On the Nature of Superconducting Precursors in Bi-Pb-Sr-Ca-Cu-O Compositions Fabricated by Hot Shock Wave Consolidation Technology

In this paper, the possibility of critical temperature increasing of superconducting precursor Tс and the current bearing capacity in samples of Bi-Pb-Sr-Ca-Cu-O superconducting system fabricated using hot shock wave consolidation (HSWC) technology and investigated by the vibrating torsional magneto...

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Main Authors: J. Chigvinadze, S. Ashinov, G. Mamniashvili, G. Donadze, A. Peikrishvili, B. Godibadze
Format: Article
Language:English
Published: D. G. Pylarinos 2018-06-01
Series:Engineering, Technology & Applied Science Research
Subjects:
Online Access:http://etasr.com/index.php/ETASR/article/view/2077
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spelling doaj-e8ba452bbaff43b5b3dda7a514746f382020-12-02T16:40:46ZengD. G. PylarinosEngineering, Technology & Applied Science Research2241-44871792-80362018-06-0183551On the Nature of Superconducting Precursors in Bi-Pb-Sr-Ca-Cu-O Compositions Fabricated by Hot Shock Wave Consolidation TechnologyJ. Chigvinadze0S. Ashinov1G. Mamniashvili2G. Donadze3A. Peikrishvili4B. Godibadze5Andronikashvili Institute of Physics, Condensed Matter Physics Department, Ivane Javakhishvili Tbilisi State University, Tbilisi, GeorgiaAndronikashvili Institute of Physics, Condensed Matter Physics Department, Ivane Javakhishvili Tbilisi State University, Tbilisi, GeorgiaCondensed Matter Physics Department, Andronikashvili Institute of Physics, Ivane Javakhishvili Tbilisi State University, GeorgiaAndronikashvili Institute of Physics, Condensed Matter Physics Department, Ivane Javakhishvili Tbilisi State University, Tbilisi, GeorgiaMaterials Science Department, F. Tavadze Institute of Metallurgy and Materials Science, GeorgiaBlasting Technologies Department, G. Tsulukidze Mining Institute, GeorgiaIn this paper, the possibility of critical temperature increasing of superconducting precursor Tс and the current bearing capacity in samples of Bi-Pb-Sr-Ca-Cu-O superconducting system fabricated using hot shock wave consolidation (HSWC) technology and investigated by the vibrating torsional magnetometry method, was studied. The advantage of HSWC technology over the traditional technologies of superconducting composites synthesis is that the high-density materials are made from the Bi-Pb-Sr-Ca-Cu-O superconducting system. After the action of explosive wave the superconductivity is retained. After the explosion a pronounced texture is formed indicating the creation of efficient pinning centers and thus, the increase of current-carrying ability of the obtained material. The critical temperature of potential superconducting precursor Tc of transition to superconducting state increased from Tc=107K for starting sample to Tc=138K, using the HSWC technology for synthesis of samples in range of pressures from P=5GPa up to P=12GPa. http://etasr.com/index.php/ETASR/article/view/2077HTSCshock-wave consolidationvibrating torsional magnetometryctitical temperature of superconducting transitionhigh-temperature superconducting phasespinning
collection DOAJ
language English
format Article
sources DOAJ
author J. Chigvinadze
S. Ashinov
G. Mamniashvili
G. Donadze
A. Peikrishvili
B. Godibadze
spellingShingle J. Chigvinadze
S. Ashinov
G. Mamniashvili
G. Donadze
A. Peikrishvili
B. Godibadze
On the Nature of Superconducting Precursors in Bi-Pb-Sr-Ca-Cu-O Compositions Fabricated by Hot Shock Wave Consolidation Technology
Engineering, Technology & Applied Science Research
HTSC
shock-wave consolidation
vibrating torsional magnetometry
ctitical temperature of superconducting transition
high-temperature superconducting phases
pinning
author_facet J. Chigvinadze
S. Ashinov
G. Mamniashvili
G. Donadze
A. Peikrishvili
B. Godibadze
author_sort J. Chigvinadze
title On the Nature of Superconducting Precursors in Bi-Pb-Sr-Ca-Cu-O Compositions Fabricated by Hot Shock Wave Consolidation Technology
title_short On the Nature of Superconducting Precursors in Bi-Pb-Sr-Ca-Cu-O Compositions Fabricated by Hot Shock Wave Consolidation Technology
title_full On the Nature of Superconducting Precursors in Bi-Pb-Sr-Ca-Cu-O Compositions Fabricated by Hot Shock Wave Consolidation Technology
title_fullStr On the Nature of Superconducting Precursors in Bi-Pb-Sr-Ca-Cu-O Compositions Fabricated by Hot Shock Wave Consolidation Technology
title_full_unstemmed On the Nature of Superconducting Precursors in Bi-Pb-Sr-Ca-Cu-O Compositions Fabricated by Hot Shock Wave Consolidation Technology
title_sort on the nature of superconducting precursors in bi-pb-sr-ca-cu-o compositions fabricated by hot shock wave consolidation technology
publisher D. G. Pylarinos
series Engineering, Technology & Applied Science Research
issn 2241-4487
1792-8036
publishDate 2018-06-01
description In this paper, the possibility of critical temperature increasing of superconducting precursor Tс and the current bearing capacity in samples of Bi-Pb-Sr-Ca-Cu-O superconducting system fabricated using hot shock wave consolidation (HSWC) technology and investigated by the vibrating torsional magnetometry method, was studied. The advantage of HSWC technology over the traditional technologies of superconducting composites synthesis is that the high-density materials are made from the Bi-Pb-Sr-Ca-Cu-O superconducting system. After the action of explosive wave the superconductivity is retained. After the explosion a pronounced texture is formed indicating the creation of efficient pinning centers and thus, the increase of current-carrying ability of the obtained material. The critical temperature of potential superconducting precursor Tc of transition to superconducting state increased from Tc=107K for starting sample to Tc=138K, using the HSWC technology for synthesis of samples in range of pressures from P=5GPa up to P=12GPa.
topic HTSC
shock-wave consolidation
vibrating torsional magnetometry
ctitical temperature of superconducting transition
high-temperature superconducting phases
pinning
url http://etasr.com/index.php/ETASR/article/view/2077
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