Improvement of bio-compatible AZ61 magnesium alloy corrosion resistance by fluoride conversion coating
Author:
Affiliation:
1. Vysoké učení technické v Brně, Fakulta chemická, Ústav materiálů
2. Žilinská univerzita v Žiline, Výskumné centrum Žilinskej univerzity
3. Ústav fyziky materiálů AV ČR v. v. i., Brno
4. Vysoké učení technické v Brně, Fakulta strojního inženýrství
Abstract
Publisher
Walter de Gruyter GmbH
Subject
General Materials Science
Reference25 articles.
1. 1. Staiger, M.P., Pietak, A.M., Huadmai, J. a Dias, G. Magnesium and its alloys as orthopedic biomaterials, A review. Biomaterials2006, 27, 1728-1734.
2. 2. Swaminathan, R. Magnesium metabolism and its disorders, The Clinical biochemist2003, 24, 47-66.
3. 3. Zaman, Fahim, et al. Severe Hypermagnesemia Resulting from Laxative Use in a Patient with Renal Insufficiency. Hospital Physician2002, 51-54.
4. 4. Salahshoor, M., Guo, Y. Biodegradable Orthopedic Magnesium-Calcium (MgCa) Alloys, Processing, and Corrosion Performance. Materials2012, 5, 135-155.
5. 5. Cha, P.R., et al. Biodegradability engineering of biodegradable Mg alloys: Tailoring the electrochemical properties and microstructure of constituent phases, Scientific Reports2013, 3, 1-6.
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2. Corrosion resistance of the biodegradable ZE41 magnesium alloy treated by unconventional fluoride conversion coating;Koroze a ochrana materialu;2019-12-01
3. Improvement of electrochemical corrosion characteristics of AZ61 magnesium alloy with unconventional fluoride conversion coatings;Surface and Coatings Technology;2019-01
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5. Unconventional fluoride conversion coating preparation and characterization;Anti-Corrosion Methods and Materials;2017-11-06
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