Preliminary Results of FeMnSi+Si(PLD) Alloy Degradation
Author:
Affiliation:
1. Technical University “Gh. Asachi”
2. Al. I. Cuza” University
3. "Ion Ionescu de la Brad" University of Agricultural Sciences and Veterinary Medicine Iaşi
Abstract
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://www.scientific.net/KEM.638.117.pdf
Reference12 articles.
1. N. Kirkland, N. Birbilis, Magnesium Biomaterials: Design, Testing and Best Practice. New York, Springer, (2013).
2. N. T. Kirkland, Magnesium biomaterials: Past, present and future, Corrosion Engineering, Science and Technology 47 (2012) 322-328.
3. M. Peuster, P. Wohlsein, M. Brügmann, M. Ehlerding, K. Seidler, C. Fink, H. Brauer, A. Fischer, G. Hausdorf,. A novel approach to temporary stenting: Degradable cardiovascular stents produced from corrodible metal-results 6-18 months after implantation into New Zealand white rabbits, Heart, 86 (2001).
4. D. Vojtěch, J. Kubásek, J. Šerák, P. Novák, Mechanical and corrosion properties of newly developed biodegradable Zn-based alloys for bone fixation, Acta Biomaterialia, 7 (2011) 3515-3522.
5. Biotronik BIOTRONIK's Bioabsorbable Magnesium Scaffold Continues to Show Strong Results at 12 Months with Uncompromised Device Usability,. (2013).
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