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BŘEZINA, M. MINDA, J. DOLEŽAL, P. KRYSTÝNOVÁ, M. FINTOVÁ, S. ZAPLETAL, J. WASSERBAUER, J. PTÁČEK, P.
Original Title
Characterization of Powder Metallurgy Processed Pure Magnesium Materials for Biomedical Applications
Type
journal article in Web of Science
Language
English
Original Abstract
Magnesium and its alloys are modern lightweight materials applicable in a wide range of industrial fields from aerospace and automotive to biomedical applications. Its main advantages are a good strength to weight ratio and biocompatibility in combination with biodegradability. However, due to the high reactivity of pure Mg and the mechanical properties, not really sufficient for engineering applications, mainly magnesium alloys are used. Good mechanical properties of magnesium and its alloys can be furthermore significantly upgraded by decreasing the grain size, nowadays performed mainly via severe plastic deformation (SPD) techniques, powder metallurgy (PM) processing or by a combination of both methods
Keywords
magnesium; powder metallurgy; cold pressing; hot pressing; EIS (Electrochemical impedance spectroscopy); three-point bending test; corrosion
Authors
BŘEZINA, M.; MINDA, J.; DOLEŽAL, P.; KRYSTÝNOVÁ, M.; FINTOVÁ, S.; ZAPLETAL, J.; WASSERBAUER, J.; PTÁČEK, P.
Released
31. 10. 2017
Publisher
MDPI AG
Location
St. Alban-Anlage 66, 4052 Basel, Switzerland
ISBN
2075-4701
Periodical
Metals
Year of study
7
Number
State
Swiss Confederation
Pages from
1
Pages to
22
Pages count
URL
https://www.mdpi.com/2075-4701/7/11/461
Full text in the Digital Library
http://hdl.handle.net/11012/70155
BibTex
@article{BUT140871, author="Matěj {Březina} and Jozef {Minda} and Pavel {Doležal} and Michaela {Hasoňová} and Stanislava {Fintová} and Josef {Zapletal} and Jaromír {Wasserbauer} and Petr {Ptáček}", title="Characterization of Powder Metallurgy Processed Pure Magnesium Materials for Biomedical Applications", journal="Metals", year="2017", volume="7", number="7", pages="1--22", doi="10.3390/met7110461", issn="2075-4701", url="https://www.mdpi.com/2075-4701/7/11/461" }