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Constitutive Model Analysis of Chang'E-5 Simulated Lunar Regolith Solidified Bodies Under Compression  ( EI收录)  

文献类型:期刊文献

英文题名:Constitutive Model Analysis of Chang'E-5 Simulated Lunar Regolith Solidified Bodies Under Compression

作者:Gui-Hong, Xu Yang, Li Rong-Hua, Pang Ziwei, Chen Xu, Ren

第一作者:Gui-Hong, Xu

机构:[1] School of Civil Engineering, Guizhou Institute of Technology, Guiyang, 550001, China; [2] Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, 430071, China

第一机构:贵州理工学院土木工程学院

年份:2024

外文期刊名:SSRN

收录:EI(收录号:20240021058)

语种:英文

外文关键词:Compressive strength - Curing - Morphology - Scanning electron microscopy

摘要:China’s Chang'E-5 spacecraft successfully collected 1731 g of Lunar regolith and returned it to Earth on December 17, 2020. In this paper, Chang'E-5 simulated Lunar regolith is used as the main material to form stable and dense solid Lunar soil structures by adding different amounts of an inorganic curing agent and water. The internal morphology, failure morphology under uniaxial compression, and stress–strain relationship of the Lunar regolith solidified samples (L-R-S-Ss) are then investigated. The damage constitutive model of the Lunar regolith cured body was analyzed according to the stress–strain curves. The following results were found. (1) Scanning electron microscopy indicates that the L-R-S-Ss contain more microvoids and microfractures, which are the main factors that lead to destruction. (2) The uniaxial failure mode of the L-R-S-Ss is primarily split failure, with both vertical and oblique cracks; the angle between the main crack and the vertical axis is less than 30°. (3) The content of the curing agent and the amount of water are important factors affecting the L-R-S-S strength. As water content increases, the L-R-S-S compressive strength tends to decrease. The L-R-S-S strength increased with increasing amounts of cementitious material. (4) A cubic polynomial and a rational fraction are used to fit the ascending and descending sections of the L-R-S-S stress–strain curves, respectively, and a piecewise constitutive model of the L-R-S-S specimens is proposed. The calculated results of the model are in good agreement with the experimental curves. ? 2024, The Authors. All rights reserved.

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