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Download Advanced Processing and Manufacturing Technologies for by Tatsuki Ohji, Mrityunjay Singh, Sanjay Mathur, Andrew PDF

By Tatsuki Ohji, Mrityunjay Singh, Sanjay Mathur, Andrew Gyekenyesi, Michael Halbig

Over a hundred and seventy contributions (invited talks, oral shows, and posters) have been awarded via contributors from universities, examine associations, and undefined, which provided interdisciplinary discussions indicating robust clinical and technological curiosity within the box of nanostructured structures. This factor includes 23 peer-reviewed papers that hide a variety of features and the most recent advancements relating to nanoscaled fabrics and useful ceramics

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Additional info for Advanced Processing and Manufacturing Technologies for Nanostructured and Multifunctional Materials: Ceramic Engineering and Science Proceesings,

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J. Fleming, M. R. Towler, et S. Hampshire, Mechanical parameters of strontium doped hydroxyapatite sintered using microwave and conventional methods, J Mech Behav Biomed Mater, 4, [8], 2063–73 (2011). 12 X. L. Wang, H. S. Fan, Y. M. Xiao, et X. D. Zhang, Fabrication and characterization of porous hydroxyapatite/beta-tricalcium phosphate ceramics by microwave sintering, Mater. , 60, [4], 455 458 (2006). 13 Q. Wu, X. Zhang, B. Wu, et W. Huang, Effects of microwave sintering on the properties of porous hydroxyapatite scaffolds, Ceram.

F} Figure 1 Effect of nitrogen content on glass transition temperature for glass of composition (eq. %) 28Ca: 57Si: 15Al containing 0, 1, 3 and 5 eq. % fluorine (lines are calculated from regression equations obtained using all data points) (4) Figure 2 Effect of fluorine content on glass transition temperature for glass of composition (eq. %) 28Ca: 57Si: 15Al containing 0 and 20 eq. % nitrogen (lines are calculated from regression equations obtained using all data points) Modulus and microhardness data is, as indicated above, less readily analysed in terms of fluorine composition, as comparison of figures 3 and 4 indicate.

Sangleboeuf, S. Deriano, M. LeFloch, B. Beuneu, and S. Hampshire, Structure-property Correlations in Y-Ca-Mg-Sialon Glasses: Physical and Mechanical Properties, J. Am. Ceram. , 88 [4] 889–96 (2005). 13 N. G. Karpukhina, U. Werner-Zwanziger, J. W. Zwanziger, and A. A. Kiprianov, Preferential Binding of Fluorine to Aluminum in High Peralkaline Aluminosilicate Glasses, J. Phys. Chem. , 111, 10413–20 (2007). 14 S. Matsuya, A. G. Hill, and R. V. Law, “Structural Characterization of Ionomer Glasses by Multinuclear Solid State MAS-NMR Spectroscopy,” J.

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