Cryogenic Design of the New High Field Magnet Test Facility at CERN

Author:

Benda V.,Pirotte O.,De Rijk G.,Bajko M.,Craen A. Vande,Perret Ph.,Hanzelka P.

Publisher

Elsevier BV

Subject

General Engineering

Reference10 articles.

1. Axensalva J., Benda V., Herblin L., Lamboy J. P., Tovar Gonzales A., Vullierme B., 2004, Cryogenic infrastructure for testing of LHC series superconducting magnets, ICEC20, Beijing, China.

2. Bajko M., Charrondiere M., Benda V., Giloux C., Thiesen H., New cryogenic test station at CERN for superconducting magnets and their components, ICEC24, Fukuoka, Japan.

3. Benda V., Dauvergne J. P., Haug F., Knoops S., Lebrun Ph., Momal F., Sergo V., Tavian L., Vullierme V., 1996. Upgrade of the cryogenic station for superfluid helium testing of prototype LHC superconducting magnets, ICEC16 Kitakyushu, Japan.

4. Benda V., 2014, EDMS 1337449, CERN.

5. Bon Mardion G., 1994, Cours de la formation a l’helium superfluid, Note TS-70-94-01.

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1. Status of the Top Plate and Anticryostat for High Field Cable Test Facility at Fermilab;IEEE Transactions on Applied Superconductivity;2024-08

2. Test Result of the Short Models MQXFS3 and MQXFS5 for the HL-LHC Upgrade;IEEE Transactions on Applied Superconductivity;2018-04

3. Upgrade of the cryogenic infrastructure of SM18, CERN main test facility for superconducting magnets and RF cavities;IOP Conference Series: Materials Science and Engineering;2017-12

4. Cryogenic test facility instrumentation with fiber optic and fiber optic sensors for testing superconducting accelerator magnets;IOP Conference Series: Materials Science and Engineering;2017-12

5. Upgrade of the CERN Superconducting Magnet Test Facility;IEEE Transactions on Applied Superconductivity;2017-06

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