Paper |
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MOPOB06 |
MAX IV and Solaris Linac Magnets Production Series Measurement Results |
79 |
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- M.A.G. Johansson
MAX IV Laboratory, Lund University, Lund, Sweden
- R. Nietubyć
NCBJ, Świerk/Otwock, Poland
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The linacs of the MAX IV and Solaris synchrotron radiation light sources, currently in operation in Lund, Sweden, and Kraków, Poland, use various conventional magnet designs. The production series of totally more than 100 magnets of more than 10 types or variants, which were all outsourced to industry, with combined orders for the types that are common to both MAX IV and Solaris, were completed in 2013 with mechanical and magnetic QA conforming to specifications. This article presents an overview of the different magnet types installed in these machines, and mechanical and magnetic measurement results of the full production series.
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Poster MOPOB06 [2.535 MB]
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-NAPAC2016-MOPOB06
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THA1CO03 |
MAX IV and Solaris 1.5 GeV Storage Rings Magnet Block Production Series Measurement Results |
1058 |
MOPOB80 |
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- M.A.G. Johansson
MAX IV Laboratory, Lund University, Lund, Sweden
- K. Karaś
Solaris National Synchrotron Radiation Centre, Jagiellonian University, Kraków, Poland
- R. Nietubyć
NCBJ, Świerk/Otwock, Poland
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The magnet design of the MAX IV and Solaris 1.5 GeV storage rings replaces the conventional support girder + discrete magnets scheme of previous third-generation synchrotron radiation light sources with an integrated design having several consecutive magnet elements precision-machined out of a common solid iron block, with mechanical tolerances of ±0.02 mm over the 4.5 m block length. The production series of 12+12 integrated magnet block units, which was totally outsourced to industry, was completed in the spring of 2015, with mechanical and magnetic QA conforming to specifications. This article presents mechanical and magnetic field measurement results of the full production series.
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Slides THA1CO03 [7.517 MB]
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Poster THA1CO03 [1.117 MB]
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-NAPAC2016-THA1CO03
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Export • |
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