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The influence of the rail material on the multishot performance of the rapid fire railgun (RAFIRA)

机译:轨道材料对快速火灾轨道的多机动性能的影响(Rafira)

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The Rapid Fire Railgun (Rafira), a unique railgun which can be operated in multishot mode is well suited for the study of the influence of different rail materials on velocity and electrical contact of the armature and/or the wear of different rail materials. That is why we performed experiments with Rafira operated in multi shot mode (fire rate of 50 Hz), using different rail materials (CuCr and Dural) and varying shot energy. For these experiments, the shot energy for Rafira was raised, for the first time, up to the maximum energy at disposal of 1.45 MJ per shot with armature masses of over 100 g. In this way, we were able to show that the influence of the rail material depends on the applied shot energy: for low shot energies (< 1MJ), CuCr rails show better results in terms of velocities and exit times of the armatures. This effect vanishes for high shot energies (> 1MJ). Whereas in terms of electrical contact, Dural rails show both less erosion and the capability to maintain a solid sliding contact until shot out for all energies applied.
机译:快速火灾Railgun(Rafira),一种可以以多泡沫模式运行的独特轨道轨道,非常适合研究不同轨道材料对电枢和/或不同轨道材料磨损的速度和电接触的影响。这就是为什么我们使用不同的轨道材料(CUCR和DURTUR)和不同的射击能量以多射击模式(50 Hz的火力率)进行的Rafira进行实验。对于这些实验,首次提高了Rafira的射击能量,达到了每次射击的1.45 MJ,电枢质量超过100克的最高能量。通过这种方式,我们能够表明轨道材料的影响取决于所施加的射击能量:对于低射击能量(<1MJ),CUCR轨道在动手的速度和出口时间方面表现出更好的结果。这种效果消失了高射击能量(> 1MJ)。而在电接触方面,多云轨道显示出较小的腐蚀和保持固体滑动接触的能力,直到施加所有能量。

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