The HTS current leads for the ITER project will be the largest ever operated, with unprecedented currents, up to 68 kA and voltages, up to 14 kV. According to the ITER agreement they will be provided in-kind by China. After an extensive development program at the Hefei Institute of Plasma Physics (ASIPP), the ITER current leads were designed and qualified. The following discusses the main highlights of this development, with particular emphasis on the description of the design of the different types of ITER current leads and their final qualification in dedicated cold tests in nominal conditions
AbstractA new series connected 25 T hybrid magnet system is being developed by the Helmholtz Zentrum...
For the superconducting magnet system of the International Thermonuclear Experimental Reactor, ITER,...
AbstractThe ITER superconducting magnet system consists of 18 Toroidal Field (TF) coils, 1 Central S...
The HTS current leads for the ITER project will be the largest ever operated, with unprecedented cur...
Following the design, fabrication and test of a series of trial leads, designs of the three types of...
High temperature superconducting current leads (HTS-CL) are designed to supply the current to the la...
The reduction of static heat load in superconducting magnet systems is of great importance because o...
AbstractIn the past 4 years, Institute of Plasma Physics, Chinese Academy of Science (ASIPP) had dev...
The magnet system of ITER includes high temperature superconducting (HTS) current leads with a maxim...
Among the different applications of the emerging High Temperature Superconducting (HTS) technology, ...
The ITER current leads will transfer large currents of up to 68 kA into the biggest superconducting ...
In the frame of the European Fusion Technology Programme, the Forschungszentrum Karlsruhe and the Ce...
AbstractThe key part of the international FAIR project in Darmstadt, Germany, is the synchrotron SIS...
The LHC current lead project is now entering into the stage of procurement of the components for int...
The National Institute for Fusion Science (NIFS), in collaboration with universities and laboratorie...
AbstractA new series connected 25 T hybrid magnet system is being developed by the Helmholtz Zentrum...
For the superconducting magnet system of the International Thermonuclear Experimental Reactor, ITER,...
AbstractThe ITER superconducting magnet system consists of 18 Toroidal Field (TF) coils, 1 Central S...
The HTS current leads for the ITER project will be the largest ever operated, with unprecedented cur...
Following the design, fabrication and test of a series of trial leads, designs of the three types of...
High temperature superconducting current leads (HTS-CL) are designed to supply the current to the la...
The reduction of static heat load in superconducting magnet systems is of great importance because o...
AbstractIn the past 4 years, Institute of Plasma Physics, Chinese Academy of Science (ASIPP) had dev...
The magnet system of ITER includes high temperature superconducting (HTS) current leads with a maxim...
Among the different applications of the emerging High Temperature Superconducting (HTS) technology, ...
The ITER current leads will transfer large currents of up to 68 kA into the biggest superconducting ...
In the frame of the European Fusion Technology Programme, the Forschungszentrum Karlsruhe and the Ce...
AbstractThe key part of the international FAIR project in Darmstadt, Germany, is the synchrotron SIS...
The LHC current lead project is now entering into the stage of procurement of the components for int...
The National Institute for Fusion Science (NIFS), in collaboration with universities and laboratorie...
AbstractA new series connected 25 T hybrid magnet system is being developed by the Helmholtz Zentrum...
For the superconducting magnet system of the International Thermonuclear Experimental Reactor, ITER,...
AbstractThe ITER superconducting magnet system consists of 18 Toroidal Field (TF) coils, 1 Central S...