A superconducting magnet for 9.4 Tesla whole-body magnetic resonance imaging is designed and fabricated in Institute of Electrical Engineering, Chinese Academy of Sciences. In this paper, the electromagnetic design methods of the main coils and compensating coils are presented. Sensitivity analysis is performed for all superconducting coils. The design of the superconducting shimming coils is also presented and the design of electromagnetic decoupling of the Z2 coils from the main coils is introduced. Stress and strain analysis with both averaged and detailed models is performed with finite element method. A quench simulation code with anisotropic continuum model and control volume method is developed by us and is verified by experimental study. By means of the quench simulation code, the quench protection system for the 9.4 T magnet is designed for the main coils, the compensating coils and the shimming coils. The magnet cryostat design with zero helium boiling-off technology is also introduced.
CITATION STYLE
Li, Y., Wang, Q., Dai, Y., Ni, Z., Zhu, X., Li, L., … Chen, S. (2017). Design of the superconducting magnet for 9.4 Tesla whole-body magnetic resonance imaging. In IOP Conference Series: Materials Science and Engineering (Vol. 171). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/171/1/012105
Mendeley helps you to discover research relevant for your work.