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Titlebook: Stabilization of Superconducting Magnetic Systems; V. A. Al’tov,V. B. Zenkevich,V. V. Sychev Book 1977 Springer Science+Business Media New

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书目名称Stabilization of Superconducting Magnetic Systems
编辑V. A. Al’tov,V. B. Zenkevich,V. V. Sychev
视频videohttp://file.papertrans.cn/876/875408/875408.mp4
丛书名称Exlog Series of Petroleum Geology and Engineering Handbooks
图书封面Titlebook: Stabilization of Superconducting Magnetic Systems;  V. A. Al’tov,V. B. Zenkevich,V. V. Sychev Book 1977 Springer Science+Business Media New
描述I am indeed pleased to prepare this brief foreword for this book, written by several of my friends and colleagues in the Soviet Union. The book was first published in the Russian language in Moscow in 1975. The phenomenon of superconductivity was discovered in 1911 and promised to be important to the production of electromagnets since superconductors would not dissipate Joule heat. Unfortunate­ ly the first materials which were discovered to be superconducting reverted to the normal resistive state in magnetic fields of a few tesla. Thus the development that was hoped for by hundredths of a the early pioneers was destined to be delayed for over half a century. In 1961 the intermetallic compound NbaSn was found to be superconducting in a field of about 200 teslas. This breakthrough marked a turning point, and 50 years after the discovery of superconductivity an intensive period of technological development began. There are many applications of superconductivity that are now being pursued, but perhaps one of the most important is super­ conducting magnetic systems. There was a general feeling in the early 1960s that the intermetallic compounds and alloys that were found to retain sup
出版日期Book 1977
关键词Superconductor; alloy; development; material; materials; production; stabilization; superconductivity
版次1
doihttps://doi.org/10.1007/978-1-4613-4115-4
isbn_softcover978-1-4613-4117-8
isbn_ebook978-1-4613-4115-4
copyrightSpringer Science+Business Media New York 1977
The information of publication is updating

书目名称Stabilization of Superconducting Magnetic Systems影响因子(影响力)




书目名称Stabilization of Superconducting Magnetic Systems影响因子(影响力)学科排名




书目名称Stabilization of Superconducting Magnetic Systems网络公开度




书目名称Stabilization of Superconducting Magnetic Systems网络公开度学科排名




书目名称Stabilization of Superconducting Magnetic Systems被引频次




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Propagation of the Normal Zone in a Superconducting Coilolved in the extension and contraction of the normal zone in a combined superconductor. Since, of its extension, the normal zone embraces a much greater length of the conductor than under steady-state conditions, in conducting these experiments we chose a combined conductor 200–300 m long, forming a solenoid.
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Equilibrium and Propagation of the Normal Zone in a Close-Packed Superconducting Coilelium to penetrate into the inner layers. An intermediate position between these two limiting cases is occupied by various kinds of loose windings containing channels between the turns for the passage of liquid helium.
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Stability of Superconductors of the Second Kind with Respect to Flux Jumpsnd electrical damage or the stoppage of the coolant can lead to failure or disorder in such a system. However, ensuring a high degree of reliability by using the method in question involves seriously reducing the mean efficiency of the current density in the windings, and for a number of systems this may be quite unacceptable.
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Multiple-Core Straight ConductorsSometimes conductors containing all three components are made [99]. The combined conductor may also be a cable twisted from individual wires consisting of superconducting strands in a common sheath of normal metal.
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The Future of Superconductivity in Modern Technologyrlingh-Onnes proposed using a superconducting solenoid as an electromagnet, producing strong magnetic fields by virtue of the high currents attained; the electrical power requirements would be very low, being chiefly determined by the power required to maintain the low temperatures [2]. However, thi
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