201-MHz RF Cavity Construction (Plan) for MICE Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory NFMCC Meeting March 17, 2008.

Slides:



Advertisements
Similar presentations
MICE RF Cavities and RFCC Module Update Derun Li Lawrence Berkeley National Laboratory MICE RF Workshop Daresbury Laboratory, UK April 17, 2012 April 17,
Advertisements

RF Cavity Module G. Gosling Dept. of Mechanical Engineering Imperial College London.
MICE RF and Coupling Coil Module Outstanding Issues Steve Virostek Lawrence Berkeley National Laboratory MICE Collaboration Meeting October 26, 2004.
Muon Front End Buncher, Phase Rotation, Cooling Schematics & CAD model based on MICE Cavities Alan Grant Daresbury (April 10, 2012)
MICE RF Cavity Design and Fabrication Update Steve Virostek Lawrence Berkeley National Laboratory MICE Collaboration Meeting October 27, 2004.
Plans for 201-MHz Cavities Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory November 18, 2010.
RF Measurement Plan Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory January 20, 2011 MICE Video Conference Meeting.
Integration of Cavities and Coupling Coil Modules Steve Virostek Lawrence Berkeley National Laboratory MICE Collaboration Meeting March 28 – April 1, 2004.
Trip Report on the visit to ICST of HIT, Harbin, China Derun Li Mike Green Steve Virostek Mike Zisman Lawrence Berkeley National Laboratory (from December.
MICE RF Cavity Measurements Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory March 26, 2010 University of California, Riverside,
Status of the 201 MHz Cavity and Coupling Coil Module Steve Virostek Lawrence Berkeley National Laboratory MICE Video Conference March 10, 2004.
Status of 201 MHz Prototype Cavity and Curved Be Windows Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory MICE Collaboration Meeting.
201 MHz Cavity Studies Derun Li Lawrence Berkeley National Laboratory MuCool RF Workshop (Fermilab) July 7 and 8, 2009.
Progress on the MICE 201 MHz Cavity Design Steve Virostek Lawrence Berkeley National Lab RF Working Group Fermilab August 22, 2007  automatic.
Proposed Button Design for a Series of High Power Button Tests Arash Zarrebini-Esfahani 22 nd August 2007.
D. Li and R. Rimmer, RF Workshop, Fermilab, MHz Cavity Refurbishment and suggestions on future tests Derun Li and Robert Rimmer* Lawrence.
Update on Be Wall Cavity Steve Virostek Lawrence Berkeley National Lab MTA RF Workshop November 15, 2010.
Safety Review: RF Issues Derun Li Absorber Safety Review December 9-10, 2003 Lawrence Berkeley National Laboratory Berkeley, CA
Report from RF Session (1:30-5:40 PM, 3/30/2004) H. Haseroth and Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory MICE Collaboration.
201 MHz NC RF Cavity R&D Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory WG3 at NuFact 2004 July 28, 2004.
MICE RFCC Module Update Allan DeMello Lawrence Berkeley National Lab MICE CM26 at Riverside California March 26, 2010.
Status of 201 MHz Prototype and RFCC Module Derun Li, S. Virostek, M. Zisman Center for Beam Physics Lawrence Berkeley National Laboratory In collaboration.
201-MHz NCRF Cavity Program Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory MUTAC Review at Fermilab March 16, 2006.
Status of the MuCool Cavity Prototype Steve Virostek Lawrence Berkeley National Laboratory MICE Collaboration Meeting October 21, 2005.
5-Year RF R&D Plan Derun Li Lawrence Berkeley National Laboratory NFMCC and MCTF Phone Meeting Friday, September 18, 2009.
RF Cavity / Coupling Coil Module
Allan DeMello Lawrence Berkeley National Lab RFCC Module Design Review October 21, 2008 RFCC Module and Subcomponents Mechanical Design.
Progress on the MuCool and MICE Coupling Coils * L. Wang a, X. K Liu a, F. Y. Xu a, A. B. Chen a, H. Pan a, H. Wu a, X. L. Guo a, S. X Zheng a, D. Summers.
NCRF R&D Programs and Plans Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory MUTAC Review at BNL April 28, 2004.
201 MHz and 805 MHz Cavity Developments in MUCOOL Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory Nufact 2002 Workshop, London,
MICE RFCC Module Update Allan DeMello Lawrence Berkeley National Laboratory MAP Winter Collaboration Meeting at JLab, Virginia February 28, 2011.
MICE RFCC Module Status: RF Cavities Derun Li A. DeMello, S. Virostek, M. Zisman Lawrence Berkeley National Laboratory NFMCC Collaboration Meeting The.
MUCOOL RF Program Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory MUTAC Review at BNL April 18, 2007.
MICE RFCC Module and 201 MHz Cavity Update Steve Virostek Lawrence Berkeley National Lab MICE CM23 at ICST, Harbin January 15, 2009.
Status of RFCC-Module Development Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory MICE Collaboration Meeting at INFN-LNF, Frascati,
201 MHz NC RF Cavity R&D for Muon Cooling Channels
MICE RF System - Status Alan Bross Fermilab. RF Cavities for MICE I Eight 201-MHz cavities in the MICE cooling channel First five cavities arrived at.
RFCC Module Design Update  automatic tuners  cavity suspension  cavity installation Steve Virostek Lawrence Berkeley National Lab MICE Collaboration.
MICE RFCC Module Derun Li Lawrence Berkeley National Laboratory MICE Schedule Review RAL, UK May 24, 2011 May 24, 2011.
201 MHz Cavity Status and Test Plans at MTA MICE Collaboration Meeting at RAL, UK October 22 ~ 24, 2005 Derun Li Center for Beam Physics Lawrence Berkeley.
Progress on the MICE RFCC Module Mike Zisman/Steve Virostek Lawrence Berkeley National Laboratory MuCool Test Area RF Workshop October 15, 2008.
Normal Conducting RF Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory March 5-6, 2013.
201 MHz Cavity Fabrication Update Derun Li Lawrence Berkeley National Lab MICE CM24 at RAL, UK June 1, 2009.
MICE RFCC Module Update Allan DeMello Lawrence Berkeley National Laboratory MICE CM29 at RAL, UK February 17, 2011.
Summary of the RF Parallel Session Steve Virostek Lawrence Berkeley National Lab MICE Collaboration Meeting 18 June 16, 2007.
2.1 GHz Warm RF Cavity for LEReC Binping Xiao Collider-Accelerator Department, BNL June 15, 2015 LEReC Warm Cavity Review Meeting  June 15, 2015.
MICE RFCC Module Status Derun Li Lawrence Berkeley National Lab NFMCC-MCTF Collaboration Meeting LBNL, Berkeley, CA January 25, 2009.
MICE RF Cavities and RFCC Module Update Allan DeMello and Derun Li Lawrence Berkeley National Laboratory MICE CM32 at RAL, UK February 9, 2012 February.
MICE RF Cavity Measurements Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory July 8, 2010 Rutherford Appleton Laboratory, UK.
Spectrometer Solenoid Fabrication Status and Schedule RF Cavity / Coupling Coil Module Plan and Progress Steve Virostek Lawrence Berkeley National Lab.
RFCC Module and RF Cavity Construction
MICE RF Coupling Coil Magnets Update Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory October 6, 2010 Sofia, Bulgaria.
Update on 201-MHz RF Cavity Construction (Plan) for MICE
MICE Prototype Coupling Coil Fabrication Update Allan DeMello Lawrence Berkeley National Laboratory MICE CM38 - Napa California February 25, 2014 February.
MICE RF System Overview Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory Andrew Moss STFC Daresbury Laboratory MICE UK.
MICE RFCC Module Update Allan DeMello Lawrence Berkeley National Lab MICE CM25 at RAL, UK November 6, 2009.
MICE RFCC Module Update Allan DeMello Lawrence Berkeley National Laboratory Oxford, UK July 7, 2011 July 7, 2011.
Progress on MICE RFCC Module for the MICE Experiment * Allan DeMello, Nord Andresen, Michael Green, Derun Li, Heng Pan, Steve Virostek, Michael Zisman.
MICE RFCC Module Update Steve Virostek Allan DeMello Lawrence Berkeley National Laboratory MICE CM27 at RAL, UK July 8, 2010.
Status of MICE RF for Step V’ (at LBNL) Derun Li Lawrence Berkeley National Laboratory December 6, 2014.
MICE CC Magnet Cryostat Design Overview Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory MICE CC Cryostat Design Review LBNL, February.
RF Module Update MICE Collaboration Meeting 44 Andrew Lambert Lawrence Berkeley National Laboratory March 30 th, 2016.
201 MHz Cavity Plans Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory February 11, 2011 MAP Friday Video Conference Meeting.
US Construction Project: SSs, PRY, Cavities and test program MICE Project Board and RLSR – November 17, 2014 Alan Bross1.
MICE Coupling Coil Vacuum Vessel Fabrication Update Allan DeMello Lawrence Berkeley National Laboratory Coupling Coil Working Group January 28, 2014 January.
RFCC Engineering Status and Plans Allan DeMello Lawrence Berkeley National Laboratory MAP Winter Meeting March 6, 2012 March 6, 2012.
Engineering of the power prototype of the ESRF HOM damped cavity* V. Serrière, J. Jacob, A. Triantafyllou, A.K. Bandyopadhyay, L. Goirand, B. Ogier * This.
Fabrication of Remaining Components Allan DeMello Lawrence Berkeley National Laboratory MICE RF Workshop Fermilab June 2, 2014.
RF R&D (Issues) for Muon Ionization Cooling Channels
Overview of the RFCC Module and 201-MHz Cavity Design
Presentation transcript:

201-MHz RF Cavity Construction (Plan) for MICE Derun Li Center for Beam Physics Lawrence Berkeley National Laboratory NFMCC Meeting March 17, 2008

Outline MICE Cavity Design –Based on the design of 201-MHz cavity for MUCOOL Cavity body Ports for power coupler, vacuum and probes RF power loop coupler and ceramic RF window Curved Beryllium window Tuners Interface and integration with RFCC module Summary –Status and fabrication plan Techniques developed for MUCOOL cavity –Spinning, port extruding, curved Be windows, RF couplers

MICE Cooling Channel Courtesy of S. Q. Yang, Oxford Univ. LH 2 absorbers Eight 201-MHz RF cavities

MICE RF Cavity Eight 201-MHz cavities + with materials for two more spares Baseline design: 201-MHz for MUCOOL, but –Cavity body profile needs to be modified Resonant frequency Better estimation of spring back after spinning –Port extruding Port interface is different from the MUCOOL cavity –RF coupler and ceramic window Same as the MUCOOL cavity with Toshiba ceramic windows for SNS –Curved Beryllium windows Modified design to better control silver alloy flow during the brazing –Tuners and interface with RFCC module –Post-processing: Water cooling pipes, cleaning (EP & water rinsing), low power measurement, tuning, assembly and shipping

Cavity Design Parameters The cavity design parameters –Frequency: MHz – β = 0.87 –Shunt impedance (VT 2 /P): ~ 22 MΩ/m –Quality factor (Q 0 ): ~ 53,500 –Be window radius and thickness: 21-cm and 0.38-mm Nominal parameters for cooling channels in a muon collider or a neutrino factory and MICE –~ 16 MV/m (~ 8 MV/m) peak accelerating field –Peak input RF power ~ 4.6 MW (~ 1 MW) per cavity (85% of Q 0, 3  filling) –Average power dissipation per cavity ~ 8.4 kW (~ 1 kW at 1 Hz repetition rate and 1 ms pulse length) –Average power dissipation per Be window ~ 100 watts (~ 12 watts)

MUCOOL Cavity Review Design and engineering at LBNL Half shells spun at Acme in Minnesota Parts made in Univ. of Mississippi and LBNL E-beam welding & port-pulling, cleaning and EP at J-Lab, NASA Coupler tests at SNS, Oak Ridge National Lab Final assembly and high power tests at MTA, FNAL (March-2006) and reached 16-MV/m without external magnetic field

The Cavity Body Profile De-mountable pre-curved Be windows pointing in the same direction to terminate RF fields at the iris 2 o tilt angle Spherical section at the equator to ease addition of ports (± ~ 6 o ) Elliptical-like (two circles) nose to reduce peak surface field 6-mm Cu sheet permits spinning technique and mechanical tuners similar to SCRF ones Stiffener ring Bolted Be window Low peak surface field and easy fabrication E-beam joints

Cavity Body MUCOOL cavity frequency is slightly lower than 200- MHz, but within the bandwidth of RF source –Mechanical (fixed) tuners available and tested in air MICE cavities –Target frequency is MHz –One RF source (tube) powers more than one cavity –Each cavity will be made (spinning) to frequency very close to 201-MHz Modifying the existing mold used for MUCOOL cavity A new mold (could be new materials) –3D simulations to predict the frequency shifts by ports, curved Be windows and thermal contraction (LN operation) –Conceptual tuner designs (fine tuning)

Ports Extruding and Flanges Local annealing of ports Finished cavity port Port flange e-beam weld Extruded port Cavity ports being extruded (pulled) Vacuum leak! Development of the technique

Fabrication of the Coupler The coupling can be adjusted by rotating the loop Water cooling line goes around the loop RF ceramic windows from Toshiba Company RF window Loop coupler

RF Coupling Loop Design Prototype coupling loop design uses standard off-the-shelf copper co-axPrototype coupling loop design uses standard off-the-shelf copper co-ax Parts to be joined by torch brazingParts to be joined by torch brazing Coupling loop has integrated coolingCoupling loop has integrated cooling (Possible off-shelf components?) (Possible off-shelf components?) Two SNS style RF windows mfg. by Toshiba received (no cost!)Two SNS style RF windows mfg. by Toshiba received (no cost!) Bellows connection required on MICE for thermal and dimensional reasonsBellows connection required on MICE for thermal and dimensional reasons Need to integrate with MICE layoutNeed to integrate with MICE layout MUCOOL MICE

Curved Be Windows We have made two windows available so far –21-cm and 0.38-mm thick –Good –Good braze (between annular frames and foil) –Achieved ~ 95 % of the designed profile –Thin Ti-N coatings The windows were HP tested at MTA, Fermilab 42-cm

Beryllium Window Update Improved design for better brazing (based on suggestions from Brush-Wellman Company) Be foil

Tuners for MICE Cavities Clocking of tuner position between adjacent cavities avoids interferenceClocking of tuner position between adjacent cavities avoids interference Actuators offset from cavity center plane due to width of coupling coilActuators offset from cavity center plane due to width of coupling coil Soft connection only (bellows) between tuner/actuators and vacuum vessel shellSoft connection only (bellows) between tuner/actuators and vacuum vessel shell Four 201-MHz cavities in each RFCC module; one tuner assembly (six sets of tuners) on each cavity.

Tuner Section View Ball contact only Dual bellows feedthrough Tuner actuator (likely air) Pivot point Fixed (bolted) connection

MUCOOL Cavity Tuners

Integration to RFCC Module Vacuum weld on interior RF couplers, vacuum, RF probes, tuners, water cooling pipes

Post-Processing Cavity cleaning and assembly Low power RF measurements and shipping

Summary StatusStatus –Cavity design modifications have started Cavity body profile and analysis (RF, thermal [watering cool + possible LN operation], mechanical, vacuum, …) Cavity body profile and analysis (RF, thermal [watering cool + possible LN operation], mechanical, vacuum, …) Modified Be window designs, ready to place PO Modified Be window designs, ready to place PO Tuners and interface with RFCC moduleTuners and interface with RFCC module –Apply successful techniques developed from MUCOOL cavity R&D and look for possible simplifications Spinning, port extruding and post-processingSpinning, port extruding and post-processing –Re-qualify venders (spinning, e-beam welding, port extruding and post-processing) with our supervision US vendors: NIOWAVE, …US vendors: NIOWAVE, … HIT in ChinaHIT in China Brush-Wellman for Be windows Brush-Wellman for Be windows Toshiba for ceramic RF windows Toshiba for ceramic RF windows Design and Fabrication PlanDesign and Fabrication Plan –Design review ~ June 2008 (MICE CM21 at DL) –Schedule has been developed (~ by early 2010)