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Morphology and Physical Characteristics of Apollo 17 Dust Particles

机译:阿波罗17号尘埃颗粒的形态和物理特征

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From the experiences during the Apollo missions, it is clear that the lunar dust (<20 μm portion of regolith) was deleterious: causing seal failures, particularly to the rock boxes sealed at 10~(-12) torr; abrasively cutting through fabric layers; scratching of astronauts’ sun visors; contaminating the breathing air in the lunar modules, etc. Because of these unusual and extreme properties of lunar dust, particularly as they apply to the toxicological effects on astronauts, methods for abatement of lunar dust must be addressed before any human presence on the Moon can be fully evaluated. As part of this endeavor, we have conducted a morphological (shape, size, abundance) study of Apollo 17 dust sample 70051. It was determined that the dust particles consist mainly of impact-produced glass, with complicated morphologies, extensive surface areas per grain, and sharp, jagged edges. Importantly, many grains contain elaborate vesicular textures, representing minute agglutinates. These data have profound implications for dust mitigation and in-situ resource utilization on the Moon.
机译:从阿波罗任务期间的经验中可以明显看出,月尘(重碎石部分<20μm)是有害的:造成密封失效,特别是密封在10〜(-12)托的岩石箱;磨蚀性地切穿织物层;刮伤宇航员的遮阳板;由于月尘的这些异常和极端特性,特别是因为它们具有对宇航员的毒理作用,因此必须解决月球尘的消除方法,然后人类才能登上月球。得到充分评估。作为这项工作的一部分,我们对Apollo 17灰尘样品70051进行了形态学(形状,大小,丰度)研究。确定该灰尘颗粒主要由冲击产生的玻璃组成,形态复杂,每个晶粒的表面积大以及尖锐的锯齿状边缘。重要的是,许多谷物都包含精心制作的囊泡质地,代表着微小的凝集物。这些数据对减轻月球上的粉尘和现场资源利用具有深远的意义。

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