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A Gas-Actuated Projectile Launcher for High-Energy Impact Testing of Structures

机译:用于结构高能冲击试验的气体致动弹丸发射器

摘要

A gas-act,uated penetration device has been developed for high-energy impact testing of structures. The high-energy impact. t,estiiig is for experimental simulation of uncontained engine failures. The non-linear transient finite element, code LS-DYNA3D has been used in the numerical simula.tions of a titanium rectangular blade with a.n aluminum target, plate. Threshold velocities for different combinations of pitch and yaw angles of the impactor were obtained for the impactor-target, t8est configuration in the numerica.1 simulations. Complet,e penet,ration of the target plate was also simulat,ed numerically. Finally, limited comparison of analytical and experimental results is presented for complete penetration of the target by the impactor.
机译:已开发出一种气动式穿透装置,用于结构的高能冲击测试。高能量的影响。 t,estiiig用于不包含发动机故障的实验模拟。非线性瞬态有限元代码LS-DYNA3D已用于带有铝靶板的钛矩形叶片的数值模拟中。在数值a.1模拟中,针对撞击目标-t8est配置,获得了撞击器俯仰角和偏航角不同组合的阈值速度。还对目标板的完成,穿透率进行了数值模拟。最后,提出了有限的分析结果与实验结果的比较,以证明撞击器完全穿透了目标。

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