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Research on the Sliding Electrical Contact of the Rapid Fire Railgun

机译:快速射击火炮的滑动电触点研究

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The sliding electrical contact between the armature and the rails is affected by the high driving current and the friction heating during the launching process, especially in high fire rate applications. The contact performance is closely related to the impedance between the armature and the rails. A rapid fire railgun was designed for this paper of the sliding electrical contact. The pulsed power system consists of ten 100 kJ pulse forming units with a total stored energy of 1 MJ, and the length of the launcher is 1310 mm with a caliber size of 18$,times,$ 18 mm. Two types of armatures are adopted, a C-shaped armature and a double C-shaped armature. Two 5 g armatures can be launched at a frequency of 166 Hz with a muzzle speed of 800 m/s. The effect of contact impedance by the temperature rise can be calculated approximately with heating. Experimental results show that the contact impedance is seriously affected by the electromagnetic force and the contact temperature; the contact impedance of the second armature is 0.8–2.6 ${rm m}Omega$, which is higher than that of the first armature (0.2–0.3 ${rm m}Omega$).
机译:在发射过程中,特别是在高射速应用中,电枢与导轨之间的滑动电接触会受到高驱动电流和摩擦加热的影响。接触性能与电枢和铁轨之间的阻抗密切相关。本文为滑动电触点设计了一种快速火炮。脉冲电源系统由十个100 kJ脉冲形成单元组成,总存储能量为1 MJ,发射器的长度为1310 mm,口径大小为18 $,times,$ 18毫米。采用两种类型的电枢,C形电枢和双C形电枢。可以以166 Hz的频率发射两个5 g电枢,枪口速度为800 m / s。可以通过加热近似计算出温度升高引起的接触阻抗的影响。实验结果表明,接触阻抗受到电磁力和接触温度的严重影响;第二个电枢的接触阻抗为0.8-2.6 $ {rm m} Omega $ ,高于第二个电枢的接触阻抗。第一个衔铁(0.2-0.3 $ {rm m} Omega $ )。

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