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The Velocity and Efficiency Limiting Effects of Magnetic Diffusion in Railgun Sliding Contacts

机译:磁力扩散在轨道滑动触点中的速度和效率限制效应

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The authors identify and characterize a velocity and efficiency limiting effect called contact velocity skin effect (VSEC) which occurs in the interface of a railgun's sliding contact. Despite enormous contact forces, the armature will remain separated from the rail by a thin adsorbed layer, on the order of 10 to 15 angstroms in this investigation. Electrical conduction through the layer is via quantum tunneling which is more resistive than classical conduction through the conductor. A comprehensive theory to account VSEC is presented and is applicable to all constant gradient electromagnetic launchers. The theory not only accounts for the velocity-limit effect, but also predicts a maximum efficiency. Theoretical parameters include the inductance gradient, system resistance, projectile velocity, and sliding contact area. Theoretical predictions are compared to experimental data from a conventional and an augmented railgun. The augmented railgun is a 3-turn augmented system with 40 mm bore × 750 mm length typically operating at 250 kA peak current with a projectile velocity of 300 m/s. The conventional railgun is 40 mm bore × 4000 mm length which typically operates at 850 kA with a projectile velocity of 1600 m/s. The characterization of VSEC predicts velocity saturation and efficiency roll-off in electromagnetic launchers and provides new insights into EML operation and physics especially with regard to the armature and its contacts.
机译:作者识别并表征称为接触速度皮肤效果(VSEC)的速度和效率限制效果,该效果发生在轨道滑动触点的界面中。尽管接触力具有巨大的接触力,但电枢将通过薄吸附层与轨道分离,在该研究中约为10至15埃的尺寸。通过层的电导通过量子隧道,其比通过导体的经典传导更电阻。介绍了概述VSEC的全面理论,适用于所有恒定梯度电磁发射器。该理论不仅占速度限制效应,还可以预测最大效率。理论参数包括电感梯度,系统电阻,弹丸速度和滑动接触面积。将理论预测与来自传统和增强铁路的实验数据进行比较。增强的Railgun是一个3圈增强系统,具有40毫米×750 mm的长度,通常在250 ka峰值电流下,弹丸速度为300 m / s。传统的RailgUn是40mm×4000mm的长度,其通常在850ka下操作,射弹速度为1600 m / s。 VSEC的表征在电磁发射器中预测速度饱和度和效率滚动,并为EML操作和物理学提供了新的见解,特别是关于电枢及其接触。

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