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Measurement of ejecta from normal incident hypervelocity impact on

机译:法向入射超高速撞击对射血的测量

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The National Aeronautics and Space Administration (NASA) continues to make progress toward long-term lunar habitation. Critical to the design of a lunar habitat is an understanding of the lunar surface environment. A subject for further definition is the lunar impact ejecta environment. The document NASA SP-8013 was developed for the Apollo program and is the latest definition of the ejecta environment. There is concern that NASA SP-8013 may over-estimate the lunar ejecta environment. NASA's Meteoroid Environment Office (MEO) has initiated several tasks to improve the accuracy of our understanding of the lunar surface ejecta environment. This paper reports the results of experiments on projectile impact into powered pumice targets, simulating unconsolidated lunar regolith. The Ames Vertical Gun Range (AVGR) was used to accelerate spherical Pyrex projectiles of 0.29g to velocities ranging between 2.5 and 5.18 km/s. Impact on the pumice target occurred at normal incidence. The ejected particles were detected by thin aluminum foil targets placed around the pumice target in a 0.5 Torr vacuum. A simplistic technique to characterize the ejected particles was formulated. Improvements to this technique will be discussed for implementation in future tests.
机译:美国国家航空航天局(NASA)在月球长期居住方面继续取得进展。对月球栖息地设计的关键是对月球表面环境的了解。进一步定义的主题是月球撞击喷射环境。 NASA SP-8013文件是为Apollo程序开发的,是弹出环境的最新定义。担心NASA SP-8013可能会高估月球射出环境。美国国家航空航天局(NASA)的流星环境办公室(MEO)发起了多项任务,以提高我们对月球表面喷射环境的理解的准确性。本文报告了模拟未合并月球重击的弹丸撞击动力浮石目标的实验结果。 Ames垂直火炮射击场(AVGR)用于将0.29g的球形Pyrex弹丸加速到2.5至5.18 km / s的速度。对浮石目标的影响发生在正常发病率下。喷射的颗粒由放置在0.5 Torr真空中的浮石靶周围的薄铝箔靶检测。制定了一种表征喷射颗粒的简单技术。将讨论对该技术的改进,以在将来的测试中实施。

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