Visualizing particle networks in granular media by in situ X-ray computed tomography
Matthias Ruf, Kianoosh Taghizadeh, Holger Steeb

TL;DR
This study uses in situ micro X-ray computed tomography to visualize and analyze particle networks in granular media under compression, linking microstructure to mechanical properties and revealing network transitions.
Contribution
It introduces an in situ micro-XRCT imaging method combined with stiffness measurements to analyze particle contact networks in 3D, providing new insights into microstructure-property relationships.
Findings
Micro-XRCT enables 3D visualization of particle contacts.
Network transition from stiff to soft regimes observed.
Microstructure analysis correlates with P-wave modulus changes.
Abstract
In this contribution, cylindrical samples consisting of monodisperse soft (rubber) and stiff (glass) particles are pre-stressed under uniaxial compression. Acoustic P-waves at ultrasound frequencies are superimposed into prepared samples with different soft-stiff volume fractions. Earlier investigations showed the importance of particles networks, i.e. force chains, in controlling the effective mechanical properties of particulate systems. Measured P-wave modulus showed a significant decline while more soft particles are added due to a change in microstructure. However, for small contents of soft particles, it could be observed that the P-wave modulus is increasing. For the understanding of such kinds of effects, detailed insight into the microstructure of the system is required. To gain this information and link it to the effective properties, we made use of high-resolution micro X-ray…
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Taxonomy
TopicsSeismic Imaging and Inversion Techniques · Drilling and Well Engineering · Soil and Unsaturated Flow
