Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Electrochemical Behavior and Corrosion Study of Electrodeposits of Zn and Zn-Fe-Co on Steel"
written by Conceição A. M. Dutra, Eduardo N. Codaro, Roberto Z. Nakazato,
published by Materials Sciences and Applications, Vol.3 No.6, 2012
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Повышение антикоррозионных свойств высокочистого цинка легированием алюминием
2021
[2] Insights into corrosion inhibition mechanism of mild steel in 1 M HCl solution by quinoxaline derivatives: electrochemical, SEM/EDAX, UV-visible, FT-IR and theoretical …
2021
[3] Electrochemical Deposition and Spectroscopy Investigation of Zn Coatings on Steel
2021
[4] Effect of Indium Additions on the Specific Heat and Thermodynamic Functions of a TsAMSv4-1-2.5 Zinc Alloy
2021
[5] Morphological Analysis of Corrosion Inhibition by 2-Carboxyethyl Phosphonic Acid and Zn2+ System on Carbon Steel in Seawater
Indian Journal of Natural Sciences, 2021
[6] Влияние циркония на удельную теплоемкость и изменение термодинамических функций цинкового сплава Zn55Al
2020
[7] Влияние добавок меди на коррозионно-электрохимическое поведение высокочистого цинка в среде электролита NaCl
2020
[8] КОРРОЗИОННО-ЭЛЕКТРОХИМИЧЕСКОЕ ПОВЕДЕНИЕ ЦИНКОВОГО СПЛАВА ЦАМСв4-1-2, 5, ЛЕГИРОВАННОГО ГАЛЛИЕМ В СРЕДЕ ЭЛЕКТРОЛИТА NaCl
2020
[9] Multivariable Analysis of Electrodeposited Silane/Zinc Coating—Improvement of Cathodic Protection of Steel
2020
[10] Повышение антикоррозионных свойств покрытий на основе цинкового сплава ЦАМСв4-1-2, 5 легированием стронцием
2020
[11] Влияние добавок никеля на анодное поведение цинково-алюминиевых сплавов Zn5Al, Zn55Al в среде электролита NaCl
2019
[12] An Effect of Nickel Additives on Anode Behavior of Zinc-Aluminum Alloys Zn5Al, Zn55Al in NaCl Electrolyte
2019
[13] Effect of Morphology and Surface Modification of Silica Nanoparticles on the Electrodeposition and Corrosion Behavior of Zinc-Based Nanocomposite Coatings
2019
[14] Green Leaves Extract as a Corrosion Inhibitor
2017
[15] Corrosion-Assisted Self-Growth of Au-Decorated ZnO Corn Silks and Their Photoelectrochemical Enhancement
ACS Applied Materials & Interfaces, 2017
[16] Smart anti-corrosion self-healing zinc metal-based molybdate functionalized-mesoporous-silica (MCM-41) nanocomposite coatings
RSC Advances, 2017
[17] Smart Core-shell Nanocontainers with Kaolinite For Improved Corrosion Protection of Zinc Coating on Steel
2017
[18] Influence of the Deposition Temperature on the Electrodeposition Mechanism of Zn-Co-Fe Alloy
2017
[19] Corrosion behaviour of electrodeposited Zn–Co–Fe alloy
2016
[20] Elektrohemijska i površinska karakterizacija trokomponentnih legura sistema Ag-Cu-Zn u blisko neutralnim hloridnim rastvorima
2015
[21] Relationship between the Electrogalvanized Stages and the Income of Hydrogen in a Low Carbon Wire Steel
Procedia Materials Science, 2015
[22] Sodium nitrite as corrosion inhibitor for mild steel in simulated concrete pore solution
2015
[23] Corrosion inhibition Effect of Carbon Steel in Sea Water by L-Arginine-Zn 2 System
Hindawi Publishing Corporation International Journal of Chemical Engineering, 2014
[24] Corrosion Inhibition Effect of Carbon Steel in Sea Water by L-Arginine-Zn 2
International Journal of Chemical Engineering , 2014
[25] Relación entre las etapas del galvanizado electrolítico y el ingreso de hidrógeno en alambres de bajo Carbono
2014
[26] Corrosion inhibition effect of carbon steel in sea water by L-Arginine-Zn2+ system
2014
Free SCIRP Newsletters
Copyright © 2006-2024 Scientific Research Publishing Inc. All Rights Reserved.
Top