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http://dx.doi.org/10.9714/psac.2010.12.3.016

Estimation of critical current density of a YBCO coated conductor from a measurement of magnetization loss  

Lee, S. (한국산업기술대학교 에너지대학원)
Park, S.H. (한국산업기술대학교 에너지대학원)
Kim, W.S. (한전 전력연구원)
Lee, J.K. (우석대학교 소방안전학과)
Choi, K. (한국산업기술대학교 에너지대학원)
Publication Information
Progress in Superconductivity and Cryogenics / v.12, no.3, 2010 , pp. 16-20 More about this Journal
Abstract
For large scale power applications of HTS conductor, it is getting more important to have a stacked HTS coated conductor with low loss and large current capacity. But it was not easy to measure some electric properties. Stabilizer free YBCO CC for striated/ stacked conductors is easily burned out during the measurement of the critical current density because it has no stabilizer and it is difficult to set-up the current lead and voltage taps because it has many pieces of YBCO CC in a conductor. Instead of direct measuring the critical current of a stacked HTS coated conductor, indirect estimation from measuring a magnetization loss of HTS coated conductor could be useful for practical estimation of the critical current. The magnetization loss of a superconductor is supposed to be affected by a full penetrating magnetic field, and it tends to show an inflection point at the full penetrating magnetic field when we generate the graph of magnetization loss vs. external magnetic field. The full penetrating magnetic field depends on the shape of the conductor and its critical current density, so we can estimate the effective critical current density from measuring the magnetization loss. In this paper, to prove the effectiveness of this indirect estimation of the critical current, we prepared several different kinds of YBCO CC(coated conductor) including a stacked conductor short samples and measured the magnetization losses and the critical currents of each sample by using linked pick up coils and direct voltage measurement with transport current respectively.
Keywords
magnetization loss; indirect estimation; critical current density;
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  • Reference
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