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首页> 外文期刊>International journal of impact engineering >Railgun experiment and computer simulation of hypervelocity impact of lexan projectile on aluminum target
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Railgun experiment and computer simulation of hypervelocity impact of lexan projectile on aluminum target

机译:Lexan弹丸对铝靶的超高速冲击的Railgun实验和计算机模拟。

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摘要

Results of hypervelocity impact tests at an electromagnetic launcher with plasma armature are described. The tests were performed with a thick duralumin disk of 80-100 mm diameter and of 40 mm height impacted by a lexan cylinder of 1.5-3 g mass. The projectile velocity amounted to 4-5.5 km/s. The launcher operational characteristics are described. In the tests, various configurations of the target fracture were obtained including cratering and spall cracks, disks and cones. The computer simulations were accomplished by means of a 2D axisymmetrical SPH code using interparticle contact algorithms. In these algorithms, stresses and velocity at the contact points of Lagrangian particles are computed by the linear Riemann solver. For description of material failure, a model based on a threshold stress criterion was used. The main features of material distribution and target fracture are reproduced in simulations.
机译:描述了在具有等离子衔铁的电磁发射器上进行的超高速冲击测试的结果。用直径为80-100 mm,高度为40 mm的厚硬质铝膜片在1.5-3 g质量的lexan圆柱体的冲击下进行测试。弹丸速度为4-5.5 km / s。描述了发射器的操作特性。在测试中,获得了目标裂缝的各种构造,包括缩孔和剥落裂纹,圆盘和圆锥体。通过使用轴间接触算法的2D轴对称SPH代码完成计算机模拟。在这些算法中,拉格朗日粒子接触点处的应力和速度是由线性Riemann求解器计算的。为了描述材料破坏,使用了基于阈值应力准则的模型。模拟中再现了材料分布和目标裂缝的主要特征。

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