• DocumentCode
    2153822
  • Title

    Structure analysis and experiment research of the welded bellows for the ports of the HT-7U vacuum vessel

  • Author

    Song, Yuntao ; Yao, Damao ; Wu, Songtao ; Yu, Jie ; Weng, Peide ; Liu, Yihua ; Wang, Jionghua ; Wu, Xuetao

  • Author_Institution
    Inst. of Plasma Phys., Acad. Sinica, Hefei, China
  • fYear
    2002
  • fDate
    2002
  • Firstpage
    376
  • Lastpage
    379
  • Abstract
    Vacuum vessel of the HT-7U is a fully welded toroidal structure with noncircular cross-section nested in the bore of the TF coils. According to the requirement of the physics design, sixteen horizontal ports on outboard mid-plane and thirty-two vertical ports on the top and bottom are designed for diagnostics, plasma heating, current driving, vacuum pumping and gas puffing. Bellows on these ports are used for flexible components to absorb the relative displacement in radial and vertical directions due to the external load, thermal expansion or contraction, assembly toleration and as well as for isolation of mechanical vibration. Some three-dimension finite element COSMOS models were performed to analysis its structural strength, stiffness and fatigue life, laying the emphasis on these bellows static stress analysis. The load case spectra during vacuum vessel operation were also simulated on a model from the view of fatigue design. It was confirmed that these bellows have sufficient strength in range of the design load conditions. The results showed the bellows peak stress was 87 MPa and its fatigue cumulative usage factor was only 0.01, which was less than critical value of 1. Now all kinds of bellows have been designed. In order to accumulate some engineering experiences and probe into some molding die and welding technologies, a prototypical bellows have been fabricated. At the same time a mechanical testing apparatus was designed for proof tests on the prototypical bellows to verify its functional and structure capability. The experimental data indicated that the results of finite element analysis were coincident with experimental test results. It has been proved that the present vacuum vessel´s bellows are reasonable and feasible.
  • Keywords
    Tokamak devices; corrosion fatigue; elastic constants; finite element analysis; fusion reactor design; fusion reactor materials; nuclear engineering computing; stress analysis; stress-strain relations; superconducting magnets; vacuum apparatus; welding; 87 MPa; HT-7U vacuum vessel ports; TF coils; assembly toleration; contraction; current driving; design load conditions; diagnostics; external load; fatigue cumulative usage factor; fatigue life; finite element COSMOS models; fully welded toroidal structure; gas puffing; mechanical vibration isolation; noncircular cross-section; peak stress; plasma heating; static stress analysis; stiffness; structural strength; structure analysis; superconducting tokamak; thermal expansion; vacuum pumping; vacuum vessel operation; welded bellows; Bellows; Boring; Coils; Fatigue; Finite element methods; Performance analysis; Physics; Prototypes; Testing; Welding;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Fusion Engineering, 2002. 19th Symposium on
  • Print_ISBN
    0-7803-7073-2
  • Type

    conf

  • DOI
    10.1109/FUSION.2002.1027716
  • Filename
    1027716