Affiliation:
1. The School of Electrical and Control Engineering, Shaanxi University of Science and Technology, Xi’an 710021, China
Abstract
In order to enhance the initial velocity and energy conversion efficiency of multi-stage synchronous induction coil launchers, the direction of coil energization for the drive coils is studied. There are typically two energization methods for multi-stage launching devices: (1) PP (Positive-Positive), where positive current is applied to all drive coils, and (2) PN (Positive-Negative), where currents in opposite directions are alternately applied to the drive coils. A finite element model of a four-stage coil launcher is established in ANSYS2022R2, and the acceleration effects of the armature under different inter-stage distances are analyzed for two energization methods. The study reveals that the PN configuration does not always result in higher armature velocities compared to the PP configuration under different inter-stage distances. The theoretical explanation is provided for the variations in the forces exerted by the previous and next drive coils on the armature during the acceleration process. It is found that the magnitude of the induced current in the previous and next drive coils during the launch process is influenced by the inter-stage distance, which in turn affects the electromagnetic thrust coupled with the armature. Thus, the method of determining the direction of current in the launching device coil is obtained.
Funder
Shaanxi University of Science and Technology
Anhui University
Reference18 articles.
1. Application and development of power electronic technology in electromagnetic launch system;Ma;Trans. China Electrotech. Soc.,2016
2. Research progress of electromagnetic launch technology;Ma;IEEE Trans. Plasma Sci.,2019
3. Optimization design of electromagnetic induction coil firing system;Zhang;Trans. China Electrotech. Soc.,2021
4. Investigation of synchronous induction coilgun with stepped coil launcher and stepped armature;Lu;IEEE Trans. Plasma Sci.,2020
5. Shielding and optimization of high magnetic field in multistage synchronous induction coil launcher armature;Guan;Trans. China Electrotech. Soc.,2020