Multifilamentary Bi(2223)/Ag tapes often exhibit AC loss levels comparable to those measured in monofilamentary samples, which is partly due to the large coupling currents induced in the low resistive sheath material. Surrounding the individual filaments by electrically insulating barrier layers suppresses these currents and strongly reduces the coupling. We demonstrate this effect with various types of magnetic and self-field AC loss measurements on a series of Bi(2223)/BaZrO3/Ag tapes. We also discuss the influence of barrier thickness, twist pitch length and filament arrangement on the measured losses in these composite conductors
AbstractThis paper presents our recent progress for the development of low-loss Bi2223/Ag tapes with...
The AC magnetic losses at power frequencies (60 Hz) were investigated for mono- and multifilament Ag...
A mini review of our latest results on the a.c. losses in Ag-sheathed PbBi2223 tapes is presented wi...
A significant reduction of ac losses in twisted Bi(2223) multifilamentary tapes with Ag sheaths has ...
A new type of sheath material, consisting of a thin layer BaZrO3 around each filament, has been used...
Low AC losses in multifilamentary Bi(2223) tapes have been obtained introducing highly resistive, ve...
The large aspect ratio of standard Bi,Pb(2223) tapes results in high losses in perpendicular ac fiel...
Coupling losses were studied in composite tapes containing superconducting material in the form of t...
The a.c. self-field loss in Bi(2223)Ag sheathed tapes with different number of filaments has been me...
Alternating magnetic field losses for the new (Bi, Pb)2Sr2Ca2Cu3O10 multifilament tapes with a mixed...
In this study we examined ac losses in a multifilamentary Bi-2223/Ag superconducting tape carrying a...
In electrical power devices, ac losses from a superconductor is a primary factor which determines th...
We have investigated the effect of temperature, field amplitude, frequency and orientation of the fi...
Abstract — AC losses are numerically evaluated for various types of multifilamentary tapes without t...
Experimental measurements of AC losses were carried out on Ag sheathed PbBi2223 tapes with twisted a...
AbstractThis paper presents our recent progress for the development of low-loss Bi2223/Ag tapes with...
The AC magnetic losses at power frequencies (60 Hz) were investigated for mono- and multifilament Ag...
A mini review of our latest results on the a.c. losses in Ag-sheathed PbBi2223 tapes is presented wi...
A significant reduction of ac losses in twisted Bi(2223) multifilamentary tapes with Ag sheaths has ...
A new type of sheath material, consisting of a thin layer BaZrO3 around each filament, has been used...
Low AC losses in multifilamentary Bi(2223) tapes have been obtained introducing highly resistive, ve...
The large aspect ratio of standard Bi,Pb(2223) tapes results in high losses in perpendicular ac fiel...
Coupling losses were studied in composite tapes containing superconducting material in the form of t...
The a.c. self-field loss in Bi(2223)Ag sheathed tapes with different number of filaments has been me...
Alternating magnetic field losses for the new (Bi, Pb)2Sr2Ca2Cu3O10 multifilament tapes with a mixed...
In this study we examined ac losses in a multifilamentary Bi-2223/Ag superconducting tape carrying a...
In electrical power devices, ac losses from a superconductor is a primary factor which determines th...
We have investigated the effect of temperature, field amplitude, frequency and orientation of the fi...
Abstract — AC losses are numerically evaluated for various types of multifilamentary tapes without t...
Experimental measurements of AC losses were carried out on Ag sheathed PbBi2223 tapes with twisted a...
AbstractThis paper presents our recent progress for the development of low-loss Bi2223/Ag tapes with...
The AC magnetic losses at power frequencies (60 Hz) were investigated for mono- and multifilament Ag...
A mini review of our latest results on the a.c. losses in Ag-sheathed PbBi2223 tapes is presented wi...