Joining remains an enabling technology in several key areas related to the use of ceramics. Development of ceramic materials for electronic, biomedical, power generation, and many other fields continues at a rapid pace. Joining of ceramics is a critical issue in the integration of ceramic components in engineering design. This book includes reviews on the state-of-the-art in ceramic joining, new joining materials and methods, and modeling joint behavior and properties.
Joining remains an enabling technology in several key areas related to the use of ceramics. Development of ceramic materials for electronic, biomedical, power generation, and many other fields continues at a rapid pace. Joining of ceramics is a critical issue in the integration of ceramic components in engineering design. This book includes reviews on the state-of-the-art in ceramic joining, new joining materials and methods, and modeling joint behavior and properties.
Charles A. Lewinsohn is the editor of Advances in Joining of Ceramics, published by Wiley. Mrityunjay Singh is the editor of Advances in Joining of Ceramics, published by Wiley. Ronald Loehman is the editor of Advances in Joining of Ceramics, published by Wiley.
Inhaltsangabe
Designing Joints in Ceramics.
Selection and Function of Interlayer Materials inCeramic/Ceramic Joining (E.D. Case).
Numerical Modeling of Solid State Bonding Based on FundamentalBonding Mechanisms: For Bonding between Dissimilar Materials (Y.Takahashi)
Designing Joints with Graded Layers (J. Stamille, I.E. Reimanis,and J. Chapa-Cabrera).
Particulate Loading of High Temperature Brazes for JoiningEngineering Ceramics (K.M. Knowles, D.R. Ormston, D.B. Conquest,L.T. Ecclestone, and J.A. Fernie).
Development of a Copper Oxide-Silver Braze for Ceramic Joining(K.S. Weil and J.Y. Kim).
Biomedical Applications.
A Review of Recent Investigations on Zirconia Joining forBiomedical Applications (S. Agathopoulos, S. Pina, and R.N.Correia).
Joining Zirconia and Alumina Bioceramics (H.W. Shin, E.D. Case,B.D. Brooks, P. Kwon, and C.K. Kok).
Graded Coatings for Metallic Implant Alloy (E. Saiz, A.P. Tomsia,S. Fujino, and J.M. Gomez-Vaga).
High Temperature Applications.
Thermal Cycling of Advanced Compressive Seal for Solid Oxide FuelCells (Y.-S. Chou and J.W. Stevenson).
Brazing a Mixed Ionic/Electronic Conductor to an OxidationResistant Metal (K.S. Weil and J.S. Hardy).
Brazeless Approaches to Joining Silicon Carbide-based Ceramics forHigh Temperature Applications (C.A. Lewinsohn, C.H. Henager Jr., and M.Singh).
Processing Issues in Fabricating Ceramic Micro-Heat Exchangersby Joining Components (P. Kwon, C.K. Kok, D. Fickes, C.W. Somerton,H.W. Shin, and E.D. Case).
Particulate Loading of High Temperature Brazes for JoiningEngineering Ceramics (K.M. Knowles, D.R. Ormston, D.B. Conquest,L.T. Ecclestone, and J.A. Fernie).
Development of a Copper Oxide-Silver Braze for Ceramic Joining(K.S. Weil and J.Y. Kim).
Biomedical Applications.
A Review of Recent Investigations on Zirconia Joining forBiomedical Applications (S. Agathopoulos, S. Pina, and R.N.Correia).
Joining Zirconia and Alumina Bioceramics (H.W. Shin, E.D. Case,B.D. Brooks, P. Kwon, and C.K. Kok).
Graded Coatings for Metallic Implant Alloy (E. Saiz, A.P. Tomsia,S. Fujino, and J.M. Gomez-Vaga).
High Temperature Applications.
Thermal Cycling of Advanced Compressive Seal for Solid Oxide FuelCells (Y.-S. Chou and J.W. Stevenson).
Brazing a Mixed Ionic/Electronic Conductor to an OxidationResistant Metal (K.S. Weil and J.S. Hardy).
Brazeless Approaches to Joining Silicon Carbide-based Ceramics forHigh Temperature Applications (C.A. Lewinsohn, C.H. Henager Jr., and M.Singh).
Processing Issues in Fabricating Ceramic Micro-Heat Exchangersby Joining Components (P. Kwon, C.K. Kok, D. Fickes, C.W. Somerton,H.W. Shin, and E.D. Case).
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