Mamalis | Processing of High-Temperature Superconductors at High Strain | Buch | 978-1-56676-878-8 | sack.de

Buch, Englisch, 268 Seiten, Format (B × H): 164 mm x 234 mm, Gewicht: 499 g

Mamalis

Processing of High-Temperature Superconductors at High Strain

Buch, Englisch, 268 Seiten, Format (B × H): 164 mm x 234 mm, Gewicht: 499 g

ISBN: 978-1-56676-878-8
Verlag: CRC Press


The discovery of high-temperature superconductivity [1986] by Bendnorz and Müller in the La-BA-Cu-O system resulted in very extensive research work about the discovery and synthesis of other high-temperature superconductors, such as Y-BA-Cu-O and Bi-Sr-Ca-Cu-O. These new superconducting materials, possessing superconductivity above liquid nitrogen boiling point, are used in many engineering applications, from electronic sensors to rotating electrical generators and from nanometer-scale thin films to kilometer-long wires and coils. Therefore, design and net-shape manufacturing of superconducting components, starting from the initial synthesized powders, is now of utmost industrial importance.

This book is primarily focused on the bulk-fabrication techniques of high-temperature ceramic superconducting components, especially on the combination of dynamic powder-consolidation and subsequent deformation processing. The properties of these ceramics, which are difficult-to-form materials by applying conventional techniques, are combined for the net-shape manufacturing of such components for the construction of HTS devices. However, very important topics such as superconducting structures, chemical synthesis, film fabrication and characterization techniques are also reviewed to provide a complete, comprehensive view of superconductors engineering.
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Foreword, Bernard Raveau, CRISMAT Laboratory, France. Preface. Introduction. Fundamentals of Superconductors. Synthesis of Ceramic Superconductors. Impact Loading of Solid Porous Media. Fabrication of Bulk HTS. Fabrication of HTS Films. Characterization of HTS Powders and Components. Industrial Applications. Future Perspectives of High-Tc Superconductivity.



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