28/11/2016 Juan Carlos Perez TE-MSC-MDT Jose Ferradas TE-MSC-MDT

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1 TE-MSC-MDT

2 28/11/2016 Juan Carlos Perez Jose Ferradas TE-MSC-MDT TE-MSC-MDT

3 Outline Description and status of the project Project TE3536 at Laboratory 927 Magnet Design and Technology (MDT) Main results & achievements Next steps

4 Outline Description and status of the project Project TE3536 at Laboratory 927 Magnet Design and Technology (MDT) Main results & achievements Next steps

5 Description and status of the project Project TE3536: Develop dimensional control techniques (using the FARO arm) for short and long Nb 3 Sn coils Mechanical Engineer position at 927 Lab. (TE-MSC-MDT Section). Technology Department Magnets, Superconductors and Cryostats Group Magnet Design and Technology Section From functional specifications to the construction of short models N.Peray

6 Outline Description and status of the project Project TE3536 at Laboratory 927 Magnet Design and Technology (MDT) Main results & achievements Next steps

7 Project TE3536 at Laboratory 927 Supervisor: M. Juan Carlos Perez Work where involved: 1. Mechanical measurements and their analysis 2. Mechanical analysis and design 3. Magnetic analysis and design 4. Protection studies 5. Magnet production Projects: - WP11-11T DIPOLE - WP3 - MAGNETS FOR INSERTION REGIONS: MQXF PROJECT - HIGH FIELD MAGNETS R&D (FRESCA2, SMC, RMC ) - FCC MAGNET DEVELOPMENT (E-RMC,RMM,DEMONSTRATOR) - HTS MAGNETS R&D (High Temperature Superconductors)

8 Outline Description and status of the project Project TE3536 at Laboratory 927 Magnet Design and Technology (MDT) Main results & achievements Next steps

9 Magnet design and technology (MDT) Prototype Production Magnet Design Model Production Testing Results analysis and implementation Series production Activities at 927 Lab.

10 Magnet design and technology (MDT) The design part Analytical Magnet Design Electromagnetic optimization Mechanical Optimization Protection Quench analysis Analysis of test results Activities where already involved or future participation

11 Model production The production part Cable insulation Coil winding and curing Coil components Coil construction Reaction Impregnation Coil Instrumentation Mechanical Measurements Mechanical assembly Magnet Magnet structure parts Structure assembly

12 Outline Description and status of the project Project TE3536 at Laboratory 927 Magnet Design and Technology (MDT) Main results & achievements Next steps

13 Main results & achievements Mechanical measurements and analysis Magnetic and protection analysis for RMM Graded design magnet RMM Opera model by E.Rochepault Mechanical analysis: Coil stresses due to thermal gradients during quench (Graded design)

14 Main results & achievements First MQXF quadrupole model magnet assembled and tested at CERN HFM Cryostat commissioning test Nominal current reached Magnet extracted from cryostat and long. preload increased Next test, trying to reach ultimate, before Christmas 4 th Superconductivity Summer School at Oxford Wolfson College, July Speakers: Martin Wilson, Luca Bottura (CERN), David Larbalestier (Florida State University), Joe Minervini (MIT), Damian Hampshire (Durham University), Ziad Melhem (Oxford Instruments)

15 Outline Description and status of the project Project TE3536 at Laboratory 927 Magnet Design and Technology (MDT) Main results & achievements Next steps

16 Next steps Continue working on mechanical measurements analysis Implementation study to measure racetrack coils E-modulus using 927 laboratory press RMM Graded design optimization Magnetic design: Field quality (b n <10 units, including iron saturation) Optimize graded design layout keeping non-graded design structure Mechanical design: Optimize the mechanics accounting from smaller coil-pack size inside a common structure

17 Thank you Juan Carlos Perez Jose Ferradas TE-MSC-MDT TE-MSC-MDT

18

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