Superferric correction magnets for the SSC
John Colvin, R. Huson, W. W. MacKay, Yunpeng Miao, Sergio Pissanetzky, R. Rocha, G. Shotzman, Y. Xiang, J. Ziegler
Abstract
John Colvin, R. Huson, W. W. MacKay, Yunpeng Miao, Sergio Pissanetzky, R. Rocha, G. Shotzman, Y. Xiang, J. Ziegler
Abstract
Four models of a superferric correction quadrupole magnet were constructed for possible use in the SSC (Superconducting Super Collider); one of them was tested. The design incorporates a coil winding process. This process uses ultrasonic energy to accurately adhere a Kapton-wrapped superconducting wire in a racetrack configuration onto a substrate material 0.010 cm thick. The substrate is subsequently rolled around a frame in much the same way that a jelly roll is made. The use of iron to shape the field improves efficiency and provides a coil package preload. Design parameters and performance data are provided for the quadrupole magnet.
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Four models of a superferric correction quadrupole magnet were constructed for possible use in the SSC (Superconducting Super Collider); one of them was tested. The design incorporates a coil winding process. This process uses ultrasonic energy to accurately adhere a Kapton-wrapped superconducting wire in a racetrack configuration onto a substrate material 0.010 cm thick. The substrate is subsequently rolled around a frame in much the same way that a jelly roll is made. The use of iron to shape the field improves efficiency and provides a coil package preload. Design parameters and performance data are provided for the quadrupole magnet.
Key concepts: Superconducting Super Collider, Magnet, Kapton, Quadrupole magnet, Electromagnetic coil, Superconducting magnet, Materials science, Electromagnet