The search for scale-bridging relations in the deformation of amorphous materials presents a current challenge with tremendous applications in material science, engineering and geology. While generic features in the flow and microscopic dynamics support the idea of a universal scaling theory of deformation, direct microscopic evidence remains poor. Here, we provide the first measurement of internal scaling relations in the deformation of granular matter. By combining macroscopic force fluctuation measurements with internal strain imaging, we demonstrate the existence of robust scaling relations from particle-scale to macroscopic flow. We identify consistent power-law relations truncated by systematic pressure-dependent cutoff, in agreement ...
Compressing a porous, fluid-filled material drives the interstitial fluid out of the pore space, as ...
Compressing a porous, fluid-filled material drives the interstitial fluid out of the pore space, as ...
International audienceWe present a thorough study of the plastic response of a granular material pro...
Slowly strained solids deform via intermittent slips that exhibit a material-independent critical si...
Slowly strained solids deform via intermittent slips that exhibit a material-independent critical si...
The similarity in mechanical properties of dense active matter and sheared amorphous solids has been...
When an amorphous material is strained beyond the point of yielding, it enters a state of continual ...
While localization of deformation at macroscopic scales has been documented and carefully characteri...
Plastic yielding of amorphous solids occurs by power-law distributed deformation avalanches whose un...
Plastic deformation is an irreversible change in form, occurring when a material internally reconfig...
Although scaling phenomena have long been documented in crystalline plasticity, the universality cla...
The goal of predicting earthquakes remains elusive despite decades of instrumental observations and ...
Slowly-compressed single crystals, bulk metallic glasses (BMGs), rocks, granular materials, and the ...
The flow of granular materials and metallic glasses is governed by strongly correlated, avalanche-li...
Compressing a porous, fluid-filled material drives the interstitial fluid out of the pore space, as...
Compressing a porous, fluid-filled material drives the interstitial fluid out of the pore space, as ...
Compressing a porous, fluid-filled material drives the interstitial fluid out of the pore space, as ...
International audienceWe present a thorough study of the plastic response of a granular material pro...
Slowly strained solids deform via intermittent slips that exhibit a material-independent critical si...
Slowly strained solids deform via intermittent slips that exhibit a material-independent critical si...
The similarity in mechanical properties of dense active matter and sheared amorphous solids has been...
When an amorphous material is strained beyond the point of yielding, it enters a state of continual ...
While localization of deformation at macroscopic scales has been documented and carefully characteri...
Plastic yielding of amorphous solids occurs by power-law distributed deformation avalanches whose un...
Plastic deformation is an irreversible change in form, occurring when a material internally reconfig...
Although scaling phenomena have long been documented in crystalline plasticity, the universality cla...
The goal of predicting earthquakes remains elusive despite decades of instrumental observations and ...
Slowly-compressed single crystals, bulk metallic glasses (BMGs), rocks, granular materials, and the ...
The flow of granular materials and metallic glasses is governed by strongly correlated, avalanche-li...
Compressing a porous, fluid-filled material drives the interstitial fluid out of the pore space, as...
Compressing a porous, fluid-filled material drives the interstitial fluid out of the pore space, as ...
Compressing a porous, fluid-filled material drives the interstitial fluid out of the pore space, as ...
International audienceWe present a thorough study of the plastic response of a granular material pro...