• Title of article

    Feasibility study of the cut and weld operations by RH on the cooling pipes of ITER NB components

  • Author/Authors

    Piٌeiro، نويسنده , , Oscar and Fernلndez-Fernلndez، نويسنده , , Carlos and Medrano، نويسنده , , Mercedes and Liniers، نويسنده , , Macarena and Botija، نويسنده , , Jose and Alonso، نويسنده , , Javier and Sarasola، نويسنده , , Xabier and Damiani، نويسنده , , Carlo، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    6
  • From page
    1515
  • To page
    1520
  • Abstract
    The maintenance operations of ITER NB components inside the vessel - Beam Line Components (BLCʹs) involve the removal of the faulty component, its transport to the hot cell as well as the reverse operations of transport of the repaired/new component and its reinstallation inside the vessel. Prior to the removal of the BLCʹs the cooling pipes must be detached from the component following a procedure that applies to the cutting of the pipes and subsequent welding when the component is re-installed. The purpose of this study, conducted in the framework of EFDA, is to demonstrate the feasibility of the cut and weld operations on the water pipes of the BLCʹs using fully remote handling techniques. Viable technologies for the cut and weld operations have been identified within the study; in particular the following aspects will be presented in the paper:• ent strategies can be pursued in the detachment of the components depending on the number of cut and weld operations to be performed on the pipes. The selected strategy will impact on the procedure to be followed likewise on important aspects as the requirements of the flexible joints assembled on the pipes. isting cutting techniques have been examined in the light of the remotely performed pipe cutting at the NB cell. Modifications of commercial tools have been proposed in order to adapt them to the BLCʹs pipes requirements. The debris produced during the cutting process must be controlled and collected, therefore a cleaning system has been integrated in the adapted cutting tool referred above. isting welding techniques have been also examined and compared based on different criteria such as complexity, reliability, alignment tolerances, etc. TIG welding is the preferred technique as it stands out for its superior performance. The commercial tools identified need to be adapted to the NB environment. ignment of the pipes is a critical issue concerning the remote welding. A proper alignment system has been proposed taking into account the pre-selected welding technique.
  • Keywords
    Cut and weld , NBI , remote handling
  • Journal title
    Fusion Engineering and Design
  • Serial Year
    2009
  • Journal title
    Fusion Engineering and Design
  • Record number

    2356026