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Velocity-induced current profiles inside the rails of an electric launcher

机译:电动发射器轨道内部的速度感应电流分布

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Previous investigations showed that an array of novel CMR-B-scalar sensors based on the Colossal Magnetoresistance effect can be used to measure the magnetic field distribution in the vicinity of the rails of a railgun. However, the data obtained suffered from electromagnetic interference. Therefore, the measurement system was considerably improved with respect to the signal quality. In this publication the results obtained during the dynamic operation of the ISL railgun RAFIRA are presented. The magnetic field distribution in the vicinity of the rails was measured at different armature velocities. Additional information was obtained using high-speed camera snapshots. The experimental results are compared with simulations performed with the finite element code COMSOL Multiphysics. In particular, the influence of the armature current on the measurements is discussed. It is concluded that the magnetic field distribution in the vicinity of the rails clearly indicates an increased current concentration in the rear part of the armature-rail contact interface. Moreover, the current concentration depends on the speed of the armature. Velocitydependent skin depths at the surface of aluminum (Dural) rails for projectile velocities ranging between 750 m/s and 1500 m/s are given.
机译:先前的研究表明,基于巨磁阻效应的新型CMR-B标量传感器阵列可用于测量轨道炮轨道附近的磁场分布。但是,获得的数据遭受电磁干扰。因此,测量系统在信号质量方面得到了很大的改善。在该出版物中,介绍了在ISL轨道炮RAFIRA的动态操作过程中获得的结果。在不同电枢速度下测量铁轨附近的磁场分布。使用高速相机快照获得了更多信息。将实验结果与使用有限元代码COMSOL Multiphysics进行的仿真进行比较。特别地,讨论了电枢电流对测量的影响。结论是,铁轨附近的磁场分布清楚地表明电枢-铁轨接触界面后部的电流集中度增加。此外,电流集中度取决于电枢的速度。给出了铝(硬脑膜)导轨表面速度的趋肤深度,其射弹速度介于750 m / s和1500 m / s之间。

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