Brown / Bachrach / Mathur | Advances in Bioceramics and Porous Ceramics III, Volume 31, Issue 6 | E-Book | sack.de
E-Book

E-Book, Englisch, Band 31, 188 Seiten, E-Book

Reihe: Ceramic Engineering and Science Proceedings

Brown / Bachrach / Mathur Advances in Bioceramics and Porous Ceramics III, Volume 31, Issue 6


1. Auflage 2010
ISBN: 978-0-470-94401-1
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

E-Book, Englisch, Band 31, 188 Seiten, E-Book

Reihe: Ceramic Engineering and Science Proceedings

ISBN: 978-0-470-94401-1
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



This issue contains the proceedings of the "Porous Ceramics:Novel Developments and Applications" and "NextGeneration Bioceramics" symposia, which were held on January24-29, 2010 at the Hilton Daytona Beach Resort and the Ocean Centerin Daytona Beach, Florida, USA.
The interaction between ceramic materials and living organismsis a leading area of ceramics research. Novel bioceramic materialsare being developed that will provide improvements in diagnosis andtreatment of medical and dental conditions. In addition,bioinspired ceramics and biomimetic ceramics have generatedconsiderable interest in the scientific community. The "NextGeneration Bioceramics" symposium addressed several leadingareas related to the development and use of novel bioceramics,including advanced processing of bioceramics; biomineralization andtissue-material interactions; bioinspired and biomimetic ceramics;ceramics for drug delivery; ceramic biosensors; in vitro and invivo characterization of bioceramics; mechanical properties ofbioceramics; and nanostructured bioceramics.
The "Porous Ceramics" symposium aimed to bringtogether engineers and scientists in the area of ceramic materialscontaining high volume fractions of porosity, in which the porosityranged from nano- to millimeters. These materials have attractedsignificant academic and industrial attention for use inenvironmental applications, an area where ceramics, particularlyporous ones, play a key role because of their suitable properties.Therefore, a significant number of contributions, of which some arepresent in this volume, was devoted to the fabrication andcharacterization of porous ceramics for gas purification (e.g.,H2 separation and CO2 separation) as well asto particulate filtration (e.g., diesel engine soot).
A leading area of ceramics research involves the development ofporous ceramics for medical, dental, and biotechnologyapplications. For example, porous ceramics are under developmentfor use as bone substitutes because a porous structure may enhancetissue ingrowth. Therefore, tailoring of porosity to give specificcharacteristics, in terms of the amount of interconnecting cellsand of the cell and cell window size is required. A joint sessioninvolving participants from bioceramics and porous ceramicssymposia was therefore held in order to stimulate discussion andproductive interactions between the two scientific communities.

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Preface.
Introduction.
BIOCERAMICS.
Biodegradable Rare Earth Lithium Aluminoborate Glasses forBrachytherapy Use (J. E. White, D. E. Day, R. F. Brown, and G.J. Ehrhardt).
Analytical Model for Prediction of Residual Stress inZirconia-Porcelain Bi-Layer (M. Allahkarami, H. A. Bale, and J.C. Hanan).
Calcium-Aiuminate Based Dental Luting Cement with ImprovedSealing Properties--An Overview (Leif Hermansson, AdamFaris, Gunilla Gomez-Ortega, Emil Abrahamsson, and JesperLööf).
Bioglass/Chitosan Composite as a New Bone Substitute (P.Khoshakhlagh, F. Moztarzadeh, S. M. Rabiee, R. Moradi, P. Heidari,R. Ravariani, S. Amanpour).
Development and Characterization of High Strength Porous TissueScaffolds (James J. Liu, Juha-Pekka Nuutinen, Kitu Patel andAdam Wallen).
Grape Technology or Bone-Like Apatite Deposition in NarrowGrooves (A. Sugino, K. Uetsuki, K. Kuramoto, S. Hayakawa, Y.Shirosaki, A. Osaka, K. Tsuru, T. Nakano, and C. Ohtsuki).
Rapid Biomimetic Calcium Phosphate Coating on Metals,Bioceramics and Biopolymers at Room Temperature with 10xSBF (A.Cuneyt Tas).
Chemically Bonded Bioceramic Carrier Systems for Drug Delivery(Leif Hermansson).
POROUS CERAMICS.
Low-Og Technology for Thermal Treatment of High Quality PorousCeramics (Hartmut Weber).
Reticulated SiC Foam X-ray CT, Meshing, and Simulation(Alberto Ortona, Simone Pusteria, and Solene Valton).
The Effects of ß-Si3N4 Seeding anda-Si3N4 Powder Size on the Development ofPorous ß-Si3N4 Ceramics (Daniel A.Gould, Kevin P. Plucknett, Liliana B. Garrido, and Luis A.Genova).
Development of Novel Microporous ZrO2 Membranes forH2/CO2 Separation (Tim Van Gestel, Felix Hauler,Doris Sebold, Wilhelm A. Meulenberg, and Hans-PeterBuchkremer).
Thermal Shock Properties of Porous Alumina for Support Carrierof Hydrogen Membrane Materials (Sawao Honda, Yuuki Ogihara,Shinobu Hashimoto, and Yuji Iwamoto).
In Situ Processing of PorousMgTi2O5 Ceramics with Pseudobrookite-TypeStructure toward Third Generation Diesel Particulate FilterMaterials (Yoshikazu Suzuki).
Aluminum Titanate Composites for Diesel Particulate FilterApplications (Monika Backhaus-Ricoult, Chris Glose, PatrickTepesch, Bryan Wheaton, and Jim Zimmermann).
Weibull Analysis of 4-Point Flexure Strengths in HoneycombCeramic Structures (Cordierite and Silicon Carbide) (Randall J.Stafford and Srephen T. Gonczy).
Author Index.



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