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PPPS-2013: Multi-physics coupling field analysis of the electromagnetic rail-gun barrel

机译:PPPS-2013:电磁轨道炮枪管的多物理场耦合分析

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, so the different aspects and their interaction of the system should be considered when we analyze the performance of the barrel during the launching process. In this research, utilized finite element method to simulate the process that the armature squeezes the barrel, and the three-dimension finite element model of the barrel and the armature were established in the finite element analysis software ANSYS. The finite element models for eddy current heat, Joule heat and friction heat are established to simulate the transient thermal distribution, and the temperature distribution characteristic was analyzed. The magnetism-structure directly coupling analysis and the magnetism-thermal-structure analysis of the barrel were accomplished. Based on the analysis above, the stress and strain distribution, the magnetic field distribution and temperature distribution were obtained. Comparing the results of the two kinds of analyses above, how load distribution influences the displacement and the stress of the electromagnetic rail-gun, structure deformation influence the magnetic field and temperature field influence the structure were acquired. Finally, the research analysed the effect of the intensity and stiffness of the barrel under different current intensity, and the maximum current intensity that the rail can sustain with specified materials and structure was obtained, which has a reference value for further research.
机译:,因此在分析发射过程中炮管的性能时应考虑系统的不同方面及其相互作用。本研究利用有限元方法模拟了电枢挤压机筒的过程,并在有限元分析软件ANSYS中建立了机筒和电枢的三维有限元模型。建立了涡流热,焦耳热和摩擦热的有限元模型,以模拟瞬态热分布,并对温度分布特性进行了分析。完成了机筒的磁结构直接耦合分析和磁热结构分析。在以上分析的基础上,获得了应力和应变分布,磁场分布和温度分布。比较以上两种分析的结果,得出了载荷分布如何影响电磁轨道炮的位移和应力,结构变形如何影响磁场,温度场如何影响结构。最后,研究分析了不同电流强度下筒体强度和刚度的影响,获得了在特定材料和结构下钢轨可以承受的最大电流强度,为进一步研究提供参考。

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