In the past year, the effort in materials science related to the 60T and 100T magnets at Los Alamos has been concentrated in three areas: (a) development of a fabrication route for Cu-Ag wire in collaboration with Handy and Harman and IGC and (b) investigation of the mechanical properties of a variety of potential high strength high conductivity materials (c) selection of the reinforcement materials for the coils and development of a fabrication route for these materials. The selection of the conductors and reinforcement materials is based on their mechanical properties and electrical properties at cryogenic temperature ({minus} 196 C). The authors have taken the approach of trying to relate the properties both to design requirements and to...
The use of copper - high nitrogen stainless steel macrocomposites for applications such as pulsed hi...
Abstract—Future superconducting magnets for fusion applications require improvements in materials an...
Summary: Superconducting materials hold great potential to bring radical changes for electric power ...
The development of suitable wires for magnet windings requires both the attainment of suitable combi...
High temperature superconducting (HTS) materials have the potential to generate a magnetic field bey...
The National High Magnetic Field Laboratory is completing a quasi-continuous magnet which will susta...
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 ...
The development of large-bore, high-field magnets for fusion energy applications requires a system a...
This thesis describes a portfolio of work aimed at the high field applications of superconductors an...
The K.U.Leuven Pulsed Field Facility is well equipped to accommodate a large variety of experiments ...
The design, construction, and characterization of a High Temperature Superconducting (HTS) magnet is...
Calculations have indicated that the simple macro composite conductor that comprises copper with a s...
The design, construction, and characterization of a High Temperature Superconducting (HTS) magnet is...
The progress of a project on the research and development of fundamental technologies for accelerato...
The use of copper - high nitrogen stainless steel macrocomposites for applications such as pulsed hi...
Abstract—Future superconducting magnets for fusion applications require improvements in materials an...
Summary: Superconducting materials hold great potential to bring radical changes for electric power ...
The development of suitable wires for magnet windings requires both the attainment of suitable combi...
High temperature superconducting (HTS) materials have the potential to generate a magnetic field bey...
The National High Magnetic Field Laboratory is completing a quasi-continuous magnet which will susta...
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 ...
The development of large-bore, high-field magnets for fusion energy applications requires a system a...
This thesis describes a portfolio of work aimed at the high field applications of superconductors an...
The K.U.Leuven Pulsed Field Facility is well equipped to accommodate a large variety of experiments ...
The design, construction, and characterization of a High Temperature Superconducting (HTS) magnet is...
Calculations have indicated that the simple macro composite conductor that comprises copper with a s...
The design, construction, and characterization of a High Temperature Superconducting (HTS) magnet is...
The progress of a project on the research and development of fundamental technologies for accelerato...
The use of copper - high nitrogen stainless steel macrocomposites for applications such as pulsed hi...
Abstract—Future superconducting magnets for fusion applications require improvements in materials an...
Summary: Superconducting materials hold great potential to bring radical changes for electric power ...