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Jc increase of MPMG-processed YBa2Cu3O7−x (Y-123) bulk due to fast neutron irradiation

✍ Scribed by Takayuki Terai; Yoshifumi Nagamoto; Toshiharu Kubo; Noriko Chikumoto; Kazuhiro Sawa


Book ID
104082935
Publisher
Elsevier Science
Year
2007
Tongue
English
Weight
181 KB
Volume
460-462
Category
Article
ISSN
0921-4534

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✦ Synopsis


The change in pinning properties of YBa 2 Cu 3 O 7Àx (Y-123) prepared by MPMG process due to fast neutron irradiation and thermal annealing treatment was investigated in order to confirm that fast neutron irradiation is effective for the J c increase in practical material as well as single crystal. In this study, MPMG-processed Y-123 specimens (1.5 mm • 1.0 mm • 0.5 mm) with 0.5 wt% of Pt were irradiated with fast neutrons from 2.9 • 10 15 cm À2 to 8.0 • 10 18 cm À2 below 313 K. Before and after the fast neutron irradiation, J c was evaluated from the magnetic hysteresis loop at 20 K, 40 K and 60 K using the extended Bean's model, and pinning potential was obtained from the magnetic relaxation curve at 20 K. In addition, T c was evaluated by AC magnetization measurement. The maximum values of J c were 1200 kA cm À2 at 20 K and 7 T, and 400 kA cm À2 at 40 K and 7 T. They exceeded the target value for its practical superconducting magnet uses e.g. nuclear fusion reactor, magnetic levitation, etc. Furthermore, T c was recovered sufficiently by the thermal annealing treatment. It turns out that the pinning centers introduced by neutron irradiation work effectively also in the practical material which has already included the strong pinning centers of dispersed Y-211 phase.


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