Mizuno / Wereszczak / Lara-Curzio | Advances in Bioceramics and Biocomposites II, Volume 27, Issue 6 | E-Book | sack.de
E-Book

E-Book, Englisch, Band 27, 166 Seiten, E-Book

Reihe: Ceramic Engineering and Science Proceedings, Cocoa Beach

Mizuno / Wereszczak / Lara-Curzio Advances in Bioceramics and Biocomposites II, Volume 27, Issue 6

E-Book, Englisch, Band 27, 166 Seiten, E-Book

Reihe: Ceramic Engineering and Science Proceedings, Cocoa Beach

ISBN: 978-0-470-29177-1
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



The use of ceramics in biological environments and biomedical applications is of increasing importance, as is the understanding of how biology works with minerals to develop strong materials. These proceedings contain papers that discuss the interface between biology and materials, presented at the Proceedings of the 30th International Conference on Advanced Ceramics and Composites, January 22-27, 2006, Cocoa Beach, Florida. Organized and sponsored by The American Ceramic Society and The American Ceramic Society's Engineering Ceramics Division in conjunction with the Nuclear and Environmental Technology Division.
Mizuno / Wereszczak / Lara-Curzio Advances in Bioceramics and Biocomposites II, Volume 27, Issue 6 jetzt bestellen!

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Preface.
Introduction.
In Vitro Evaluation.
Initial In Vitro Interaction of Human Osteoblasts withNanostructured Hydroxyapatite (NHA) (Xingyuan Guo, Julie Gough,Ping Xiao, Jing Liu, and Zhijian Shen).
Osteoblast Response to Zinc-Doped Sintered p-TricalciumPhosphate (Sahil Jalota, Sarit 8. Bhaduri, and A. Cuneyt Tas).
Determination of the Spatial Resolution of Micro-Focus X-Ray CTSystem with a Standard Specimen (Mineo Mizuno, Yasutoshi Mizuta,Takeharu). Kato, and Yasushi lkeda
Processing of Biomaterials.
Hydroxyapatite Hybridized with Metal Oxides for BiomedicalApplications (Akiyoshi Osaka, Eiji Fujii, Koji Kawabata,Hideyuki Yoshirnatsu, Satoshi Hayakawa, Kanji Tsuru, ChristianBonhornrne, and Florence Babonneau).
Preparation of Self-setting Cement-Based Micro- and MacroporousGranules of Carbonated Apatitic Calcium Phosphate (A. CuneytTas).
A Self-setting, Monetite (CaHPO,) Cement for Skeletal Repair(Tarang R. Desai, Sarit B. Bhaduri, and A. Cuneyt Tas).
Chemically Bonded Ceramics Based on Ca-Aluminates asBiomaterials (L. Herrnansson and H. Engqvist).
A Theoretical and Mathematical Basis Towards DispersingNanoparticles and Biological Agents in a Non Polar Solvent forFabricating Porous Materials (Navin J. Manjooran and Gary R.Pickrell).
Preparation of Hydroxyapatite and Calcium Phosphate BioceramicMaterials from the Aqueous Solution at Room Temperature (Jia-HuiLiao, Yu-Chen Chang, and Tzer-Shin Sheu).
Hydroxyapatite Coatings Produced by Plasma Spraying of OrganicBased Solution Precursor (E. Garcia, Z. B. Zhang, T. W. Coyle, L.Gan, and R. Pilliar).
Visible-Light Photocatalytic Fibers for Inactivation ofPseudomonas Aeruginosa (P. G. Wu, R. C. Xie, J. Irnlay, and J. K.Shang).
Precipitation Mechanisms of Hydroxyapatite Powder in theDifferent Aqueous Solutions (Yu-Chen Chang and Tzer-Shin Sheu).
Conversion of Bioactive Silicate (45S5), Borate, andBorosilicate Glasses to Hydroxyapatite in Dilute Phosphate Solution(Wenhai Huang, Moharned N. Raharnan, and Delbert E. Day).
Dental Ceramics.
Variable Frequency Microwave (VFM) Processing: A New Tool toCrystallize Lithium Disilicate Glass (Morsi Mahmoud, Diane Folz,Carlos Suchicital, David Clark, and Zak Fathi).
Author Index.


Andrew A. Wereszczak received his Ph.D. in Materials Science& Engineering from the University of Delaware in 1992, andwhile his research is varied, the study and interpretation of therelationship between mechanical properties and microstructure (ofmonolithic ceramics, structural materials, and electronicmaterials) are common denominators. Micromechanicalcharacterization of structural and armor ceramics usinginstrumented static and dynamic indentation (e.g., Hertzian) withacoustic emission analysis, and adapting those measuredperformances and damage mechanism analyses to strength, rollingcontact fatigue, wear, machining, and ballistic performances is aprimary objective.
Additionally, ceramic strength and fatigue testing, ceramicfractographical and flaw population analyses, Weibull analysisstrength-size-scaling, and probabilistic life prediction and designof structural ceramic components constitutive another primaryresearch objective. In support of all these efforts, bothconventional and microstructural-level finite element stressanalyses and microstructure characterization are performed. He isthe author or co-author of over 100 technical publications and hasgiven over 80 presentations, and is the co-developer ofµ-FEA software.
Edgar Lara-Curzio is a Distinguished Research StaffMember and the leader of the Mechanical Properties and MechanicsGroup at Oak Ridge National Laboratory. Since 1999 he hasbeen serving as leader of the Mechanical Characterization andAnalysis User Center in ORNL's High Temperature MaterialsLaboratory. Lara-Curzio received a B.Sc. degree inEngineering Physics from the Metropolitan University in Mexico Cityin 1986 and a Ph.D. in Materials Engineering from RensselaerPolytechnic Institute, Troy NY, in 1992.
His research work has been focused on studying the mechanicalbehavior, durability and reliability of structural and functionalmaterials, on understanding the relationships among theirprocessing, microstructure and properties, studying the effect ofservice environment on their properties and on developing models todescribe their behavior and to predict their service life.
Dr. Lara-Curzio has co-edited 6 books and has authored 4 bookchapters and more than 140 publications in refereed journals andconference proceedings.


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