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Distribution Characteristics of Electromagnetic Field and Temperature Field of Different Caliber Electromagnetic Railguns

机译:不同口径电磁轨道电磁场和温度场的分布特性

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摘要

To explore the influence of different caliber on the electromagnetic field and temperature field of railguns, an electromagnetic-thermal coupling analysis is carried out on three kinds of caliber railguns by Maxwell 3-D and ANSYS Workbench. The current density and temperature distribution on the contact surface between armature and rails of three kinds of caliber railguns are obtained, respectively. The calculation results show that the maximum current density and temperature of the small and medium caliber railguns appear on the contact surface, but the large caliber railgun appears to the armature throat. As the caliber increases, the current density and temperature on the contact surface have decreased significantly. The maximum current density of medium and large caliber railguns decrease by 13.7% and 35.5% compared with small caliber railgun, and the maximum temperature decrease by 38.8% and 50.1%, respectively. The temperature of the small caliber railgun rises fastest, which is 1.87 and 1.61 times that of the medium and large caliber railguns, respectively. The results can provide an important basis for the design of large caliber electromagnetic railgun.
机译:为了探讨不同口径对轨道电磁场和温度场的影响,通过Maxwell 3-D和Ansys Workbench在三种口径轨道上进行电磁热耦合分析。分别获得了三种口径轨道轨道的电枢和轨道之间的电流密度和温度分布。计算结果表明,中小口径轨道轨道的最大电流密度和温度出现在接触面上,但大口径轨道出现在电枢喉部。由于口径增加,接触表面上的电流密度和温度显着降低。与小口径轨道GUN相比,培养基和大口径轨道的最大电流密度降低了13.7%和35.5%,最高温度分别降低了38.8%和50.1%。小口径轨道的温度升高,分别为1.87和1.87和1.61倍的中型和大口径轨道轨道。结果可以为大口径电磁轨道设计提供重要依据。

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