Data Publication

Rheology of PDMS-corundum sand mixtures from the Tectonic Modelling Lab of the University of Bern (CH)

Zwaan, Frank | Schreurs, Guido | Ritter, Malte | Santimano, Tasca | Rosenau, Matthias

GFZ Data Services

(2018)

Descriptions

This dataset provides rheometric data of silicone (Polydimethylsiloxane, PDMS SGM36)-corundum sand mixtures used for analogue modelling in Zwaan et al. (2016, 2017), Zwaan and Schreurs (2017) and in the Tectonic Modelling Lab of the Institute of Geological Sciences at the University of Bern (CH). The PDMS is produced by Dow Corning and its characteristics have been described by e.g. Rudolf et al. (2016a,b). The corundum sand (Normalkorund Braun 95.5% F120 by Carlo Bernasconi AG: https://www.carloag.ch/shop/catalog/product/view/id/643), has a grainsize of 0.088-0.125 mm and a specific density of 3.96 g cm^-3. Further rheological characteristics are described by Panien et al. (2006). The density of the tested materials ranges between 1 (pure PDMS) and 1.6 g cm^-3 (increasing corundum sand content in mixture). The material samples have been analysed in the Helmholtz Laboratory for Tectonic Modelling (HelTec) at GFZ German Research Centre for Geosciences in Potsdam using an Anton Paar Physica MCR 301 rheometer in a plate-plate configuration at room temperature. Rotational (controlled shear rate) tests with shear rates varying from 10^-4 to 10^-1 s^-1 were performed. According to our rheometric analysis, the material is quasi Newtonian at strain rates below 10^-3*s^-1 and weakly shear rate thinning above. Viscosity and stress exponent increase systematically with density from ~4*10^4 to ~1*10^5 Pa*s and from 1.06 to 1.10, respectively. A first application of the materials tested can be found in Zwaan et al. (2016). Detailed information about the data, methodology and a list of files and formats is given in the "data description" and "list of files" that are included in the zip folder and also available via the DOI landing page.

Keywords


Originally assigned keywords
analogue models of geologic processes
EPOS
Multi-scale Laboratories
property data of analogue modelling materials
software tools

MSL enriched keywords
unconsolidated sediment
clastic sediment
sand
analogue modelling material
granular modelling material
natural granular material
corundum sand
viscous modelling material
synthetic viscous material
silicone
Apparatus
fluid transport testing
fluid rheology testing
rheometer
Measured property
mechanical strength
plastic flow stress
plastic flow law stress exponent
strain
viscosity
Apparatus
analogue modelling
characterization of modelling material
rheology testing
rheometer
Measured property
mechanical strength
plastic flow strength
plastic flow law stress exponent
strain
viscosity

Metadata


MSL enriched sub domains

rock and melt physics
analogue modelling of geologic processes

Source


Source publisher

GFZ Data Services

DOI

10.5880/fidgeo.2018.023

Creators

Zwaan, Frank
Personal
Institut für Geologie, Universität Bern, Switzerland
Schreurs, Guido
Personal
Institut für Geologie, Universität Bern, Switzerland
Ritter, Malte
Personal
GFZ German Research Centre for Geosciences, Potsdam, Germany
Santimano, Tasca
Personal
GFZ German Research Centre for Geosciences, Potsdam, Germany
Rosenau, Matthias
Personal
GFZ German Research Centre for Geosciences, Potsdam, Germany

Contributors

Tectonic Modelling Laboratory At The Institute For Geological Sciences (TecLab Bern, Switzerland)
Personal
Institute of Geological Sciences of the University of Bern, Switzerland
HelTec-Helmholtz Laboratory For Tectonic Modelling (GFZ Potsdam, Germany)
Personal
GFZ German Research Centre for Geosciences, Potsdam, Germany

Citation

Zwaan, F., Schreurs, G., Ritter, M., Santimano, T., & Rosenau, M. (2018). Rheology of PDMS-corundum sand mixtures from the Tectonic Modelling Lab of the University of Bern (CH) [Data set]. GFZ Data Services. https://doi.org/10.5880/FIDGEO.2018.023


References

URL
References

Dates

Issued 2018

Language

en



Rights

Locations

- no geo-locations found -