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TY - CONF AU - Xu, T. AU - Ao, H. AU - Bird, B. AU - Bultman, N.K. AU - Casagrande, F. AU - Compton, C. AU - Davidson, K.D. AU - Elliott, K. AU - Facco, A. AU - Ganni, V. AU - Ganshyn, A. AU - Hartung, W. AU - Hosoyama, K. AU - Ikegami, M. AU - Kelly, M.P. AU - Knudsen, P. AU - Laxdal, R.E. AU - Lidia, S.M. AU - Metzgar, E.S. AU - Miller, S.J. AU - Morris, D.G. AU - Ostroumov, P.N. AU - Popielarski, J.T. AU - Popielarski, L. AU - Reaume, M.A. AU - Saito, K. AU - Shanab, S. AU - Shuptar, M. AU - Stark, S. AU - Victory, D.R. AU - Wei, J. AU - Wenstrom, J.D. AU - Wiseman, M. AU - Xu, M. AU - Xu, Y. AU - Yamazaki, Y. ED - Schaa, Volker RW ED - He, Yuan ED - Li, Lu ED - Zhao, Ning TI - Progress of FRIB SRF Production J2 - Proc. of SRF2017, Lanzhou, China, July 17-21, 2017 C1 - Lanzhou, China T2 - International Conference on RF Superconductivity T3 - 18 LA - english AB - The Facility for Rare Isotope Beams (FRIB), under construction at Michigan State University, will utilize a driver linac to accelerate stable ion beams from protons to uranium up to energies of >200 MeV per nucleon with a beam power of up to 400 kW. The FRIB linac consists of 46 cryomodules containing a total of 324 superconducting radio-frequency (SRF) resonators and 69 superconducting solenoids. The design of all six type cryomodules has been completed. The critical SRF components are tested as subsystem and validated in the pre-production cryomodules. The mass production of SRF cryomodules is underway. Here we report on the progress of the technical construction of FRIB superconducting linac. PB - JACoW CP - Geneva, Switzerland SP - 345 EP - 352 KW - ion KW - cavity KW - cryomodule KW - SRF KW - linac DA - 2018/01 PY - 2018 SN - 978-3-95450-191-5 DO - 10.18429/JACoW-SRF2017-TUXAA03 UR - http://jacow.org/srf2017/papers/tuxaa03.pdf ER -