FIELD: aerospace engineering.
SUBSTANCE: producing a neutron beam at a synchrocyclotron and a device for its implementation, which can be used for neutron radiation exposure of an electronic component base and other aerospace objects and testing their reliability under conditions equivalent to atmospheric and cosmic neutron radiation. To obtain a continuous neutron beam, a preliminary transformation of protons accelerated to an energy of 1000 MeV into protons circulating in the form of toroids is carried out, followed by their axial pitch using a two-electrode electric deflector to deflect protons onto a neutron-forming target. The device contains a radio pulse generator with a filling frequency equal to the frequency of axial oscillations of protons in the toroid, connected to a two-electrode deflector, and an associated frequency and amplitude modulation unit for the radio pulse generator, as well as a dee frequency selector and its connection with the radio pulse generator and the dee high-frequency power generator.
EFFECT: continuous neutron beam with an n-beam utilization factor close to one.
2 cl, 2 dwg
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SYNCHROCYCLOTRON PROTON ENERGY MONOCHROMATIZATION METHOD AND DEVICE FOR ITS IMPLEMENTATION | 2022 |
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ISOCHRONOUS CYCLOTRON | 0 |
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Authors
Dates
2023-03-01—Published
2022-10-31—Filed