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Transport properties and exponential n-values of Fe/MgB2 tapes with various MgB2 particle sizes
- Source :
- Physica C: Superconductivity and Its Applications, Vol. 401, No 1-4 (2004) pp. 305-309
- Publication Year :
- 2004
-
Abstract
- Fe/MgB2 tapes have been prepared starting with pre-reacted binary MgB2 powders. As shown by resistive and inductive measurements, the reduction of particle size to a few microns by ball milling has little influence on Bc2, while the superconducting properties of the individual MgB2 grains are essentially unchanged. Reducing the particle size causes an enhancement of Birr from 14 to 16 T, while Jc has considerably increased at high fields, its slope Jc(B) being reduced. At 4.2K, values of 5.3*10^4 and 1.2*10^3 A/cm^2 were measured at 3.5 and 10 T, respectively, suggesting a dominant role of the conditions at the grain interfaces. A systematic variation of these conditions at the interfaces is undertaken in order to determine the limit of transport properties for Fe/MgB2 tapes. The addition of 5% Mg to MgB2 powder was found to affect neither Jc nor Bc2. For the tapes with the highest Jc values, very high exponential n factors were measured: n = 148, 89 and 17 at 3.5, 5 and 10T, respectively and measurements of critical current versus applied strain have been performed. The mechanism leading to high transport critical current densities of filamentary Fe/MgB2 tapes based on MgB2 particles is discussed.<br />Presented at ICMC 2003, 25-28 May 2003
- Subjects :
- High-temperature superconductivity
Materials science
Analytical chemistry
FOS: Physical sciences
Energy Engineering and Power Technology
Binary compound
ddc:500.2
law.invention
Superconductivity (cond-mat.supr-con)
chemistry.chemical_compound
Transition metal
law
Third harmonic
Electrical and Electronic Engineering
Ball mill
Inorganic compound
Critical current densities
Superconductivity
chemistry.chemical_classification
Condensed Matter - Superconductivity
Condensed Matter Physics
Electronic, Optical and Magnetic Materials
MgB2 tapes
chemistry
Strain effect
Particle
Particle size
Upper critical and irreversibility fields
Subjects
Details
- Language :
- English
- ISSN :
- 09214534
- Database :
- OpenAIRE
- Journal :
- Physica C: Superconductivity and Its Applications, Vol. 401, No 1-4 (2004) pp. 305-309
- Accession number :
- edsair.doi.dedup.....201876307f580d363007aa1b0c854565