首页> 外文会议>Conference of the American Physical Society Topical Group on Shock Compression of Condensed Matter >BURST PRESSURE FAILURE OF TITANIUM TANKS DAMAGED BY SECONDARY PLUMES FROM HYPERVELOCITY IMPACTS ON ALUMINUM SHIELDS
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BURST PRESSURE FAILURE OF TITANIUM TANKS DAMAGED BY SECONDARY PLUMES FROM HYPERVELOCITY IMPACTS ON ALUMINUM SHIELDS

机译:二次羽毛损坏的钛坦克损坏铝屏蔽的超高度影响

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Metallic pressure tanks used in space missions are inherently vulnerable to hypervelocity impacts from micrometeoroids and orbital debris; thereby knowledge of impact damage and its effect on the tank integrity is crucial to a spacecraft risk assessment. This paper describes tests that have been performed to assess the effects of hypervelocity impact (HVI) damage on Titanium alloy (Ti-6Al-4V) pressure vessels burst pressure and characteristics. The tests consisted of a pair of HVI impact tests on water-filled Ti-6Al-4V tanks (water being used as a surrogate to the actual propellant) and subsequent burst tests as well as a burst test on an undamaged control tank. The tanks were placed behind Aluminum (Al) shields and then each was impacted with a 7 km/s projectile. The resulting impact debris plumes partially penetrated the Ti-6Al-4V tank surfaces resulting in a distribution of craters. During the burst tests, the tank that failed at a lower burst pressure did appear to have the failure initiating at a crater site with observed spall cracks. A fracture mechanics analysis showed that the tanks failure at the impact location may have been due to a spall crack that formed upon impact of a fragmentation on the Titanium surface. This result was corroborated with a finite element analysis from calculated Von-Mises and hoop stresses.
机译:空间任务中使用的金属压力罐本身易受微观物体和轨道碎片的超胶质冲击;从而了解冲击损伤及其对坦克完整性的影响对于航天器风险评估至关重要。本文介绍了已经进行的测试,以评估超胶质冲击(HVI)损伤对钛合金(Ti-6Al-4V)压力容器突发和特性的影响。该试验包括在充满水的Ti-6AL-4V罐上的一对HVI冲击试验(用作实际推进剂的替代品)和随后的突发测试以及在未损坏的控制箱上的突发测试。将罐体放在铝制(Al)屏蔽后面,然后用7公里/秒的弹丸影响。由此产生的冲击碎片衬砌部分穿透Ti-6Al-4V罐表面,从而产生了陨石坑的分布。在突发测试期间,在较低的突发压力下失效的罐确实似乎具有在火山口位点发起的故障,观察到的Spall裂缝。裂缝力学分析表明,由于在钛表面上的碎裂的影响时形成的冲击位置处的罐失效可能是由于形成的碎裂。通过计算出的von-mises和箍应力的有限元分析,该结果得到了证实。

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