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Projectiles With Rod-Shaped Payloads for the PEGASUS Railgun

机译:用于PEGASUS轨道炮的带杆状有效载荷的弹丸

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The PEGASUS railgun facility at the French-German Research Institute is equipped with a 6-m launcher with a caliber of 40 mmtimes40 mm. An electric energy with a maximum value of 10 MJ can be supplied by a high-power capacitive storage. The current is injected at 13 locations distributed along the barrel. Projectiles or launch packages in the mass range of 1 to 4 kg were designed in order to obtain both a good electrical and mechanical performance and tested with the PEGASUS facility. The sabot consists of a metal fiber brush armature embedded in an insulating low-density structure made of a glass/epoxy composite material. In the mass range of about 0.3 kg these sabots equipped with eight metal-fiber brushes (without payload) are able to achieve muzzle velocities up to 2200 m/s without any damage to the glass/epoxy structure due to the acceleration process. The tungsten alloy rods used as payload were placed in front of the sabot, i.e., they were screwed or bonded into the composite structure. A structural analysis of the sabot containing the tungsten rod was performed with the mechanical dynamic FE-Code LSDYNA3D. The calculated three-dimensional stress state inside the sabot composite structure shows that the critical stresses are essentially located in the interface region of the bore for the rod. Solutions are proposed to reduce the high stresses and transferred to the projectile design. Experimental observations using flash radiographs taken at the muzzle of the railgun show that the payload rods can be launched correctly
机译:法国-德国研究所的PEGASUS轨道炮设施配备了6米发射器,其口径为40毫米x 40毫米。大功率电容性存储可以提供最大10 MJ的电能。电流在沿枪管分布的13个位置注入。为了获得良好的电气和机械性能,设计了质量范围为1至4 kg的射弹或发射包,并使用了PEGASUS设备进行了测试。剑杆由嵌入在由玻璃/环氧树脂复合材料制成的绝缘低密度结构中的金属纤维刷电枢组成。在约0.3千克的质量范围内,这些装有8个金属纤维刷(无有效载荷)的木bot能够达到高达2200 m / s的口速,而不会由于加速过程而损坏玻璃/环氧树脂结构。将用作有效载荷的钨合金棒放置在木bot的前面,即将它们拧紧或粘结到复合结构中。使用机械动态FE代码LSDYNA3D对包含钨棒的木bot进行结构分析。算盘复合结构内部的三维应力状态表明,临界应力基本上位于杆孔的界面区域。提出了减少高应力的解决方案,并将其转移到弹丸设计中。使用在电磁炮的枪口拍摄的射线照相照片进行的实验观察表明,有效载荷杆可以正确发射

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