Nb3Sn LHC IR Quad Magnet Workshop - PowerPoint PPT Presentation

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Nb3Sn LHC IR Quad Magnet Workshop

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Inflatable bladders 'internal press' Interference Keys. No spring back loss ... Allow bladder removal. Pre-stress gain during cool-down ~100 Mpa ... – PowerPoint PPT presentation

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Title: Nb3Sn LHC IR Quad Magnet Workshop


1
Nb3Sn LHC IR QuadMagnet Workshop FermiLab
August 4-6, 2003Shlomo Caspi
2
Conceptual Design
Gss270 T/m 20kA 90mm bore
Coil
3
Two Sub-assemblies
Coil Pack low pre-stress
Structural Pack
Aluminum Shell
Iron Pads
Iron Yoke
4
Finite element model 4 Steps
  1. Bladders pressurized
  2. Keys inserted, bladder deflated
  3. Cool-down
  4. Lorentz forces 5 MN/m

5
  • Short Term Goals
  • Complete one full design iteration
  • Cross-section, Ends, Structure, Assembly
    procedure etc
  • Completed a 3D CAD model
  • Completed a 3D ANSYS model - structural and
    thermal
  • Build and test a 1 m long mechanical model
  • 1m Aluminum shell beginning of August
  • 4 way Iron yokes end of August
  • Pads cost estimate
  • Inner tube

6
Mechanical Model- Final assembly
7
  • Short Term Goals Continue
  • Instrument inner tube and outer shell with
    strain-gauges
  • Measure stress-strain relation between outer
    shell and inner tube as a function of bladder
    pressure.
  • Measure inner tube (id) displacements as a
    function of key size (full symmetry) systematic
    errors
  • Measure inner tube (id) displacements as a
    function of different key size (random size)
    random errors
  • Repeat measurements at room temperature and 4.2K

8
  • Long Term Goals
  • Replace inner tube with current NbTi coils from
    Fermilab
  • Replace NbTi coils with Nb3Sn coil

9
  • What have we done so far
  • Several cross sections
  • A CAD solid model
  • First iteration in Tosca
  • Several 2D iterations in ANSYS
  • First 3D iteration in ANSYS

10
3D - ANSYS
11
Layer 1 Time Step
12
Lorentz Load - Layer 1
13
Azimuthal Stress in Shell, mu0
14
  • Layer 1 - Uz

15
Mechanical Summary
  • Inflatable bladders
  • internal press
  • Aluminum Shell
  • Reduces assembly pre-stress
  • Monitor average coil pre-stress.
  • Interference Keys
  • No spring back loss
  • Never overstress coil
  • Allow bladder removal
  • Pre-stress gain during cool-down 100 Mpa
  • Confine high tolerances to key regions
  • Allow adjustment of magnetic errors
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