Li Tengda, Feng Gang, Du Chong, Zhang Pengxiang
Air and Missile Defense College, Air Force Engineering University, Xi'an 710051, China.
Materials (Basel). 2022 Aug 25;15(17):5851. doi: 10.3390/ma15175851.
The ablation and wear of the four-rail electromagnetic launcher during the working process will aggravate the damage of the armature and rail, and greatly affect the service life of the launcher. To effectively alleviate rail damage, this paper applies the copper-steel composite rail to the four-rail electromagnetic launcher and proposes a new four-rail electromagnetic launcher. Based on the quadrupole magnetic field theory, the physical model of the new four-rail electromagnetic launcher is established, and the electromagnetic characteristics of the ordinary and new launchers are compared and analyzed using the finite element method. On this basis, the influence of composite layer parameters on the electromagnetic characteristics of copper-steel composite quadrupole rail is explored. The study found that the new four-rail electromagnetic launcher can provide a better launch magnetic field environment for smart loads, and the current distribution of the armature and the rail contact surface is more uniform, which can effectively improve the contact condition between the armature and the rail. The composite layer parameters of copper-based composite rail will have a certain impact on electromagnetic characteristics, and copper-steel composite rail of appropriate proportions can be selected according to different needs. The model proposed in this paper has a certain degree of scientificity and rationality.
四轨电磁发射器在工作过程中的烧蚀和磨损会加剧电枢和轨道的损坏,极大地影响发射器的使用寿命。为有效减轻轨道损伤,本文将铜钢复合轨道应用于四轨电磁发射器,并提出了一种新型四轨电磁发射器。基于四极磁场理论,建立了新型四轨电磁发射器的物理模型,并采用有限元方法对普通发射器和新型发射器的电磁特性进行了比较分析。在此基础上,探讨了复合层参数对铜钢复合四极轨道电磁特性的影响。研究发现,新型四轨电磁发射器能够为智能负载提供更好的发射磁场环境,电枢与轨道接触面的电流分布更加均匀,能够有效改善电枢与轨道之间的接触状况。铜基复合轨道的复合层参数对电磁特性会有一定影响,可根据不同需求选择合适比例的铜钢复合轨道。本文提出的模型具有一定的科学性和合理性。