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The design and structural analysis of a coilgun for low acceleration of heavy loads

机译:低载重加速度线圈枪的设计与结构分析

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Variants of the coilgun are considered for use in microgravity experimental research. Subscale point designs are described for a payload of 50 kg and muzzle velocity of 30 to 40 m/s. A multiphase linear induction coilgun (LIL) (one stage with six coils and constant pitch) and a 4-stage reconnection coilgun were designed and analyzed. The results show that the requirement of very low acceleration is difficult, because the acceleration fluctuation of both designs is large. But differences between them are revealed. The induced current in the armature of the reconnection gun distributes much more unevenly than in the LIL, and this will cause mechanical and thermal problems. The efficiency of energy transformation in the connection gun is better than LIL of this specific design. Mechanical structural analysis results of the reconnection coilgun are also presented. The results show the coils are structurally sound. The armature is a nonlinear problem of both material and geometry so the available code Super SAP is adopted. However, the armature requires structural reinforcement.
机译:螺旋枪的变体被认为可用于微重力实验研究。描述了有效载荷为50 kg,枪口速度为30至40 m / s的子刻度点设计。设计并分析了多相线性感应线圈枪(LIL)(一级具有六个线圈和恒定螺距)和四级重新连接线圈枪。结果表明,由于两种设计的加速度波动都很大,因此很难要求非常低的加速度。但是它们之间的差异被揭示出来了。与LIL相比,重新连接枪电枢中的感应电流分布不均匀得多,这将引起机械和热问题。连接枪中能量转换的效率优于此特定设计的LIL。还介绍了重新连接线圈枪的机械结构分析结果。结果表明,线圈在结构上是合理的。电枢是材料和几何形状的非线性问题,因此采用了可用代码Super SAP。但是,电枢需要结构加强。

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