Authors:
Goldacker, W
Krelaus, J
Nast, R
Eckelmann, H
Citation: W. Goldacker et al., Properties of internally stranded RBB (ring bundle barrier) low AC loss BSCCO tapes made by PITAR route, IEEE APPL S, 11(1), 2001, pp. 2947-2950
Authors:
Eckelmann, H
Nast, R
Schmidt, C
Goldacker, W
Citation: H. Eckelmann et al., Coupling current losses and time constants in multifilamentary BSCCO(2223)tapes with resistive barriers in external magnetic fields., IEEE APPL S, 11(1), 2001, pp. 2955-2958
Citation: W. Goldacker et al., Macro-thermogravimetrical investigations of the O-2 exchange during phase formation in BSCCO(2223) tapes with Ag, AgMg, AgAu sheaths or SrCO3 or SrZrO3 barriers, IEEE APPL S, 11(1), 2001, pp. 3407-3410
Authors:
Putti, M
Bellingeri, E
Ferdeghini, C
Goldacker, W
Vase, P
Citation: M. Putti et al., Thermal conductivity of silver alloy stabilizers for high temperature superconductor current leads, SUPERCOND S, 14(2), 2001, pp. L1-L3
Authors:
Eckelmann, H
Krelaus, J
Nast, R
Goldacker, W
Citation: H. Eckelmann et al., AC losses in perpendicular external magnetic fields in ring bundle barriermultifilamentary BSCCO(2223) tapes with a central resistive barrier, PHYSICA C, 355(3-4), 2001, pp. 278-292
Authors:
Lockman, Z
Qi, XD
Berenov, A
Nast, R
Goldacker, W
MacManus-Driscoll, J
Citation: Z. Lockman et al., Study of thermal oxidation of NiO buffers on Ni-based tapes for superconductor substrates, PHYSICA C, 351(1), 2001, pp. 34-37
Authors:
Krelaus, J
Nast, R
Eckelmann, H
Goldacker, W
Citation: J. Krelaus et al., Novel, internally stranded Bi cuprate conductor concept for ac applications: ring-bundled barrier (RBB) tapes produced by the powder-in-tube assembleand react (PITAR) method, SUPERCOND S, 13(5), 2000, pp. 567-575
Authors:
Putti, M
Ferdeghini, C
Grasso, G
Goldacker, W
Vase, P
Citation: M. Putti et al., Thermal conductivity in silver alloys used as sheath for BSCCO tapes: The importance of the phonon contribution, INT J MOD B, 14(25-27), 2000, pp. 2908-2913
Authors:
Goldacker, W
Quilitz, M
Obst, B
Eckelmann, H
Citation: W. Goldacker et al., Novel resistive interfilamentary carbonate barriers in multifilamentary low AC loss Bi(2223)-tapes, IEEE APPL S, 9(2), 1999, pp. 2155-2158
Authors:
Heller, R
Friesinger, G
Goldacker, W
Quilitz, M
Tasca, M
Fuchs, AM
Pfister, W
Vogel, M
Citation: R. Heller et al., Status of the development program of a 60 kA HTSC current lead for the ITER toroidal field coils, IEEE APPL S, 9(2), 1999, pp. 507-510
Authors:
Eckelmann, H
Quilitz, M
Schmidt, C
Goldacker, W
Oomen, M
Leghissa, T
Citation: H. Eckelmann et al., AC losses in multifilamentary low AC loss Bi(2223) tapes with novel interfilamentary resistive carbonate barriers, IEEE APPL S, 9(2), 1999, pp. 762-765
Citation: Mo. Rikel et W. Goldacker, Kinetics and mechanism of low-temperature internal oxidation of Ag-2 and 4at.% Mg alloys, J MATER RES, 14(6), 1999, pp. 2436-2445
Authors:
Eckelmann, H
Quilitz, M
Oomen, M
Leghissa, M
Goldacker, W
Citation: H. Eckelmann et al., AC losses in multifilamentary Bi(2223) tapes with an interfilamentary resistive carbonate barrier, PHYSICA C, 310(1-4), 1998, pp. 122-126
Authors:
Volkozub, AV
Caplin, AD
Huang, YB
Flukiger, R
Grasso, G
Eckelmann, H
Quilitz, M
Goldacker, W
Citation: Av. Volkozub et al., Current distributions in multifilamentary conductors: the influence of intergrowths, PHYSICA C, 310(1-4), 1998, pp. 159-162
Authors:
Goldacker, W
Quilitz, M
Obst, B
Eckelmann, H
Citation: W. Goldacker et al., Reduction of AC losses applying novel resistive interfilamentary carbonatebarriers in multifilamentary Bi(2223) tapes, PHYSICA C, 310(1-4), 1998, pp. 182-186