AC Loss in Striped (Filamentary) YBCO Coated Conductors Leading to Designs for High Frequencies and Field-Sweep Amplitudes
arXiv:cond-mat/0410300 · doi:10.1088/0953-2048/18/1/020
Abstract
AC losses of YBCO coated conductors are investigated by calculation and experiment for the higher frequency regime. Previous research using YBCO film deposited onto single crystal substrates demonstrated the effectiveness of filamentary subdivision as a technique for AC loss reduction. As a result of these studies the idea of subdividing YBCO coated conductors (both YBCO, overlayer, and even underlayer) into such stripes suggested itself. The suggestion was implemented by burning grooves into samples of coated conductor using laser micromachining. Various machining parameters were investigated, and the striping and slicing characteristics are presented. Loss measurements were performed on unstriped as well as striped samples by the pick-up coil technique at frequencies of from 50-200 Hz at field sweep amplitudes of up to 150 mT. The effect of soft ferromagnetic Fe shielding was also investigated. The results of the experiments form a starting point for a more general study of reduced loss coated conductor design (including hysteretic, coupling, normal eddy current, and transport losses) projected into higher ranges of frequency and field sweep amplitude with transformer and all cryogenic motor/generator applications in mind.
38 pages, 4 tables, 9 figs
References in corpus (1)
Cited by in corpus (11)
- Computation of Losses in HTS Under the Action of Varying Magnetic Fields and Currents
- AC loss and coupling currents in YBCO coated conductors with varying number of filaments
- Magnetization Losses in Multiply Connected YBa2Cu3O6+x Coated Conductors
- Multifilament YBa2Cu3O6+x -coated conductors with minimized coupling losses
- AC Losses of Copper Stabilized Multifilament YBCO Coated Conductors
- Record fast-cycling accelerator magnet based on high temperature superconductors
- AC-Tolerant Multifilament Coated Conductors
- Impact of border defects on the magnetic flux penetration in superconducting films
- Electromagnetic coupling of twisted multi-filament superconducting tapes in a ramped magnetic field
- A Test of HTS Power Cable in a Sweeping Magnetic Field
- Dual fast-cycling superconducting synchrotron at Fermilab and a possible path to the future of high energy particle physics