By Mitsuo Niinomi, Takayuki Narushima, Masaaki Nakai
This publication covers the newest advances in processing options for generating metal biomaterial implants. It additionally discusses fresh advancements in floor adjustments utilizing bioactive ceramics and blood-compatible polymers, in addition to the adhesive power of bioactive floor layers, sooner than introducing the sensible purposes of metal biomaterials within the fields of surgical procedure and dentistry. As such, the booklet offers a vital 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 learn, Tohoku collage, Japan
Takayuki Narushima, PhD, is a Professor on the division of fabrics Processing, Tohoku college, Japan
Masaaki Nakai, PhD, is an affiliate Professor on the Institute for fabrics study, Tohoku collage, Japan
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Extra info for Advances in Metallic Biomaterials: Processing and Applications
Then, it is considered that the compacts using a mixture of Ti, Nb, and fine Al powders have high density and excellent tensile properties at high sintering temperature range. 4 ks are 97 %, 850 MPa, and 14 %, respectively. These properties are comparable to those of the wrought materials. 44 H. Miura et al. Fig. 2 Summary The metal injection molding process was applied to produce Ti-6Al-4V and Ti-6Al-7Nb alloy compacts. The sintered compacts show higher density over 95 %. 35 mass% because the elongation would dramatically decrease from that content.
Heinl P, Mu¨ller L, K€ orner C, Singer RF, Mu¨ller FA (2008) Cellular Ti–6Al–4V structures with interconnected macro porosity for bone implants fabricated by selective electron beam melting. Acta Biomater 4:1536–1544 Chapter 2 Metal Injection Molding (MIM) Processing Hideshi Miura, Toshiko Osada, and Yoshinori Itoh Abstract Complex-shaped components can be obtained by net or near-net shaping through the powder metallurgy processing route such as metal injection molding (MIM) process. MIM is an advanced powder processing technique for the mass production of complex-shaped components.
The tensile strength and oxygen content of the compacts using a mixture of Ti, TiH2, and Al-40V alloy powders increased with increasing TiH2 content. On the other hand, the elongation of the compacts using a mixture of Ti, TiH2, and Al-40V alloy powders reduced drastically with increasing TiH2 content . The sintered compacts using a mixture of Ti and fine irregular Al-40V alloy powder showed the highest density, and the compacts using a mixture of Ti and coarse, irregular Al-40V alloy powder showed slightly higher density than the compacts using a mixture of Ti and spherical atomized Al-40V alloy powder.
Advances in Metallic Biomaterials: Processing and Applications by Mitsuo Niinomi, Takayuki Narushima, Masaaki Nakai