Homogeneous phase distribution in Ag-doped (Pb,Bi)2223 alloy sheathed tapes
Homogeneous phase distribution in Ag-doped (Pb,Bi)2223 alloy sheathed tapes
The local 2223 phase evolution was studied by XRD analysis in alloy and Ag sheathed tapes. It has been previously shown that Ag-sheathed tapes generally have a maximum amount of 2223 phase at the core-sheath interface and a minimum at the centre of the core[1]. In this paper, we show that the combination of an alloy sheath and the addition of Ag 15%wt in the EDS (Evaporative Decomposition of Solution) precursor powder results in a homogeneous distribution of the 2223 phase in the core.
2557-2558
Fisher, S.J.
da3be166-e77b-4c73-8523-85b5614b8744
Beduz, C.
15245681-77b5-4b29-a8fc-23296f13bc57
Yang, Y.
f2e3049f-3750-4497-ba13-7a9072f4b562
Penny, M.
ae96526a-129d-410a-b14f-fe1ffd628f12
1997
Fisher, S.J.
da3be166-e77b-4c73-8523-85b5614b8744
Beduz, C.
15245681-77b5-4b29-a8fc-23296f13bc57
Yang, Y.
f2e3049f-3750-4497-ba13-7a9072f4b562
Penny, M.
ae96526a-129d-410a-b14f-fe1ffd628f12
Fisher, S.J., Beduz, C., Yang, Y. and Penny, M.
(1997)
Homogeneous phase distribution in Ag-doped (Pb,Bi)2223 alloy sheathed tapes.
Physica C: Superconductivity and its Applications, 282-287 (4), .
(doi:10.1016/S0921-4534(97)01374-9).
Abstract
The local 2223 phase evolution was studied by XRD analysis in alloy and Ag sheathed tapes. It has been previously shown that Ag-sheathed tapes generally have a maximum amount of 2223 phase at the core-sheath interface and a minimum at the centre of the core[1]. In this paper, we show that the combination of an alloy sheath and the addition of Ag 15%wt in the EDS (Evaporative Decomposition of Solution) precursor powder results in a homogeneous distribution of the 2223 phase in the core.
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Published date: 1997
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Local EPrints ID: 21283
URI: http://eprints.soton.ac.uk/id/eprint/21283
ISSN: 0921-4534
PURE UUID: c1a9c139-8f86-4f69-ae92-ada0412947b2
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Date deposited: 17 Nov 2006
Last modified: 11 Nov 2024 19:54
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Author:
S.J. Fisher
Author:
C. Beduz
Author:
Y. Yang
Author:
M. Penny
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