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Electromagnetic behaviors of superconducting Nb3Sn wire under a time-dependent current injection
Author(s) -
Wurui Ta,
Yingxu Li,
Yuanwen Gao
Publication year - 2014
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4893770
Subject(s) - current (fluid) , protein filament , superconductivity , mechanics , materials science , magnetic field , condensed matter physics , superconducting wire , magnetic flux , electromagnetic field , physics , composite material , thermodynamics , quantum mechanics
We build a 3D model to analyze the electromagnetic behaviors of Nb3Sn filamentary strand exposed to a time-varying current injection, under the consideration of n value and strain effect. Electromagnetic behaviors, performance degradation and AC loss are investigated. Results show that the filament bundles prevent a further field penetration from the outer shell into the interior matrix. Different current/field profiles occur in the strand and outside. Compared to the critical current, the average transport current keeps a high value with little change over a broader strain range, and has a larger magnitude by several orders of magnitude. Increasing the strain results in a suppression of the current transport capacity, and part of the current is expelled into the metal matrix causing larger AC loss. The larger twist pitch implies a longer current circuit and more magnetic flux enclosed, thus increasing the loss. More details are presented in the paper

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