Last edited by Baramar
Tuesday, May 12, 2020 | History

4 edition of Melt processed high-temperature superconductors found in the catalog.

Melt processed high-temperature superconductors

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Published by World Scientific Pub. Co. in Singapore, River Edge, NJ .
Written in English

    Subjects:
  • High temperature superconductors.,
  • High temperature superconductivity.

  • Edition Notes

    Includes bibliographical references and index.

    Statementeditor, Masato Murakami.
    ContributionsMurakami, Masato.
    Classifications
    LC ClassificationsQC611.98.H54 M44 1992
    The Physical Object
    Paginationxv, 361 p. :
    Number of Pages361
    ID Numbers
    Open LibraryOL556426M
    ISBN 109810212445
    LC Control Number96139028
    OCLC/WorldCa28154654

    Texte du rabat Included in this volume are papers on biaxial and triaxial crystallographic texturing, epitaxial growth on biaxially textured substrates, melt-processing of YBCO, and basic information about HTS materials concerning phase diagrams, measurement of physical properties, characterization, and effects of various defects including grain boundaries on supercurrent. Large single grain (Gd) bulk superconductors were fabricated by a top-seeded melt growth (TSMG) process using an seed. The seeded Gd powder compacts with a diameter of 50 mm were subjected.

      Then, in the s, the field changed again with the discovery of unconventional, or high-temperature, superconductivity. “High temperature” is still very cold: the highest temperature for superconductivity achieved was °C for hydrogen sulphide at extremely high pressures. For normal pressures, °C is near the upper limit. This comprehensive volume is a good summary of the latest developments in high-temperature superconductor (HTS) research and an excellent resource for researchers and managers working in this field. The book is divided into three chapters: coated conductors; BSCCO-based conductors, MgB2, and other HTS materials; and control of microstructure.

    Energy-efficient power cables using high-temperature superconductor (HTS) wire from American Superconductor are beginning to roll out around the world. In , the first and longest HTS cable was installed on Long Island, New York, and is currently transmitting up to megawatts of electricity—enough to power , homes. Search within book. Front Matter. Pages i-xxiv. PDF. Superconductors. Flux Pinning Associated with Y 2 BaCuO 5 Precipitates in Melt-Processed YBa 2 Cu 3 O x. High-Temperature Superconductors: Films and Devices. Superconductive Electronics with High Transition Temperature Films.


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Melt processed high-temperature superconductors Download PDF EPUB FB2

Recent developments have shown that melt processing is suitable for producing high Jc oxide superconductors. Using magnetic forces between such high Jc oxide superconductors and magnets, a person could be book has grown largely out of research works on melt processing of high-temperature superconductors conducted at ISTEC Superconductivity Research Laboratory.

This book has grown largely out of research works on melt processing of high-temperature superconductors conducted at ISTEC Superconductivity Research Laboratory.

The chapters build on melt processing, microstructural characterization, fundamentals of flux pinning, critical current, and applications of bulk monolithic superconductors.

Melt Processed High Temperature Superconductors. Edited by MURAKAMI M. Published by World Scientific Publishing Co. Pte. LtdCited by: Application of RE‐Bulk Superconductors as a Permanent Magnet in Magnetron Sputtering Film Deposition Apparatus (Pages: ) Uichiro Mizutani Yousuke Yanagi.

Melt Processed High Temperature Superconductors. Edited by MURAKAMI M. Published by World Scientific Publishing Co. Pte. LtdAuthor: Murakami, Masato. Sintering- common process to prepare bulk superconductors. Effect of sintering conditions on J c.

Weak links in sintered samples. Grain alignment. Applications. Melt processed superconductors. Melt Processed High Temperature Superconductors. Edited by MURAKAMI M. Published by World Scientific Publishing Co. Pte. Ltd., ISBN #, pp.

He was also the Chair of the UT-Battelle-ORNL Corporate Fellow Council. Goyal is one of the leading scientists worldwide in the field of advanced electronic and energy materials including. @article{osti_, title = {Studies of high temperature superconductors}, author = {Narlikar, A}, abstractNote = {This volume presents current studies in high-temperature superconductivity research.

Topics covered include: flux pinning of melt processed YBCO superconductors and their applications, neutron irradiation effects in high Tc single crystals, redox mechanisms in high Tc. of the high temperature superconductivity. OUTLOOK FOR THE FUTURE OF HIGH-TEMPERATURE SUPERCONDUCTIVITY [1] Material developments There have in the past ten years been Fig.

3 OCMG-processed Gd-Ba-Cu-O Bulk (Single-domain 48 mm ø sample) Mixing ratio GdGd= Trapped magnetic field T at 77K. The result of research on melt processing of high-temperature superconductors, the chapters in this book build on melt processing, microstructural characterization, fundamentals of flux pinning, critical current and applications of bulk monolithic superconductors.

High-Temperature Superconductors. The cuprate high-temperature superconductors have a T c in the range of 30– K and are layered quasi-two-dimensional copper-oxide systems, whose parent compounds are antiferromagnetic Mott insulators.

Upon doping by mobile carriers (holes or electrons depending on the compounds) they become metallic, and at low temperatures superconducting. Using magnetic forces between such high J c oxide superconductors and magnets, a person could be book has grown largely out of research works on melt processing of high-temperature superconductors conducted at ISTEC Superconductivity Research : Masato Murakami.

This book has grown largely out of research works on melt processing of high-temperature superconductors conducted at ISTEC Superconductivity Research Laboratory.

The chapters build on melt processing, microstructural characterization, fundamentals of flux pinning, critical current, and applications of bulk monolithic superconductors.

Main headings: Flux Depinning and Current vs. Voltage Characteristics Near the Glass-Liquid Transition; Equilibrium Properties of the Mixed Phase of High-Tc Superconductors in the Presence of Pinning; Microstructure and Flux Pinning in Melt Processed (Nd,Eu,Gd)-Ba-Cu-O Superconductor; Influence of Irradiation-Induced Defects and Chemical Substitutions on the Flux.

Flux creep measurements are very informative in understanding the pinning characteristics of type II superconductors. In many creep experiments of high temperature superconductors, logarithmic time decay of critical current or magnetization is observed. This seems to fit a very simple flux creep model based on thermally assisted flux : M.

Murakami, N. Nakamura, N. Koshizuka, S. Tanaka, P.J. Kung, M.P. Maley, J.O. Willis. This book has grown largely out of research works on melt processing of high-temperature superconductors conducted at ISTEC Superconductivity Research Laboratory.

The chapters build on melt processing, microstructural characterization, fundamentals of flux pinning, criti. Large-grain high-temperature superconductors of the form RE-Ba-Cu-O (where RE is a rare-earth element) can trap magnetic fields of several tesla at Cited by: Here is a concise, tutorial overview of the exciting new field of high-temperature superconductivity.

This authoritative textbook focuses on topics, experimental results, and theoretical issues that are likely to have lasting value and are readily understandable to upper Cited by: With the advent of High Temperature Superconductivity and the increasing reliability of fabrication techniques, superconductor technology has moved firmly into the mainstream of academic and industrial research.

There is currently no single source of practical information giving guidance on which technique to use for any particular category of superconductor.5/5(1).

It has long been known that, in addition to fabricating solenoids from wire or tape, type-II superconducting materials can be used to trap magnetic fields when fabricated in the form of well-connected bulks [1, 2].Top-seeded melt growth (TSMG) has emerged over the past 25 years as a practical route for fabricating large, single grains of the rare earth (RE) cuprate family of high Cited by:   Books.

Publishing Support. Login. Sakai N and Murakami M Melt-processed Gd–Ba–Cu–O superconductor with trapped field of 3 T at 77 K Supercond. Sci. Technol. 18 S IOPscience Google Scholar. Tomita M and Murakami M High-temperature superconductor bulk magnets that can trap magnetic fields of over 17 tesla at 29 K Nature Cited by: However, the development of melt processed bulk superconductors which have a very strong pinning force, has opened up the possibility of many different applications in the bulk monolithic form Author: Chan-Joong Kim.