Experimental Study of Hygroscopicity of Lunar Soil Simulant
R. Y. Shi, J. Q. Li, Zou, S. C. Fan, L. He, Y. J. Yang | 2013 | Applied Mechanics and Materials
DOI 10.4028/www.scientific.net/amm.357-360.1405Loading workspace
Retrieving material properties, measurements, and literature records...
| Na₂Owt% |
|---|
| K₂Owt% |
|---|
| MnOwt% |
|---|
| P₂O₅wt% |
|---|
| Meng (2011) Influence of temperature and frequency on microwave dielectric properties of lunar regolith simulant | 49.21 | 1.93 | 16.51 | 8.22 | 2.92 | 5.82 | 6.03 | 4.40 | 2.78 | 0.17 | 0.67 |
|---|---|---|---|---|---|---|---|---|---|---|---|
Details
| |||||||||||
Evaluates physical, geotechnical, chemical, and mineralogical properties across the standardized 61-topic taxonomy based on comprehensive literature review synthesis.
Literature review classifications denote whether properties are documented in published syntheses. Paper links indicate peer-reviewed studies with extracted property measurements or experimental data for this simulant.
Source section: Asian lunar regolith simulants (Part 2)
Peer-reviewed scientific publications reporting measurements, characterization methods, and experimental evidence for JLU-1.
Particle, density, pore, optical, transport, acoustic, and agglutinate coverage.
1 papers with accepted evidence
R. Y. Shi, J. Q. Li, Zou, S. C. Fan, L. He, Y. J. Yang | 2013 | Applied Mechanics and Materials
DOI 10.4028/www.scientific.net/amm.357-360.1405Showing 1-1 of 1 matching papers