H. A. Oravec, X. Zeng, V. M. Asnani | 2010 | Journal of Terramechanics
DOI 10.1016/j.jterra.2010.04.006Review state
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This paper introduces GRC-1, a lunar soil simulant designed for terramechanics testing. It is created by mixing manufactured sands to mimic lunar regolith and is tested for mechanical properties under simulated lunar conditions. The text provided appears to be a mix of metadata and content related to a scientific paper or document. It includes information about the paper's title, authors, publication details, and references. The content also contains links to various files such as the main document, images, and supplementary materials. The paper seems to focus on the design and testing of a system or device, possibly related to engineering or technology, with mentions of components like sensors, actuators, and control systems. The document includes sections on methodology, results, and discussion, and references other works in the field. The provided text appears to be a list of URLs and file metadata, likely related to academic or technical content. It includes references to various image and graphic files, such as.gif,.jpg, and.sml files, with details like file size, dimensions, and content type. The URLs suggest these files are hosted on cloud storage services, possibly for u
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Cone penetration tests
mechanical
Consolidation tests
mechanical
triaxial tests
mechanical
bevameter tests
mechanical
Shear tests
mechanical
triaxial testing
mechanical
bevameter testing
mechanical
cone penetration testing
mechanical
Bulk density
1.60 g/cm3 (0% relative density)
Relative density
72.4% (1.80 g/cm3)
bulk density
1.45 to 1.55 g/cm3
specific gravity
2.58
bulk density
1.60 1.89 g/cm3
void ratio
0.525 and 0.406
compression index
0.03
swelling index
0.008