TWO DIPOLE MAGNETIC SYSTEMS FOR TECHNOLOGICAL ELECTRON ACCELERATOR
V.А. Bovda, А.М. Bovda, I.S. Guk, А.N. Dovbnya, S.G. Kononenko, V.N. Lyashchenko, Andriy Mytsykov, L.V. Onishchenko
Abstract
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V.А. Bovda, А.М. Bovda, I.S. Guk, А.N. Dovbnya, S.G. Kononenko, V.N. Lyashchenko, Andriy Mytsykov, L.V. Onishchenko
Abstract
Open-access reader
For a 10 MeV technological accelerator, a dipole magnet with a permanent magnetic field was created using the SmCo alloy. The maximum magnetic field in the magnet gap was 0.3 T. The magnet is designed to measure the energy of the beam and to adjust the accelerator for a given energy. For a linear accelerator with an energy of 23 MeV, a dipole magnet based on the Nd-Fe-B alloy was developed and fabricated. It was designed to rotate the electron beam at a 90 degrees. The magnetic field in the dipole magnet along the path of the beam was 0.5 T. The effective length of the magnet was 242 mm.
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For a 10 MeV technological accelerator, a dipole magnet with a permanent magnetic field was created using the SmCo alloy. The maximum magnetic field in the magnet gap was 0.3 T. The magnet is designed to measure the energy of the beam and to adjust the accelerator for a given energy. For a linear accelerator with an energy of 23 MeV, a dipole magnet based on the Nd-Fe-B alloy was developed and fabricated. It was designed to rotate the electron beam at a 90 degrees. The magnetic field in the dipole magnet along the path of the beam was 0.5 T. The effective length of the magnet was 242 mm.
Key concepts: Magnet, Dipole magnet, Force between magnets, Dipole, Physics, Magnetic field, Electron, Cathode ray