The Optimization of Jc, Birr, n value, Wires Diameter, and Research of the Dominant Pinning Mechanism for Applications of Undoped MgB2 in Superconducting Multi-section Coils
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Published:2020-09-08
Issue:12
Volume:33
Page:3717-3725
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ISSN:1557-1939
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Container-title:Journal of Superconductivity and Novel Magnetism
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language:en
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Short-container-title:J Supercond Nov Magn
Author:
Gajda D.,Zaleski A. J.,Morawski A.,Cetner T.,Małecka M.,Rindfleisch M.
Abstract
AbstractThis article discusses the influence of MgB2 wire diameter on critical parameters, dominant pinning mechanism, and n value. Studies were conducted on multifilament MgB2 wires of the 0.84 mm and 0.64 mm diameter. The wires were annealed under 1 GPa isostatic pressure, between 650 and 730 °C. Studies show that the best results (Jc, Birr, n value, and point pinning mechanism) for a 0.64-mm wire were obtained with annealing temperature of 650 °C. However, the best results for wires with a 0.84-mm diameter were obtained with annealing temperature of 730 °C. This research was conducted for exploring the use of MgB2 wires in multi-section superconducting coils, e.g., main coils generating magnetic fields and compensation coils—increasing the homogeneity of the magnetic field. Our research indicates that the main coil made with larger diameter wires should be heated at higher temperature (730 °C). In contrast, compensating coils with smaller diameter wires should be heated at a lower temperature (650 °C).
Funder
Institute of Low Temperature and Structure Research PAS
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference36 articles.
1. Uchiyama, D., Mizuno, K., Akao, T., Maeda, M., Kawakami, T., Kobayashi, H., Kubota, Y., Yasohama, K.: Fibrous structure and critical current density of MgB2 superconducting wire. Cryogenics. 47, 282–286 (2007) 2. Wanga, Q.Y., Jiao, G.F., Liu, G.Q., Xiong, X.M., Yan, S.C., Zhang, P.X., Sulpice, A., Mossang, E., Feng, Y., Yan, G.: Fabrication and properties of multifilamentary MgB2 wires by in-situ powder-in-tube process. Physica C. 470, 1415–1418 (2010) 3. Gajda, D., Morawski, A., Zaleski, A.J., Häßler, W., Nenkov, K., Rindfleisch, M.A., Żuchowska, E., Gajda, G., Czujko, T., Cetner, T., Hossain, M.S.A.: The critical parameters in in-situ MgB2 wires and tapes with ex-situ MgB2 barrier after hot isostatic pressure, cold drawing, cold rolling and doping. J. Appl. Phys. 117, 173908 (2015) 4. Mroczek, Z., Morawski, A., Czujko, T., Karaboğa, F., Akdoğan, M., Zaleski, A.J., Małecka, M., Cetner, T., Yetiş, H., Gajda, D., Belenli, I.: Influence of the lamella structure and high isostatic pressure on the critical current density in in situ MgB2 wires without a barrier. J. Alloys Compd. 776, 636–645 (2019) 5. Susner, M.A., Daniels, T.W., Sumption, M.D., Rindfleisch, M.A., Thong, C.J., Collins, E.W.: Drawing induced texture and the evolution of superconductive properties with heat treatment time in powder-in-tube in situ processed MgB2 strands. Supercond. Sci. Technol. 25, 065002 (2012)
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