The 14 superconducting solenoid magnets which form the central cell of the MFTF-B are being designed and fabricated by General Dynamics for the Lawrence Livermore National Laboratory. Each solenoid coil has a mean diameter of five meters and contains 600 turns of a proven conductor type. Structural loading resulting from credible fault events, cooldown and warmup requirements, and manufacturing processes consistent with other MFTF-B magnets have been considered in the selection of 304 LN as the structural material for the magnet. The solenoid magnets are connected by 24 intercoil beams and 20 solid struts which resist the longitudinal seismic and electromagnetic attractive forces and by 24 hanger/side supports which react magnet dead weight...
This report describes the construction and test of a split solenoid that has a warm bore of 440 mm a...
The final beam cooling stages of a possible Muon Collider may require DC solenoid magnets with magne...
Design, construction and performance of three superconducting magnets for the hybrid magnets install...
The superconducting magnet system for the Mirror Fusion Test Facility (MFTF-B) consists of 24 magnet...
The MFTF-B transition coil and A-cell magnet designs use variations of the copper-stabilized NbTi co...
The ATLAS central solenoid magnet is being constructed to provide a magnetic field of 2 T in the cen...
Fermi National Accelerator Laboratory (FNAL) is involved in the development of a 100 MeV superconduc...
International audienceAn aggressive low-mass and high-stress design of a very large detector magnet ...
The present study aims to reduce the outer radius of the central solenoid (CS) with respect to its n...
The MuCool program undertaken by the US Neutrino Factory and Muon Collider Collaboration is to study...
In the framework of the DEMOnstration fusion power plant (DEMO) design coordinated by the EUROfusion...
The aim of this project work was to design, build and characterize a supercon-ducting 3-axis vector ...
The Lawrence Livermore Laboratory is planning an upgrade of the MFTF-B tandem mirror facility that w...
The muon cooling system is the costliest part of the proposed neutrino factory. A major cost item fo...
The MICE coupling solenoids surround the RF cavities that are used to increase the longitudinal mome...
This report describes the construction and test of a split solenoid that has a warm bore of 440 mm a...
The final beam cooling stages of a possible Muon Collider may require DC solenoid magnets with magne...
Design, construction and performance of three superconducting magnets for the hybrid magnets install...
The superconducting magnet system for the Mirror Fusion Test Facility (MFTF-B) consists of 24 magnet...
The MFTF-B transition coil and A-cell magnet designs use variations of the copper-stabilized NbTi co...
The ATLAS central solenoid magnet is being constructed to provide a magnetic field of 2 T in the cen...
Fermi National Accelerator Laboratory (FNAL) is involved in the development of a 100 MeV superconduc...
International audienceAn aggressive low-mass and high-stress design of a very large detector magnet ...
The present study aims to reduce the outer radius of the central solenoid (CS) with respect to its n...
The MuCool program undertaken by the US Neutrino Factory and Muon Collider Collaboration is to study...
In the framework of the DEMOnstration fusion power plant (DEMO) design coordinated by the EUROfusion...
The aim of this project work was to design, build and characterize a supercon-ducting 3-axis vector ...
The Lawrence Livermore Laboratory is planning an upgrade of the MFTF-B tandem mirror facility that w...
The muon cooling system is the costliest part of the proposed neutrino factory. A major cost item fo...
The MICE coupling solenoids surround the RF cavities that are used to increase the longitudinal mome...
This report describes the construction and test of a split solenoid that has a warm bore of 440 mm a...
The final beam cooling stages of a possible Muon Collider may require DC solenoid magnets with magne...
Design, construction and performance of three superconducting magnets for the hybrid magnets install...