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Some Expected Mechanical Characteristics of Lunar Dust: A Geological View

机译:预期的月尘力学特征:地质学观点

摘要

The engineering properties of the lunar regolith reflect aspects of the original parent rock and the consequences of hypervelocity meteor bombardment. Compared to the Earth the geologic nature of the lunar regolith is quite distinct. On scales relevant to machinery, heterogeneity with respect to size and composition is much higher. But the total range in composition is much more restricted. Both facts have implications for predictions of properties, such as abrasion, which will be required by design engineers for constructing equipment for lunar use. Abrasion is related to hardness and hardness is a commonly measured property for both minerals and engineering materials. Although different hardness scales are routinely employed for minerals and engineering materials, a significant amount of literature is available relating the two. In this paper we discuss how to relate hardness to abrasion for the design of lunar equipment. We also indicate how abundant the various mineral phases are and typical size distributions for lunar regolith.
机译:月球巨石的工程特性反映了原始母岩的各个方面以及超高速流星轰击的后果。与地球相比,月球巨石的地质性质非常不同。在与机械相关的规模上,尺寸和组成方面的异质性要高得多。但是组成的总范围受到更多限制。这两个事实都对性能(例如磨损)的预测有影响,设计工程师在构造用于月球使用的设备时将需要这些预测。磨损与硬度有关,硬度是矿物质和工程材料的常用测量属性。尽管矿物和工程材料通常采用不同的硬度标度,但有关这两者的文献很多。在本文中,我们讨论了在登月设备设计中如何将硬度与磨损联系起来。我们还指出了各种矿物质相的丰富程度以及月球长石的典型尺寸分布。

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