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Titlebook: Advances in Metallic Biomaterials; Processing and Appli Mitsuo Niinomi,Takayuki Narushima,Masaaki Nakai Book 2015 Springer-Verlag Berlin He

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Collaborative Communities of FirmsIM) process. MIM is an advanced powder processing technique for the mass production of complex-shaped components. This technology also reduces the material used for production and processing cost. Sintered compacts obtained by MIM process show high density over 95 % and excellent mechanical properti
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Collaborative Communities of Firmsures higher than approximately two-thirds the melting point of the material. In order to predict the optimum working condition of the workpiece with complex geometry, a novel technique, smart hot forging technique, has been developed and was successfully applied in optimizing both the microstructure
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https://doi.org/10.1007/978-3-030-67537-0ne-forming ability of the metallic biomaterials is to modify their surface using bioactive ceramics. This chapter introduces various coatings on the metals to give high bioactivity, which is to have an effect on bonding to living bone. The first section is concerned with bioactive ceramic coatings u
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https://doi.org/10.1007/978-3-030-67537-0trength between the base metal and the HAp film has to be evaluated to ensure the reliability of the implant. But the method of evaluation is not yet established because of its difficulty to cause adhesive fracture between base metal and HAp thin film. In this chapter, tensile load is applied to the
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Longchun Cao,Kui Ma,Bin Cao,Jing Fannges in the properties of the materials. There are many areas of application for FGMs, and one of them is biomedical application. In this chapter, at first, the merits of the metallic biomaterials with graded composition and/or microstructure are described. Then, microstructures and mechanical prope
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