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Joining dissimilar ceramics and ceramic composites for biomedical and structural applications
Ceramics are uniquely suited to many structural or biomedical applications. Many technologies are available for joining dissimilar metals, but techniques for joining dissimilar ceramics are limited. The authors and co-workers have successfully joined structural ceramics such as alumina, partially stabilized zirconia, and SiC platelet- and ZrO2 particulate-reinforced alumina, as well as the ''bioactive'' ceramic hydroxyapatite and various ''bioinert'' ceramics. As part of the joining process, internal channels can be fabricated by either machining or pressing channels into the surface of the ceramics before joining, then internal channels are formed when the specimens are joined. The ability to join ceramics and produce stable and precise channels within ceramic materials are important in allowing ceramics to be more fully utilized in a variety of structural and biomedical applications.
Joining dissimilar ceramics and ceramic composites for biomedical and structural applications
Ceramics are uniquely suited to many structural or biomedical applications. Many technologies are available for joining dissimilar metals, but techniques for joining dissimilar ceramics are limited. The authors and co-workers have successfully joined structural ceramics such as alumina, partially stabilized zirconia, and SiC platelet- and ZrO2 particulate-reinforced alumina, as well as the ''bioactive'' ceramic hydroxyapatite and various ''bioinert'' ceramics. As part of the joining process, internal channels can be fabricated by either machining or pressing channels into the surface of the ceramics before joining, then internal channels are formed when the specimens are joined. The ability to join ceramics and produce stable and precise channels within ceramic materials are important in allowing ceramics to be more fully utilized in a variety of structural and biomedical applications.
Joining dissimilar ceramics and ceramic composites for biomedical and structural applications
Verbindung von nichtgleichartigen keramischen Stoffen und Keramikverbundstoffen für biomedizinische und bautechnische Zwecke
Case, E.D. (author) / Lee, J.G. (author)
2001
7 Seiten, 2 Tabellen, 35 Quellen
Conference paper
English
Joining Dissimilar Ceramics and Ceramic Composites for Biomedical and Structural Applications
British Library Conference Proceedings | 2001
|Joining Dissimilar Ceramics and Ceramic Composites for Biomedical and Structural Applications
British Library Conference Proceedings | 2001
|