By Mitsuo Niinomi, Takayuki Narushima, Masaaki Nakai
This ebook covers the newest advances in processing thoughts for generating metal biomaterial implants. It additionally discusses contemporary advancements in floor alterations utilizing bioactive ceramics and blood-compatible polymers, in addition to the adhesive power of bioactive floor layers, prior to introducing the sensible functions of steel biomaterials within the fields of surgical procedure and dentistry. As such, the ebook offers a necessary reference consultant for researchers, graduate scholars and clinicians operating within the fields of fabrics, surgical procedure, dentistry, and mechanics.
Mitsuo Niinomi, PhD, D.D.Sc., is a Professor on the Institute for fabrics examine, Tohoku collage, Japan
Takayuki Narushima, PhD, is a Professor on the division of fabrics Processing, Tohoku collage, Japan
Masaaki Nakai, PhD, is an affiliate Professor on the Institute for fabrics study, Tohoku college, Japan
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Additional resources for Advances in Metallic Biomaterials: Processing and Applications
1 Metal Injection Molding MIM Process Metal injection molding (MIM) is an advanced manufacturing technology that uses the shaping advantage of injection molding process to be applied to metal. The process has ability to produce the high degree of geometrical complexity of the component with high properties. Because of high final density, often near theoretical density, the MIM products exhibit excellent properties. MIM process is applicable for most of common engineering metals such as carbon steel, stainless steel, tungsten, nickel-based alloys, titanium alloys, etc.
American Society for Testing and Materials 13. ISO 5832–2 (1999) Implants for surgery – metallic materials – Part 2: Unalloyed titanium 14. ISO 5832–3 (1996) Implants for surgery – metallic materials – Part 3: Wrought titanium 6-aluminium 4-vanadium alloy 15. ASTM F67 (2013) Standard specification for unalloyed Titanium, for surgical implant applications. American Society for Testing and Materials 16. ASTM F136 (2013) Standard specification for wrought Titanium-6Aluminum-4Vanadium ELI (extra low interstitial) alloy for surgical implant applications.
Murr LE, Gaytan SM, Medina F, Martinez E, Martinez JL, Hernandez DH, Machado BI, Ramirez DA, Wicker RB (2010) Characterization of Ti–6Al–4V open cellular foams fabricated by additive manufacturing using electron beam melting. Mater Sci Eng 527:1861–1868 49. Van Bael S, Chai YC, Truscello S, Moesen M, Kerckhofs G, Van Oosterwyck H, Kruth JP, Schrooten J (2012) The effect of pore geometry on the in vitro biological behavior of human periosteum-derived cells seeded on selective laser-melted Ti6Al4V bone scaffolds.