Renaud A, Poorteman M, Escobar J, Dumas L, Bonnaud L, Dubois P, Olivier MG (2017) A new corrosion protection approach for aeronautical applications combining a Phenol-paraPhenyleneDiAmine benzoxazine resin applied on sulfo-tartaric anodized aluminum. Prog Org Coat 112:278–287
Curioni M, Skeldon P, Koroleva E, Thompson GE, Ferguson J (2009) Role of tartaric acid on the anodizing and corrosion behavior of AA 2024 T3 aluminum alloy. J Electrochem Soc 156(4):C147–C153
Ramezanzadeh B, Rostami M, Niroumandrad S (2017) Enhancement of the physical/mechanical properties of an epoxy composite by addition of aluminum nanoparticles through modification with cerium oxides and functionalization by SiO2-NH2 thin films. Prog Org Coat 112:244–253
Chang CH, Huang TC, Peng CW, Yeh TC, Lu HI, Hung WI, et al (2012) Novel anticorrosion coatings prepared from polyaniline/graphene composites. Carbon 50(14):5044–5051
Chang KC, Ji WF, Lai MC, Hsiao YR, Hsu CH, Chuang TL, et al (2013) Synergistic effects of hydrophobicity and gas barrier properties on the anticorrosion property of PMMA nanocomposite coatings embedded with graphene nanosheets. Polym Chem 5(3):1049–1056
Ding J, Rahman urO, Peng W, Dou H, Yu H (2018) A novel hydroxyl epoxy phosphate monomer enhancing the anticorrosive performance of waterborne Graphene/Epoxy coatings. Appl Surf Sci 427:981–991
Liu S, Yan H, Fang Z, Wang H (2014) Effect of graphene nanosheets on morphology, thermal stability and flame retardancy of epoxy resin. Compos Sci Tech 90:40–47
Zhang Z, Zhang W, Li D, Sun Y, Wang Z, Hou C, et al (2015) Mechanical and anticorrosive properties of graphene/epoxy resin composites coating prepared by in-situ method. Inter J Mol Sci 16(1):2239–2251
Conradi M, Kocijan A, Kek-Merl D, Zorko M, Verpoest I (2014) Mechanical and anticorrosion properties of nanosilica-filled epoxy-resin composite coatings. Appl Surf Sci 292:432–437
Sanaei Z, Bahlakeh G, Ramezanzadeh B (2017) Active corrosion protection of mild steel by an epoxy ester coating reinforced with hybrid organic/inorganic green inhibitive pigment. J Alloys Compd 728:1289–1304
Deyab MA, Ouarsal R, Al-Sabagh AM, Lachkar M, El Bali B (2017) Enhancement of corrosion protection performance of epoxy coating by introducing new hydrogenphosphate compound. Prog Org Coat 107:37–42
Cotting F, Aoki IV (2016) Smart protection provided by epoxy clear coating doped with polystyrene microcapsules containing silanol and Ce (III) ions as corrosion inhibitors. Surf Coat Technol 303:310–318
Behzadnasab M, Mirabedini SM, Esfandeh M, Farnood RR (2017) Evaluation of corrosion performance of a self-healing epoxy-based coating containing linseed oil-filled microcapsules via electrochemical impedance spectroscopy. Prog Org Coat 105:212–224
Jadhav AJ, Holkar CR, Pinjari DV (2018) Anticorrosive performance of super-hydrophobic imidazole encapsulated hollow zinc phosphate nanoparticles on mild steel. Prog Org Coat 114:33–39
Deyab MA, De Riccardis A, Mele G (2016) Novel epoxy/metal phthalocyanines nanocomposite coatings for corrosion protection of carbon steel. J Mol Liq 220:513–517
Dagdag O, El Harfi A, Essamri A, El Gouri M, Chraibi S, Assouag M, et al (2018) Phosphorous-based epoxy resin composition as an effective anticorrosive coating for steel. Inter J Indus Chem. https://doi.org/10.1007/s40090-018-0152-5
Dagdag O, El Harfi A, Essamri A, El Bachiri A, Hajjaji N, Erramli. H, Hamed O, Jodeh S (2018) Anticorrosive performance of new epoxy-amine coatings based on zinc phosphate tetrahydrate as a nontoxic pigment for carbon steel in NaCl medium. Arab J Sci Eng. https://doi.org/10.1007/s13369-018-3160-z
Ghaffari M, Ehsani M, Vandalvand M, Avazverdi E, Askari A, Goudarzi A (2015) Studying the effect of micro-and nano-sized ZnO particles on the curing kinetic of epoxy/polyaminoamide system. Prog Org Coat 89:277–283
Xu W, Wang Z, Han EH, Wang S, Liu Q (2018) Corrosion performance of Nano-ZrO2 modified coatings in hot mixed acid solutions. Materials 11(6):934
Deflorian F, Rossi S, Fedel M, Motte C (2010) Electrochemical investigation of high-performance silane sol–gel films containing clay nanoparticles. Prog Org Coat 69(2):158–166
Montemor MF, Snihirova DV, Taryba MG, Lamaka SV, Kartsonakis IA, Balaskas AC, et al (2012) Evaluation of self-healing ability in protective coatings modified with combinations of layered double hydroxides and cerium molibdate nanocontainers filled with corrosion inhibitors. Electrochim Acta 60:31–40
Ammar S, Ramesh K, Vengadaesvaran B, Ramesh S, Arof AK (2016) Amelioration of anticorrosion and hydrophobic properties of epoxy/PDMS composite coatings containing nano ZnO particles. Prog Org Coat 92:54–65
Truc TA, Pébère N, Hang TTX, Hervaud Y, Boutevin B (2004) Evaluation of corrosion performance of a UV-cured polyurethane coating in the presence of organic phosphorous compounds. Prog Org Coat 49(2):130–136
Dagdag O, El Harfi A, El Gouri M, Touhami ME, Essamri A, Cherkaoui O (2016) Electrochemical impedance spectroscopy (SIE) evaluation of the effect of immersion time of the protective matrix based on a polymer tetra glycidyl of ethylene dianiline (TGEDA) on carbon steel in 3% NaCl. Inter J ChemTech Res 9(04):390–399
Ghasemi-Kahrizsangi A, Shariatpanahi H, Neshati J, Akbarinezhad E (2015) Corrosion behavior of modified nano carbon black/epoxy coating in accelerated conditions. Appl Surf Sci 331:115–126
Konios D, Stylianakis MM, Stratakis E, Kymakis E (2014) Dispersion behaviour of graphene oxide and reduced graphene oxide. J Col Interf Sci 430:108–112
Wu LK, Zhang JT, Hu JM, Zhang JQ (2012) Improved corrosion performance of electrophoretic coatings by silane addition. Corros Sci 56:58–66
Dagdag O, Hamed O, Erramli H, El Harfi A (2018) Anticorrosive performance approach combining an epoxy polyaminoamide-zinc phosphate coatings applied on sulfo-tartaric anodized aluminum alloy 5086. J Bio- Tribo-Corros 4(4):52
Alibakhshi E, Naeimi A, Ramezanzadeh M, Ramezanzadeh B, Mahdavian M (2018) A facile synthesis method of an effective anti-corrosion nanopigment based on zinc polyphosphate through microwaves assisted combustion method; comparing the influence of nanopigment and conventional zinc phosphate on the anti-corrosion properties of an epoxy coating. J Alloys Compd 762:730–744