3D-Interaction of the electrically conductive throwing body with a magnetic barrier of the measuring frame of an intrabarrel speed sensor | Izvestiya vuzov. Fizika. 2022. № 12. DOI: 10.17223/00213411/65/12/9

3D-Interaction of the electrically conductive throwing body with a magnetic barrier of the measuring frame of an intrabarrel speed sensor

The methods of mathematical modeling investigated the effect of distortion of the magnetic field of the induction frame for the magnitude and shape of its signal. The electrically conductive body is assumed to be non-magnetic, and its acceleration in the channel is carried out either in the free throwing mode or in the pallet from non-electro-wire material. The results of calculations of 3D-distribution of the magnetic field in the measuring gap of the frame under different positions of the body of the body are presented. Magnetic gap resistance, values and shapes generated signal frames are calculated. The influence of the shape and size of the molded bodies on the magnitude and form of the electrical signals of the sensor is shown.

Download file
Counter downloads: 24

Keywords

speed sensor, throwing body, channel accelerator, magnetic barrier, measuring coil, signal

Authors

NameOrganizationE-mail
Mekhanich A.A.Research Institute of Applied Mathematics and Mechanics of Tomsk State Universitykireeva_aa@mail.ru
Sinyaev S.V.Research Institute of Applied Mathematics and Mechanics of Tomsk State Universityssv@niipmm.tsu.ru
Yashchuk A.A.Research Institute of Applied Mathematics and Mechanics of Tomsk State Universityrainbow@niipmm.tsu.ru
Всего: 3

References

Комаровский Л.В. // Численные методы механики сплошной среды. - 1976. - Т. 7. - № 6. - С. 74-86.
Bagdanoff D.W., Knowlen C., Murakami D., Stronich I. // AIAA Journal. - 1990. - V. 28(11). - P. 1942-1944.
Кульпин В.И., Синяев С.В., Христенко Ю.Ф. Датчик положения и скорости перемещения быстродвижущихся тел // Патент РФ № 2193207. - 2002.
Синяев С.В., Христенко Ю.Ф., Кульпин В.И. // Современные методы проектирования и отработки ракетно-артиллерийского вооружения. - Саров: РФЯЦ-ВНИИЭФ, 2004. - Т. 2. - С. 688-694.
Кнопфель Г. Сверхсильные импульсные магнитные поля. - М.: Мир, 1972. - 391 с.
Шерклиф Дж. Курс магнитной гидродинамики. - М.: Мир, 1967. - 320 с.
Мингалев Б.С. // Электрофизическая аппаратура. Т. 3. - М.: Атомиздат, 1965. - С. 121-137.
Басов К.А. ANSYS: справочник пользователя. - М.: ДМК Пресс, 2014.
Bathe K.J. Finite Element Procedures. - Englewood Cliffs, N.J.: Prentice-Hall, 1996. - 1037 p.
Сидоров А.Д., Корольков Л.В., Моисеев Д.М. и др. // Технические науки - от теории к практике: сб. статей по материалам XLII междунар. науч.-технич. конф. - Новосибирск: Изд-во АНС «СибАК», 2015. - № 1(38). - С. 111-120.
 3D-Interaction of the electrically conductive throwing body with a magnetic barrier of the measuring frame of an intrabarrel speed sensor | Izvestiya vuzov. Fizika. 2022. № 12. DOI: 10.17223/00213411/65/12/9

3D-Interaction of the electrically conductive throwing body with a magnetic barrier of the measuring frame of an intrabarrel speed sensor | Izvestiya vuzov. Fizika. 2022. № 12. DOI: 10.17223/00213411/65/12/9