Have a personal or library account? Click to login
Mechanical and corrosion properties of iron-mangan materials sintered in the presence of plasma Cover

Mechanical and corrosion properties of iron-mangan materials sintered in the presence of plasma

Open Access
|May 2020

References

  1. 1. Chen F.; Liu X.: Progress in Polymer Science Advancing biomaterials of human origin for tissue engineering. Progress in Polymer Science2016, 53 (1), 86–168.10.1016/j.progpolymsci.2015.02.004480805927022202
  2. 2. Oriňaková R.; Gorejová R.; Králová Orságová Z.; Oriňak A.; Maskaľová I.; Kupková M.; Baláž M.; Hrubovčáková M.; Sopčák T.; Zubrik A.; Oriňak M.: Evaluation of Mechanical Properties and Hemocompatibility of Open Cell Iron Foams with Polyethylene Glycol Coating. Applied Surface Sciience2019, 144 634.10.1016/j.apsusc.2019.144634
  3. 3. Navarro M.; Michiardi A.; Castan O.; Planell J. A. Biomaterials in orthopaedics. Journal of the Royal Society Interface2008, 5, 1137–1158.10.1098/rsif.2008.0151270604718667387
  4. 4. Datta L. P.; Manchineella S.; Govindaraju T.: Biomolecules-derived Biomaterials. Biomaterials2019, 119 633.10.1016/j.biomaterials.2019.11963331831221
  5. 5. Oriňakova R.; Gorejová R.; Macko J.; Oriňak A.; Kupková M.; Hrubovčakova M.; Ševc J.; Smith R.M.: Evaluation of in vitro biocompatibility of open cell iron structures with PEG coating. Applied Surface Science2019, 475, 515–518.
  6. 6. Park, J.; Lakes, R. S. Biomaterials, 3rd ed.; Springer-Verlag New York: New York, 2007.
  7. 7. Binyamin, G.; Shafi, B.; Mery, C.: Biomaterials: A primer for surgeons. Chitin-Chitosan: Myriad Functionalities in Science and Technology; 2006; 276–283.10.1053/j.sempedsurg.2006.07.00717055958
  8. 8. Nawrat, Z.: Review of Research in Cardiovascular Devices. Review of Handbook of Polymer Applications in Medicine and Medical Devices; 2009; 145–189.10.1016/B978-0-323-22805-3.00008-6
  9. 9. Tabraiz S.; Ansari A.Q.; Urooj S.; Aldobali M.: A Review based on Coronary Biodegradable and Bioabsorbable Stents for Artery Disease Coronary. Procedia Computer Science2019, 152, 354–359.
  10. 10. Prajapati S.K.; Jain A.; Jain S.; Tirth B.; College P. Bio-degradable polymers and constructs: A novel approach in drug delivery. European Polymer Journal2019, 109 191.10.1016/j.eurpolymj.2019.08.018
  11. 11. Jiang T.; Duan Q.; Zhu J.; Liu L.; Yu L.: Starch-based Biodegradable Materials: Challenges and Opportunities. Advanced Industrial Engeneering and Polymer Research2019.10.1016/j.aiepr.2019.11.003
  12. 12. Linsley C.; Li X.; North S.M.E.; Guan Z.; Pan S.; Linsley C.; Li X.: Manufacturing and Characterization of as Potential Biodegradable Material. Procedia Manufacturing2019, 34, 247–251.
  13. 13. Zheng Y. F.; Gu X. N.; Witte F.: Biodegradable metals. Material Science and Engeneering R2014, 77, 1–34.
  14. 14. Hermawan H.; Purnama A.; Dube D.; Couet J.; Mantovani D.: Fe–Mn alloys for metallic biodegradable stents: Degradation and cell viability studies. Acta Biomaterialia2010, 6, 1852–1860.
  15. 15. Shreyas P.; Panda B.; Kumar R.: Materials Today: Proceedings Mechanical properties and microstructure of 316L- galvanized steel weld. Materials Today: Proceeding2019 5–12.10.1016/j.matpr.2019.05.418
  16. 16. Dehghan-Manshadi A.; St John D.H.; Dargusch M.S.: Tensile Properties and Fracture Behaviour of Biodegradable Iron-Manganese Scaffolds Produced by Powder Sintering. Materials2019,12, 157210.3390/ma12101572656615631091657
  17. 17. Dargusch M.S.; Dehghan-Manshadi A.; Shahbazi M.; Venezuela J.; Tran X.; Song J.; Liu N.; Xu C.; Ye Q. S.; Wen C. E.: Exploring the Role of Manganese on the Microstructure, Mechanical Properties, Biodegradability, and Biocompatibility of Porous Iron-Based Scaffolds. Acs Biomaterials Science & Engineering2019, 5, 1686-170210.1021/acsbiomaterials.8b0149733405546
  18. 18. Pustov, Y.A.; Zhukova, Y.S.; Malikova, P.E.; Prokoshkin, S.D.; Dubinskii, S.M.: Structure and Corrosion-Electro-chemical Behavior of Bioresorbable Alloys Based on the Fe-Mn System. Prot. Met. Phys. Chem. Surf.2018, 54, 469-476.
  19. 19. Hong D.; Chou D. T.; Velikokhatnyi O. I.; Roy A.; Lee B.; Swink I.; Issaev I.; Kuhn H.A.; Kumta P.N.: Binder-Jetting 3D Printing and Alloy Development of New Biodegradable Fe–Mn–Ca/Mg Alloys. Acta Biomaterialia2016, 45, 375-386.
  20. 20. Hermawan H.; Dubé D.; Mantovani D.: Degradable Metallic Biomaterials: Design and Development of Fe–Mn Alloys for Stents. J Biomed Mater Res A2010, 93A, 1-11.10.1002/jbm.a.3222419437432
  21. 21. Donik Č.; Kocijan A.; Paulin I.; Hočevar M.; Gregorčič P.; Godec M.: Improved Biodegradability of Fe–Mn Alloy After Modification of Surface Chemistry and Topography by a Laser Ablation. Applied Surface Science2018, 453, 383-393.
  22. 22. Shuai C. Li S.; Peng S.; Feng P.; Lai Y.; Gao C.: Biodegradable Metallic Bone Implants. Mater Chem Front2019, 3, 544-562.
  23. 23. Drynda A.; Hassel T.; Bach F. W.; Peuster M.: In Vitro and In Vivo Corrosion Properties of New Iron–Manganese Alloys Designed for Cardiovascular Applications. J Bio Mat Res B2014, 103, 649-660.
  24. 24. Campos N.; Gierl-mayer C.; Oro R.; Torralba M.; Danninger H.: New Alloying Systems for Sintered Steels: Critical Aspects of Sintering Behavior. Metallurgical and Materials Transaction2015, 46, 1349–1359.
  25. 25. Berkowitz B.; Ewing R.P.: Percolation Theory and Network Modelling Application in Soil Physics. Surveys in Geophysics1998, 19, 23-72.
  26. 26. Balberg I.: Recent Developments in Continuum Percolation, Philosophical Magazine B1987, 56, 991-1003.10.1080/13642818708215336
  27. 27. Kupková M.; Hrubovčáková M.; Zeleňák A.; Sułowski M.; Ciaś A.; Oriňáková R.; Morovská Turoňová A.; Žáková K.; Kupka, M.: Dimensional Changes, Microstructure, Microhardness Distributions And Corrosion Properties Of Iron And Iron-Manganese Sintered Materials. Archives of Metallurgy and Materials2015, 60 (2), 639–642.10.1515/amm-2015-0185
DOI: https://doi.org/10.2478/kom-2020-0001 | Journal eISSN: 1804-1213 | Journal ISSN: 0452-599X
Language: English
Page range: 1 - 10
Published on: May 4, 2020
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2020 Králová Z. Orságová, M. Kupková, M. Hrubovčáková, A. Zeleňák, R. Oriňaková, Turoňová A. Morovská, K. Žáková, M. Kupka, K. Kovaľ, I. Šišoláková, published by Association of Czech and Slovak Corrosion Engineers
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.