NEW ARTIFICIAL GRANULAR MATERIALS FOR ANALOGUE LABORATORY EXPERIMENTS: ALUMINIUM AND SILICEOUS MICROSPHERES

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dc.contributor.author Rossi D.
dc.contributor.author Storti F.
dc.date.accessioned 2022-01-25T05:52:43Z
dc.date.available 2022-01-25T05:52:43Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=4714029
dc.identifier.citation Journal of Structural Geology, 2003, 25, 11, 1893-1899
dc.identifier.issn 0191-8141
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/34586
dc.description.abstract Laboratory tests have been carried out to determine the physical properties of high sphericity and low density, fine grained dry granular materials. In particular, we tested hollow aluminium microspheres and hollow siliceous microspheres. Shear tests have been carried out with a Casagrande apparatus for different values of normal stress (from 12.27 to 491.8kPa) in order to determine the frictional properties of the microspheres. Diagrams of the shear stress against displacement have been used to describe the strength of the investigated materials at different confining pressures. The shear tests show that hollow aluminium and siliceous microspheres successfully replicate the mechanical behaviour of weaker layers within natural sedimentary successions undergoing deformation. The use of these artificial granular materials in specifically designed experiments indicated that they can be successfully used for constructing more ''natural'' multilayers in the laboratory.
dc.subject ANALOGUE MODELLING
dc.subject ARTIFICIAL GRANULAR MATERIAL
dc.subject COEFFICIENT OF INTERNAL FRICTION
dc.subject COHESION
dc.subject MECHANICAL STRATIGRAPHY
dc.title NEW ARTIFICIAL GRANULAR MATERIALS FOR ANALOGUE LABORATORY EXPERIMENTS: ALUMINIUM AND SILICEOUS MICROSPHERES
dc.type Статья


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