dc.creatordos Santos M.C.G.
dc.creatorFreire C.M.A.
dc.date2013
dc.date2015-06-25T19:19:16Z
dc.date2015-11-26T15:17:17Z
dc.date2015-06-25T19:19:16Z
dc.date2015-11-26T15:17:17Z
dc.date.accessioned2018-03-28T22:26:59Z
dc.date.available2018-03-28T22:26:59Z
dc.identifier
dc.identifierRevista Materia. Universidade Federal Do Rio De Janeiro, v. 18, n. 4, p. 1576 - 1586, 2013.
dc.identifier15177076
dc.identifier10.1590/S1517-70762013000400017
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84905125166&partnerID=40&md5=739009c7edd8a63cc4f962e286c1c4cf
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/89922
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/89922
dc.identifier2-s2.0-84905125166
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1259410
dc.descriptionThis study aims to evaluate the corrosion resistance of steel coated with ZnFe alloy electrodeposits treated with films consisted of a pre-layer obtained through immersion in a rare earth salt solution using Ce or La elements plus a silane thin film of BTSE (bis 1, 2 - [triethoxysilyl]) ethane) and / or BTESPTS (bis-(3 - [triethoxysilyl]-propyl) - tetrassulfeto). These systems were evaluated by polarization curves, electrochemical impedance spectroscopy (EIS), scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). The polarization and EIS results indicated that the studied systems were effective against corrosion and that their performance depends on the type of cation salt. The ZnFe + Ce + + BTSE BTESPTS system proved to be the best result against corrosion.
dc.description18
dc.description4
dc.description1576
dc.description1586
dc.descriptionSouza, M.E.P., (2006) Avaliação de Revestimentos Híbridos Organo-inorgânicos e de Resinas Polissiloxanas Aplicadas sobre Aço Galvanizado e sobre Camadas de ZnFe., , Tese de D. Sc., Faculdade de Engenharia Mecânica, Universidade Estadual de Campinas, Campinas, SP, Brasil
dc.descriptionCorrêa, A.G., Zuin, V.G., (2009) Química Verde: Fundamentos e aplicações, 5. , São Carlos, Edufscar
dc.description(2000) Directive 2000/53/ec of the European Parliament and of the Concil, , OJEC-Official Journal of the Europe Communities-End-of-Life Vehicles-18-setembro
dc.descriptionSantos, M.C.G., (2005) Estudo de Filmes Poliméricos contendo Silanos α-UPS e VS como Revestimentos Promotores de Adesão em Superfícies Galvanizadas e Eletrodepósitos de Ligas Zn/Fe e Zn/Co., , Dissertação de M. Sc., Faculdade de Engenharia Mecânica, Universidade Estadual de Campinas, Campinas-SP
dc.descriptionKasten, L.S., Grant, J.T., Grebasch, An XPS study of cerium dopants in sol-gel coatings for aluminum 2024-T3 (2001) Surface and Coatings Technology, 140 (1), pp. 11-15
dc.descriptionGarcia-Heras, M., Jimenez Morales, A., Casal, B., Preparation and electrochemical study of cerium-silica sol-gel thin films (2004) Journal of Alloys and Compounds, 380 (1-2), pp. 219-224
dc.descriptionPeng, S., Zhao, W., Zeng, Z., Preparation of anticorrosion hybrid silica sol-gel coating using Ce(NO3)3 as catalyst (2013) J. Sol-Gel Sci Technol, 66 (1), pp. 133-138
dc.descriptionAramaki, K., The inhibition effects of cation inhibitors on corrosion of zinc in aerated 0.5M NaCl (2001) Corrosion Science, 43 (8), pp. 591-604
dc.descriptionAramaki, K., Preparation of self-healing protective films on a zinc electrode treated in a cerium (III) nitrate solution and modified with sodium phosphate and cerium (III) nitrate (2003) Corrosion Science., 46 (6), pp. 1565-1579. , Sep
dc.descriptionAramaki, K., Preparation of chromate-free, self-healing polymer films containing sodium silicate on zinc pretreated in a cerium(III) nitrate solution for preventing zinc corrosion at scratches in 0.5 M NaCl (2002) Corrosion Science, 44 (6), pp. 1375-1389. , June 2002
dc.descriptionAramaki, K., Self-healing protective films prepared on zinc electrodes by treatment in a cerium(III) nitrate solution and modification with sodium phosphate and calcium or magnesium nitrate (2003) Corrosion Science, 45 (10), pp. 2361-2376
dc.descriptionAramaki, K., Prevention of zinc corrosion in oxygenated 0.5 M NaCl by treatment in a cerium (III) nitrate solution and modification with sodium hexadecanoate (2006) Corrosion Science, 48 (10), pp. 3298-3308
dc.descriptionAramaki, K., Self-healing protective films prepared on zinc by treatments with cerium (III) nitrate and sodium phosphate (2002) Corrosion. Science, 44 (11), pp. 2621-2634
dc.descriptionZhu, D., Ooij, W.J.V., Corrosion protection of AA 2024-T3 by bis-[3-(triethoxysilyl)propyl]tetrasulfide in sodium chloride solution. Part 2: Mechanism for Corrosion Protection (2003) Corrosion Science, 45 (10), pp. 2177-2197
dc.descriptionFerreira, M.G.S., Duarte, R.G., Montemor, M.F., Silanes and rare earth salts as chromate replacers for pre-treatments on galvanized steel (2004) Electrochimica acta, 49 (17-18), pp. 2927-2935
dc.descriptionPeng, T., Man, R., Rare earth and silane as chromate replacers for corrosion protection on galvanized steel (2009) Journal of rare Earths, 27 (1), pp. 159-163
dc.descriptionAramaki, K., Self-healing mechanism of an organosiloxane polymer film containing sodium silicate and cerium(III) nitrate for corrosion of scratched zinc surface in 0.5 M NaCl (2002) Corrosion Science, 44 (7), pp. 1621-1632
dc.descriptionTrabelsi, W., Cecilio, P., Ferreira, M.G.S., Electrochemical assessment of the self-healing properties of Ce-doped silane solutions for the pre-treatment of galvanized steel substrates (2005) Progress in Organic Coatings, 54 (4), pp. 276-284
dc.descriptionTrabelsi, W., Triki, E., Dhouibi, L., The use of pre-treatments based on doped silane solutions for improved corrosion resistance of galvanized steel substrates (2006) Surface & Coatings Technology, 200, pp. 4240-4250
dc.descriptionSantos, M.C.G., (2005) Avaliação do desempenho de filmes contendo silanos e sais de terras raras para proteção contra corrosão de camadas ZnFe eletrodepositadas, , Tese de D. Sc., Faculdade de Engenharia Mecânica, Universidade Estadual de Campinas, Campinas, SP, Brasil
dc.descriptionOliveira, M.F., (2006) Estudo da Influência de organo-silanos na resistência à corrosão de aço carbono por meio de técnicas eletroquímicas, , Tese de D. Sc., Departamento de Engenharia Metalúrgica e de Materiais, Escola Politécnica da Universidade de São Paulo, São Paulo, SP, Brasil
dc.descriptionFerreira, M.G.S., Duarte, R.G., Montemor, M.F., Silanes and rare earth salts as chromate replacers for pré-treatments on galvanized steel (2004) Electrochimica Acta, 49 (17-18), pp. 2927-2935
dc.descriptionCabral, A., Duarte, R.G., Montemor, M.F., Analytical characterisation and corrosion behaviour of bis-[triethoxysilylpropyl]tetrasulphide pre-treated AA2024-T3 (2005) Corrosion Science, 47 (3), pp. 869-881
dc.descriptionCabral, A.M., Trabelsi, W., Serra, R., The corrosion resistance of hot dip galvanized steel and AA2024-T3 pre-treated with bis-[triethoxysilylpropyl] tetrasulfide solutions doped with Ce(NO3)3 (2006) Corrosion Science, 48 (11), pp. 3470-3758
dc.descriptionTrabelsi, W., Triki, E., Dhouibi, L., The use of pre-treatments based on doped silane solutions for improved corrosion resistance of galvanized steel substrate (2006) Surf. Coat. Technol, pp. 4240-4250
dc.descriptionZhu, D., Ooij, W.J.V., Enhanced corrosion resistance of AA2024-T3 and hot-dip galvanised steel using mixture of bis-[triethoxysilylpropyl] tetrasulfide and bis-[triethoxysilylpropyl]amine (2004) Electrochimica Acta, 49 (7), pp. 1113-1125
dc.languageen
dc.languagept
dc.publisherUniversidade Federal do Rio de Janeiro
dc.relationRevista Materia
dc.rightsaberto
dc.sourceScopus
dc.titleEvaluation Of Corrosion Resistance Of Steel Coated With Zinc-iron Alloy Electrodeposits Containing Btse, Btespts And Rare Earth Salts As Conversion Films [avaliação Da Resistência à Corrosão De Eletrodepósitos De Liga Znfe Sobre Aço Tratado Com Filmes Contendo Sais De Terras Raras E Silanos Btse, Btespts]
dc.typeArtículos de revistas


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