Lunar soil simulant and its application in space civil engineering
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摘要: 空间土木工程的热门研究方向之一,即关于地外天体驻站建设的探索,而这一征程将从月球起步。本文对模拟月壤的研制进展与岩土工程应用进行系统综述,阐述了月壤的定义、组成、力学特性及密度,指出其与地球土壤在成分、颗粒形态的显著差异;梳理了模拟月壤的三种主要研制方法,并分类叙述了国内外各类模拟月壤的特性,特别关注了针对嫦娥五号月壤的新型模拟物研发;最后,探讨了模拟月壤作为建筑材料在月球基地建造中的制备,同时,回顾了模拟月壤在岩土力学试验中的标准化测试方法及大型土工试验中的应用实践,建立标准化评价体系,为未来模拟月壤研制与月球基地建设提供理论与技术支撑。Abstract: One of the hot research directions in space civil engineering is the exploration of constructing stations on celestial bodies beyond Earth, a journey that will commence from the Moon. This paper provides a systematic review of the research progress on lunar regolith simulants and their geotechnical engineering applications. It elaborates on the definition, composition, mechanical properties, and density of lunar regolith, highlighting its significant differences from terrestrial soil in terms of composition and particle morphology. Three main development methods for lunar regolith simulants are summarized, and the characteristics of various domestic and international simulants are described categorically, with particular attention paid to the development of new simulants based on the Chang'e-5 lunar samples. Finally, the application of simulants as construction materials for lunar base building is discussed. Concurrently, the paper reviews the standardized testing methods for simulants in geotechnical mechanics experiments and their application in large-scale geotechnical engineering experiments, aiming to establish a standardized evaluation system. This work provides crucial theoretical and technical support for the future development of lunar regolith simulants and the construction of lunar bases.
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