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Performance of Different Metal-Foam Stuffed Whipple Shield against Hypervelocity Impact of Space Debris

机译:不同金属泡沫填充的波纹盾牌抗空间碎片超高速撞击的性能

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Hypervelocity impacts on spacecraft in low earth orbit by meteoroids and space debris poses a threat to space missions, and the use of a shield can significantly decrease the probability of a catastrophic failure. Tests have identified that metallic foams have a good shielding performance against hypervelocity impact by micro-meteoroids and orbital debris. A metal-foam stuffed Whipple shield was presented under the concept of light-weight shield structure. A meso-structure model of geometry for metallic foams was set up simulating their manufacturing process and validated by comparison with experimental results using own SPH code. Three base materials of foam, including Al7075-T651, Ti and Al ZL102, were researched for their performances as stuff of shield by means of numerical simulation. The results indicated that different base materials show the best shield performance at different impact speeds with other conditions the same. The foam of Al ZL102 stuffed can cause the strongest radial dispersion of the secondary debris cloud and is more likely to provide the best shield performance, which is proved at the higher part of the speed range investigated.
机译:流星体和空间碎片对低地球轨道航天器的超高速影响对空间飞行任务构成威胁,并且使用防护罩可以显着降低灾难性故障的可能性。测试已经确定,金属泡沫对微流星体和轨道碎片的超高速冲击具有良好的屏蔽性能。在轻型屏蔽结构的概念下,提出了一种金属泡沫填充的Whipple屏蔽。建立了金属泡沫的介观几何结构模型,以模拟其制造过程,并通过使用自己的SPH代码与实验结果进行比较进行了验证。通过数值模拟研究了包括Al7075-T651,Ti和Al ZL102在内的三种泡沫材料的防护性能。结果表明,在其他条件相同的情况下,不同的基材在不同的冲击速度下表现出最佳的屏蔽性能。填充的Al ZL102泡沫可引起次生碎屑云的径向扩散最强,并且更有可能提供最佳的屏蔽性能,这在所研究的速度范围的较高部分得到了证明。

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