New PDF release: Biomaterials Science: Processing, Properties and

By Susmita Bose, Visit Amazon's Amit Bandyopadhyay Page, search results, Learn about Author Central, Amit Bandyopadhyay, , Roger Narayan

ISBN-10: 1118995201

ISBN-13: 9781118995204

This CT quantity comprises eleven contributed papers from the next 2013 fabrics technological know-how and know-how (MS&T'13) symposia:

  • Next new release Biomaterials
  • Surface homes of Biomaterials

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Additional info for Biomaterials Science: Processing, Properties and Applications IV: Ceramic Transactions

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Relative density of sintered Ti-lOMn and Ti-14Mn as a function of sintering temperature. respectively. The differences between the nominal and actual amounts are insignificant. 274 mass%, respectively. These high amounts of O are sufficient to cause solid solution strengthening in the Ti alloys. Figure l 9 shows the relative densities of the sintered Ti-lOMn and Ti-14Mn as a function of the sintering temperature. As shown in Fig. 1, the relative density of the sintered Ti-lOMn increase from 93% to 97% with increasing the sintering temperature from 1273 K to 1423 K.

Qu et al. demonstrated that addition of F" ions improves the structural stability of calcium phosphates [17]. % F ions 33•Biomaterials Science: Processing, Properties and Applications IV 31 Microstructural Characteristics of Nano Calcium Phosphates content was studied on the CaPs. As a result of oxidization titanium dioxide formed. 8 in 29) was observed which overlaps with P-CPP. Co-doped samples revealed that the intensity of the peaks of the samples increased by increasing Ti 4+ amounts. 5F. As seen from the XRD patterns (Figure I) of the doped and undoped samples peaks are attributed to P-TCP (ICDD file #9-169) and/or p-CPP (ICDD file # 11-0177).

Moreover, metal injection molding (MIM) method, which is a near-net shape process, was selected as a fabrication process of Ti-Mn alloys. The MIM method is expected to become a common fabrication process to reduce the production costs of biomedical devices fabricated with Ti alloys. For biomedical applications, metallic materials must have suitable levels of mechanical properties, which includes Young's modulus, ductility, fatigue life, fretting fatigue, wear properties, and other functionalities such as super elasticity and the shape memory effect.

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Biomaterials Science: Processing, Properties and Applications IV: Ceramic Transactions by Susmita Bose, Visit Amazon's Amit Bandyopadhyay Page, search results, Learn about Author Central, Amit Bandyopadhyay, , Roger Narayan


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