Published January 1991 | Version v1
Report

Composite superconducting wires obtained by high-rate tinning in molten Bi-Pb-Sr-Ca-Cu-O system

Description

Long lengths of metal superconductor composites were prepared by passing a copper wire through the bismuth based molten oxide system at a constant speed. The key to successful composite preparation is the high pulling speed involved, which permits minimization of the severe interaction between the unbuffered metal surface and the oxide melt. Depending on the temperature of the melt and the pulling speed, a coating with different thickness and microstructure appeared. The nonannealed thick coatings contained a Bi2(Sr,Ca)2Cu1O6 phase as a major component. After relatively short time annealing at 800 C, both resistivity and initial magnetization versus temperature measurements show superconducting transitions beginning in the 110 to 115 K region. The effects of annealing and composition on obtained results are discussed. This method of manufacture led to the fabrication of wire with a copper core in a dense covering with uniform thickness of about h approximately equal to 5 to 50 microns. Composite wires with h approximately equal to 10 microns (h/d approximately equal to 0.1) sustained bending on a 15 mm radius frame without cracking during flexing

Additional details

Publishing Information

Imprint Title
AMSAHTS 1990: Advances in Materials Science and Applications of High Temperature Superconductors
Imprint Pagination
488 p.
Journal Page Range
p. 137-144.
Report number
N--92-21605

Conference

Title
advances in material science and applications of high temperature superconductors.
Acronym
AMSAHT'S 90
Dates
2-6 Apr 1990.
Place
Greenbelt, MD (United States).

Optional Information