Structure Analysis of the SECRAL Superconducting Magnet System

  • An advanced superconducting ECR ion source named SECRAL has been constructed at Institute of Modern Physics of Chinese Academy of Sciences, whose superconducting magnet assembly consists of three axial solenoid coils and six sextupole coils with a cold iron structure as field booster and clamp. In order to investigate the structure of sextupole coils and to increase the structural reliabilities of the magnet system, global and local structural analysis have been performed in various operation scenarios. Winding pack and support structure design of magnet system, mechanical calculation and stress analysis are given in this paper. From the analysis results, it has been found that the magnet system is safe in the referential operation scenarios and the configuration of the magnet complies with design requirements of the SECRAL.
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  • [1] . ZHAO H W, SUN L T et al. Rev. Sci. Instrum., 2006, 77:03A3332. ZHAO H W, ZHANG Z M et al. Rev. Sci. Instrum., 2004,75: 1410-14133. ADINA RD Inc. A Finite Element Computer Program for Automatic Dynamic in Cremental Nonlinear Analysis System 7.5, 71 Elton Avenue, Watertown, MA 02472 USA,20014. Bathe K J. Finite Element Procedures. Englewood Cliffs,NJ: Prentice-Hall, 1996
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HE Wei and ZHAO Hong-Wei. Structure Analysis of the SECRAL Superconducting Magnet System[J]. Chinese Physics C, 2007, 31(S1): 31-36.
HE Wei and ZHAO Hong-Wei. Structure Analysis of the SECRAL Superconducting Magnet System[J]. Chinese Physics C, 2007, 31(S1): 31-36. shu
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Received: 2007-05-30
Revised: 1900-01-01
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Structure Analysis of the SECRAL Superconducting Magnet System

    Corresponding author: HE Wei,
  • Institute of Modern Physics IMP, Chinese Academy of Sciences, Lanzhou 730000, China2 Graduate University of Chinese Academy of Sciences, Beijing 100049, China

Abstract: An advanced superconducting ECR ion source named SECRAL has been constructed at Institute of Modern Physics of Chinese Academy of Sciences, whose superconducting magnet assembly consists of three axial solenoid coils and six sextupole coils with a cold iron structure as field booster and clamp. In order to investigate the structure of sextupole coils and to increase the structural reliabilities of the magnet system, global and local structural analysis have been performed in various operation scenarios. Winding pack and support structure design of magnet system, mechanical calculation and stress analysis are given in this paper. From the analysis results, it has been found that the magnet system is safe in the referential operation scenarios and the configuration of the magnet complies with design requirements of the SECRAL.

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