Regolith handling test linked to Mobility and excavation, with source literature and related extracted records kept visible.
74%
Confidence
11
Literature sources
27
Linked simulants
156
Linked properties
Measurement type
Regolith handling test
Application
Mobility and excavation
Primary source
Simulating lunar highlands regolith profiles on Earth to inform infrastructure development and ISRU activities on the Moon
Review state
needs review
ents similar to those described herein, tailored to the terrain type of interest, will provide crucial information to guide future regolith excavation, construction, and ISRU activities on the luna...
ec.2025.122070 1-s2.0-S0032591025014652 10.1016/j.powtec.2025.122070 S0032-5910(25)01465-2 Calibration of simulation parameters for in-situ excavation of lunar highland simulant Powder Technology J...
ference for the selection of discrete element simulation parameters for lunar soil simulant and the design and optimization of drilling and excavation machinery for lunar exploration. 0 false false...
lants are expensive and limited in quantity, which is difficult to meet the needs of large-scale engineering investigations about drilling, excavation or drop tests of spacecraft. For large-scale e...
as separate values 19,22,39. It is however an important consideration for lunar exploration. At shal- low depths of regolith (< 25 30 cm) excavation is not considered to be problematic for tools,...
s referred to as overspray [31,32]. Materials 2019, 12, 487 6 of 11 Materials 2018, 11, x FOR PEER REVIEW 6 of 10 resistant (e.g., for excavation tools) or insulating coatings. In the following...
hnologies. Yang, Yating Rahman, MD Razibur Andriamasinoro, Misandratr'Avo Vatteroni, Filippo Wang, Lei Reliable assessment of lunar surface excavation, mobility, and in-situ resource utilization (I...
regolith simulants are lunar highland analogues, conceived to produce geotechnical properties of benefit to designing and testing drilling, excavation and construction equipment for future lunar su...
X. Sun, R. Zhang, H. Zhang, Z. Hu, W. Wang, M. Zou | 2025 | Advances in Space Research
DOI 10.1016/j.asr.2024.09.031X. Sun, R. Zhang, X. Li, M. Zou, C. Wang, L. Chen | 2022 | Planetary and Space Science
DOI 10.1016/j.pss.2022.105562V. S. Engelschiøn, S. R. Eriksson, A. Cowley, M. Fateri, A. Meurisse, U. Kueppers, M. Sperl | 2020 | Scientific Reports
DOI 10.1038/s41598-020-62312-4P. Nieke, J. Kita, M. Häming, R. Moos | 2019 | Materials
DOI 10.3390/ma12030487Y. Yang, M. Rahman, M. Andriamasinoro, F. Vatteroni, L. Wang | 2026 | Acta Astronautica
DOI 10.1016/j.actaastro.2026.04.066M. M. Battler, J. G. Spray, C. Ontario | 2009 | Planetary and Space Science
DOI 10.1016/j.pss.2009.09.003L. Windisch, S. Linke, M. Jütte, J. Baasch, A. Kwade, E. Stoll, C. Schilde | 2022 | Materials
DOI 10.3390/ma15238561G.-E. Battsengel, N. Melkoumian, D. Harvey, R. Akmeliawati | 2026 | Geosciences
DOI 10.3390/geosciences16060219G. Zanotti, I. Troisi, A. Dottori, M. R. Lavagna | 2024 | Aerospace
DOI 10.3390/aerospace1104029574%
11 sources