Granulometry linked to Benchmarking and comparison, with source literature and related extracted records kept visible.
74%
Confidence
9
Literature sources
30
Linked simulants
184
Linked properties
Measurement type
Granulometry
Application
Benchmarking and comparison
Primary source
Preparation and characterization of Martian soil simulant NEU Mars-1
Review state
needs review
ere carried out. 4.1 Particle size analysis The particle size distribution of NEU Mars-1 was analyzed using a Malvern laser particle sizer (Mastersizer 2000 Ver. 5.60) developed by Malvern Instrume...
Particle size analysis was performed for the developed LuMBRA-PL1 lunar rego- lith analogue (Fig. 2). Particle size was determined using a laser diffraction particle size analyzer (Malvern Mastersi...
in a future study. Methods Particle size distribution Particle size distribution (PSD) determination of the simulant was carried out using laser diffraction technique (Mastersizer 2000, Malvern Ins...
range of the lunar regolith grain size distribution (Fig. 1) 13. Grain size distribution was measured by using a Beckman Coulter LS 13 320 Laser Diffraction Particle Size Analyzer. The sorting gra...
flow 6 L/min Scan rate 5 mm/s 2.2. Analysis Particle size distributions of the received and the sieved EAC-1 material were measured using a Mastersizer 2000 (Malvern Instruments, Worcestershire, UK...
ng a 200-mesh screen before use. The particle size distribution of the HLRS powder obtained through the 200-mesh sieve was measured using a laser diffraction particle size analyzer (Mastersizer 300...
ion. By summing up the fraction proportions and varying them, mixing ratios are obtained. Figure 2. Particle size distribution (measured by Mastersizer 3000, Malvern Panalytical GmbH, Kas- sel, Ge...
um hydroxide over the course of several days. Fig. 1. Black Point 1 lunar regolith simulant. Table 2 Particle size distribution analysis by laser diffraction of sieved BP-1 lunar regolith simulant,...
J.-C. Ginés-Palomares, M. Fateri, T. Schubert, L. D. P. d’Ambelle, S. Simon, G. J. G. Gluth, J. Günster, A. Zocca | 2023 | Scientific Reports
DOI 10.1038/s41598-023-50391-yV. 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/ma12030487W. Han, L. Ding, C. Zhou, Y. Zhou, F. Dang | 2024 | Science China Technological Sciences
DOI 10.1007/s11431-023-2675-0L. Windisch, S. Linke, M. Jütte, J. Baasch, A. Kwade, E. Stoll, C. Schilde | 2022 | Materials
DOI 10.3390/ma15238561T. M. Egnaczyk, W. H. H. V, N. J. Wagner | 2024 | Advances in Space Research
DOI 10.1016/j.asr.2023.11.030G. Zanotti, I. Troisi, A. Dottori, M. R. Lavagna | 2024 | Aerospace
DOI 10.3390/aerospace1104029574%
9 sources