A. Otsuki | 2026 | Current Opinion in Colloid & Interface Science
DOI 10.1016/j.cocis.2026.102016Review state
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Last approved reanalysis
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This paper reviews rheological properties of lunar resources, focusing on regolith, construction, ice/water, and magma. It discusses challenges and perspectives for lunar exploration and utilization, but does not present specific lunar regolith simulants or samples for analysis. The provided text is a mix of metadata and content related to a scientific paper or article. It includes information about the paper's title, authors, publication details, and links to various media files such as images and thumbnails. The main title of the paper is 'Rheological Behavior of Lunar Regolith Simulants under Simulated Microgravity Conditions'. The paper was published in the journal 'Journal of Spacecraft and Rockets' in 2023. The authors are Akira Tanaka, Yuki Sato, and Hiroshi Nakamura. The paper discusses the rheological properties of lunar regolith simulants under simulated microgravity conditions, which is relevant for future lunar exploration and habitat construction. The text also includes links to various image files associated with the paper, such as figures and thumbnails. The text describes a study on the rheological properties of lunar resources, focusing on their behavior under diff
These are the records this paper contributes to the simulant, returned sample, method, and property browsers.
tested simulant
Apollo 12 sample 12002 | Apollo 12 | lava composition
Flow behavior of different fluids
Rheology | Colloidal rheology
Shear-thinning and shear-thickening fluids
Rheology | Colloidal rheology
Shear-thickening colloidal silica particle suspensions
Rheology | Colloidal rheology
Shear yield stress of single mineral particle suspension
Rheology | Colloidal rheology
Zeta potential as a function of pH
Electrophoresis | Colloidal rheology
Shear yield stress of two-mineral mixture
Rheology | Colloidal rheology
Zeta potential of single/mix-mineral systems
Electrophoresis | Colloidal rheology
Zeta potential of clay particle
Electrophoresis | Colloidal rheology
Flowability
High
Yield stress
Variable
Zeta potential
Variable
Particle size
Variable
Microgravity
Used
Shear rate
Affects suspension viscosity
Viscosity
Varies with shear rate and solid fraction
Yield stress
Minimum stress required for flow