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Experimental Investigation and Numerical Simulation of Porous Volcano Rock Hypervelocity Impact on Whipple Shield of Spacecrafts

机译:多孔火山岩超型对航天器奶盾的实验研究与数值模拟

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All spacecrafts in earth orbit are subject to hypervelocity impact by micro-meteoroids and space debris, which can in turn lead to significant damage and catastrophic failure of spacecraft. Porous volcano rock was adopted as one of micro-meteoroid material due to their similar physical and geometric features. Two-stage light gas gun experiments were carried out for a 6mm diameter volcano rock projectile impact on an Al-Whipple shield within the speed range from 1 km/s to 3 km/s. An ANSYS/LS-DYNA software was employed and justified by experimental results, in which a porous geometrical model was established for volcano rock projectile. The higher speed range was extended from 3 km/s to 10 km/s by numerical simulation. The results of experiments and numerical simulation indicated that major damage on rear wall of the Whipple shield impacted by volcano rock projectile is caused by the fragments of bumper of the shield, which is different from that of aluminum projectile. And 5.5km/s is the critical speed of a 6mm diameter volcano rock projectile impact on the Whipple shield investigated.
机译:地球轨道的所有航天器都受到微观环形和空间碎片的超细兴趣,这又可以导致宇宙飞船的显着损害和灾难性失效。由于其相似的物理和几何特征,采用多孔火山岩作为微观族材料之一。两阶段轻气炮进行实验上的Al-惠普尔屏蔽的速度范围内为1公里直径6mm的火山岩弹冲击/秒至3公里/秒。采用ANSYS / LS-DYNA软件并通过实验结果合理,其中为火山岩弹性建立了多孔几何模型。通过数值模拟将较高的速度范围从3km / s延伸至10km / s。实验结果和数值模拟结果表明,由火山岩弹射器影响的奶屏蔽后壁的重大损坏是由屏蔽泵的碎片引起的,这与铝射弹的碎片不同。 5.5km / s是对奶盾的6毫米直径的火山岩弹性射击的临界速度。

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