Calculations have indicated that the simple macro composite conductor that comprises copper with a stainless steel sheath may be the best to use in high field pulsed magnets > 50 T. The recently commissioned wire fabrication facility of the Clarendon Laboratory can finish this type of conductors to the required size and cold work, after industrial preprocessing. The conductors have strengths in excess of 1.2 GPa. Ln this paper we describe the facility and the mechanical and electrical characterisation of the wires. We also report on bur measurements of the temperature distribution in a macro composite wire during and after a typical pulse
The measurements of mechanical properties of electrotechnical materials applied in pulsed magnet des...
International audienceNew Ag-Cu composite wires are developed for the winding of non-destructive pul...
The technology of high temperature superconductivity has gone beyond mere scientific curiosity and i...
We describe the renewed Oxford facility for producing Cu/ss high strength conductors for high field ...
We review the work at the Clarendon Laboratory, Oxford, directed at the generation of very high puls...
The purpose of this analysis is to have a powerful but simple to use computing tool that can help ch...
The K.U.Leuven Pulsed Field Facility is well equipped to accommodate a large variety of experiments ...
The use of copper - high nitrogen stainless steel macrocomposites for applications such as pulsed hi...
including a innovative design of a 100ms pulsed magnet solenoid. Critical current measurements on st...
The Multi-Composite (MC) wire is a new concept in the pursuit of obtaining the ideal conductor for h...
Designing a composite material for use as a conductor in high-field pulse magnets is a challenging m...
Primary goal is to develop high strength-high conductivity composite wires with enhanced cross secti...
This thesis applies the method of finite element software to calculate pulsed high field magnets. Th...
The development of suitable wires for magnet windings requires both the attainment of suitable combi...
In the past year, the effort in materials science related to the 60T and 100T magnets at Los Alamos ...
The measurements of mechanical properties of electrotechnical materials applied in pulsed magnet des...
International audienceNew Ag-Cu composite wires are developed for the winding of non-destructive pul...
The technology of high temperature superconductivity has gone beyond mere scientific curiosity and i...
We describe the renewed Oxford facility for producing Cu/ss high strength conductors for high field ...
We review the work at the Clarendon Laboratory, Oxford, directed at the generation of very high puls...
The purpose of this analysis is to have a powerful but simple to use computing tool that can help ch...
The K.U.Leuven Pulsed Field Facility is well equipped to accommodate a large variety of experiments ...
The use of copper - high nitrogen stainless steel macrocomposites for applications such as pulsed hi...
including a innovative design of a 100ms pulsed magnet solenoid. Critical current measurements on st...
The Multi-Composite (MC) wire is a new concept in the pursuit of obtaining the ideal conductor for h...
Designing a composite material for use as a conductor in high-field pulse magnets is a challenging m...
Primary goal is to develop high strength-high conductivity composite wires with enhanced cross secti...
This thesis applies the method of finite element software to calculate pulsed high field magnets. Th...
The development of suitable wires for magnet windings requires both the attainment of suitable combi...
In the past year, the effort in materials science related to the 60T and 100T magnets at Los Alamos ...
The measurements of mechanical properties of electrotechnical materials applied in pulsed magnet des...
International audienceNew Ag-Cu composite wires are developed for the winding of non-destructive pul...
The technology of high temperature superconductivity has gone beyond mere scientific curiosity and i...