University of Wollongong
Browse

High-pressure synthesized nanostructural magnesium diboride-based materials for superconductive electromotors, generators and pumps

journal contribution
posted on 2024-11-16, 10:05 authored by Tatiana Prikhna, W Gawalek, Nikolay Novikov, Y M Savchuk, M Zeisberger, Athanasios Mamalis, N V Sergienko, V E Moshchil, M Wendt, T Habisreuther, Shi DouShi Dou, S N Dub, V S Melnikov, C Schmidt, J Dellith, P A Nagorny
Additions of Zr can increase critical current density (jc) of high-pressure synthesized MgB2 (HPS-MgB2) in the same manner as additions of Ta or Ti, i.e. due to the absorption of impurity hydrogen (to form ZrH2). The formation in HPS-MgB2 of ZrB2phase at higher synthesis temperatures (about 950 °C) does not result in the jc increase. Some increase in jc of HPS-MgB2 at 10 K in the fields higher than 8 T was observed when nano-SiC was added. The additions of Zr, Ta or Ti can prevent the harmful MgH2 impurity phase from appearing and may prevent hydrogen from being introduced into the material structure and besides, their presence in HPS-MgB2 promotes the formation of a higher amount of MgB (most likely MgB2) inclusions in the MgBO material matrix that in turn leads to the increase of jc in magnetic fields. The high level of superconductive (SC) and mechanical characteristics attained for HPS-MgB2 and the possibility to manufacture large samples make its application in the superconductive electromotors, generators, pumps, etc., very promising.

Funding

Current limiting mechanisms in magnesium diboride superconductors

Australian Research Council

Find out more...

History

Citation

Prikhna, T, Gawalek, W, Novikov, N, Savchuk, YM, Zeisberger, M, Mamalis, A, Sergienko, N, Moshchil, V, Wendt, M, Habisreuther, T, Dou, SX, Dub, S, Melnikov, V, Schmidt, C, Dellith, J & Nagorny, P (2007), High-pressure synthesized nanostructural magnesium diboride-based materials for superconductive electromotors, generators and pumps, Journal of Materials Processing Technology, 181(1-3), pp. 71-75.

Journal title

Journal of Materials Processing Technology

Volume

181

Issue

1-3 SPEC. ISS.

Pagination

71-75

Language

English

RIS ID

22501

Usage metrics

    Categories

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC