Theoretical-Experimental Study of the Interior Ballistics of an Electrothermal Accelerator of Macrobodies
- Authors: Vorob’ev A.A.1
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Affiliations:
- Peter the Great Military Academy of the Strategic Missile Troops
- Issue: Vol 59, No 4 (2018)
- Pages: 583-590
- Section: Article
- URL: https://journals.rcsi.science/0021-8944/article/view/161170
- DOI: https://doi.org/10.1134/S0021894418040028
- ID: 161170
Cite item
Abstract
A mathematical model for the interior ballistics of an electrothermal accelerator of macrobodies was developed which can be used to predict the projectile velocity for given values of the mass and size of the projectile, the electrodynamic parameters of the capacitive energy storage, and accelerator parameters. The problem of determining the projectile velocity was solved in a hydrodynamic formulation by numerical integration of the equations of motion, the energy conservation equation, and the caloric equation of state. In the case of neglecting the dynamically changing friction coefficient and the erosion of the electrodes, the calculation results differ considerably from the experimental data, but the model qualitatively describes the physical processes of interior ballistics of the electrothermal accelerator.
About the authors
A. A. Vorob’ev
Peter the Great Military Academy of the Strategic Missile Troops
Author for correspondence.
Email: vorobievall@mail.ru
Russian Federation, Balashikha, 143900