Mechanics of superconducting structures: presented at the winter annual meeting of the American Society of Mechanical Engineers, Chicago, Illinois, November 16-21, 1980
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lntroduction to Superconducting Structures
Stresses in Superconducting Solenoids
Design Configurations for Large Superconductive Energy Storage Magnets
3 other sections not shown
acoustic emission acoustic signals Applied aspect ratio axial bending body forces bucking post buckling current circumferential coil jacket coil pack cold weld composite compressive conductor copper critical current current density diameter displacement Earnshaw's theorem elastic electric electromagnetic loads energy storage magnet epoxy equation experimental ferromagnetic Figure finite element analysis fusion reactors Fusion Research inductance instability Laboratory large superconducting layer LCTF low aspect ratio magnet systems magnetic energy magnetic field magnetic forces magnetic pressure magnetic stiffness magnetoelastic buckling main coil method MFTF coil modulus Moon NbTi wire obtained partial torus plane plots problem quench radial radius segment shown in Fig solenoid solution spider base stability strain strain gages stress analysis superconducting coil superconducting magnets Superconducting Structures Superconductive Energy Storage surface sweep-down mode sweep-up mode tensile tension thermal tokamak toroidal coil toroidal field torus transport current vector potential virial theorem Young's modulus zero