Journal of Minerals and Materials Characterization and Engineering

Journal of Minerals and Materials Characterization and Engineering

ISSN Print: 2327-4077
ISSN Online: 2327-4085
www.scirp.org/Journal/jmmce
E-mail: jmmce@scirp.org
"Effects of Tin on Aluminum–Zinc–Magnesium Alloy as Sacrificial Anode in Seawater"
written by L.E. Umoru, O.O. Ige,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.7 No.2, 2008
has been cited by the following article(s):
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[1] Sacrificial anode materials to protect marine grade steel structures: a review
Corrosion Reviews, 2024
[2] Effect of Varying Cathode–Anode Parameters on Performance of Mild Steel Cathodically Protected by the Aluminum Anode in 0.5 m NaCl Environment
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[3] Development of Al-Mg Alloy for the protection of steel structure in 3.5% Nacl
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[4] Corrosion of Oil and Gas Pipelines: A Review of the Common Control Methods and their Limitations
J Petro Chem Eng, 2023
[5] Influence of temperature and thermal cycles on the corrosion mechanism of wrought AZ91D magnesium alloy in simulated sea water solution
KOM–Corrosion and …, 2023
[6] Corrosion of an AZ31B magnesium alloy by sulfate-reducing prokaryotes in a mudflat environment
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[7] The role of Sn on microstructure, wear and corrosion properties of Al-5Zn-2.5 Mg-1.6 Cu-xSn alloy
Aziz… - Materials Research …, 2022
[8] Effect of Sn Impurity on a Commercial Aluminium Alloy for Die Casting
Key Engineering Materials, 2022
[9] Development of Novel CD Free Zn Based Alloys For Sacrificial Anodes
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[10] Layered double hydroxide based smart protective coating systems
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[11] A Review on Effect of Alloying Element on Aluminium Anode
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[12] Basic properties
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[13] Development of Al-5% Zn-0.5% Sn-2.6% Mg Alloy as Sacrificial Anode for Cathodic Protection of Steel in 3 wt.% NaCl Solution
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[14] Principles of creating new alloy compositions for the production of cast protectors
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[15] The effect of Magnesium addition on the performance of Aluminium-Zinc–Copper alloy as a sacrificial anode in seawater
2020
[16] Effects of Alloying with Sn and Mg on the Microstructure and Electrochemical Behavior of Cast Aluminum Sacrificial Anodes
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[17] Improvement of microstructure and corrosion properties of AA7075 Al alloy by melt shearing process
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[18] IMPROVEMENT OF SACRIFICIAL ANODE CHARACTERISTICS OF Al-Mg-Zn Alloy MATERIAL
2018
[19] The Selection of Magnesium alloys as Sacrificial Anode for the Cathodic Protection of Underground Steel Structure
International Journal of Engineering Trends and Technology, 2017
[20] Elektrohemijska i površinska karakterizacija trokomponentnih legura sistema Ag-Cu-Zn u blisko neutralnim hloridnim rastvorima
2015
[21] Cathodic Protection of Carbon Steel Using Aluminum as Sacrificial Anode in Sea Water
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[22] Effect of Tin on the Corrosion and Electrochemical Behavior of Al‐Zn‐Mg Alloy in Sea Water
Light Metals 2014, 2014
[23] Effect of TIN on the Corrosion and Electrochemical Behavior of Al-Zn-Mg Alloy in Sea Water
Light Metals 2014, 2014
[24] EFFECT OF TIN ADDITIONS ON THE CORROSION BEHAVIOR OF Al-Zn-Mg ALLOY
2014
[25] Electrochemical characterisation of hybrid activators for aluminium sacrificial anodes in natural sea water
DEFENCE S&T TECHNICAL BULLETIN, 2013
[26] Characterization of Al-Zn-Sn as Sacrificial Anodes to Protect Underground Oil Pipelines in Al-Hilla Regional
Advanced Materials Research, 2013
[27] Carbonate Coatings as Protective Barriers for Pipe Borne Water Transport Material
Journal of Minerals and Materials Characterization and Engineering, 2012
[28] Effect of Adding Ag on Tensile and Microstructure Properties of Zinc Alloy.
International Journal of Engineering & Technology, 2012
[29] Effect of Adding Ag on Tensile and Microstructure Properties of Zinc Alloy
International Journal of Engineering & Technology, 2012
[30] Anodic behavior of Al–Zn–In sacrificial anodes at different concentration of zinc and indium
International Journal of Materials Research, 2012
[31] Effects of Tin on Aluminum–Zinc Alloy as Sacrificial Anode to Protect Underground Oil Pipeline in Al-Mahawil Regional
Advanced Materials Research, 2012
[32] Protect of Underground Oil Pipelines by Using (Al-Sn-Zn) as Sacrificial Anode in Al-Qasim Region
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[33] Synthesis and characterization of polypyrrole/Sn-doped TiO2 nanocomposites (NCs) as a protective pigment
Applied Surface Science, 2011
[34] Corrosion Resistance of Aluminum Alloy 7020-T6 in Sea Water
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[35] Synthesis and characterization of polypyrrole/Sn-doped TiO 2 nanocomposites (NCs) as a protective pigment
Applied Surface Science, 2011
[36] Optimization of Manganese and Magnesium Contents in As-cast Aluminum-Zinc-Indium Alloy as Sacrificial Anode
Journal of Materials Science & Technology, 2011
[37] Cathodic Protection of Oil Pipelines by Aluminum Alloys
Journal of King Abdulaziz University, 2011
[38] Synthesis and characterization of polypyrrole/Sn-doped TiO< sub> 2 nanocomposites (NCs) as a protective pigment
Applied Surface Science, 2011
[39] Effect of Heat Treatment on the Corrosion Behavior of Al-Zn Alloys in Seawater
2010
[40] The Susceptibility of 7020 Al-alloys to Pitting Corrosion at Various Heating Temperatures
SIJ Al-Rubaiey, KM Ali, 2010
[41] Optimum Thermal Spraying Parameters for the Manufacture of Al-4.2% Zn-2% Mg Alloy Coatings on a Structural Steel
[42] TUGAS AKHIR− TL184834 PENGARUH KADAR TIMAH (Sn) PADA ANODA ALUMINIUM TERHADAP STRUKTUR MIKRO DAN KARAKTERISTIK PROTEKSI
[43] АМ Верховлюк, д-р техн. наук, проф, зав. відділу; e-mail: anatoliiverkhovliuk@ gmail. com; ORCID 0000-0002-2670-4052 ДС Каніболоцький, кад. техн. наук …
[44] Thermodynamic analysis of aluminium-based sacrificial anode alloys phase composition
OA Shcheretskyi, AM Verkhovliuk
[45] Завантажити
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