Measuring deformation processes in granular materials from intragranular to bulk scales
(2024) In Soils and Rocks 47(3).- Abstract
Granular materials (assemblies of contacting grains with inter-granular porosity) form a vast family of materials important in both natural and industrial contexts. Under mechanical loads such systems show complex behaviours relating to the inter-and intra-granular stresses, strains and force transmission as well as the individual grain kinematics and interactions leading to multi-scale, heterogeneous behaviour. To understand such systems requires detailed understanding of these different structures and processes at the pertinent scales. This paper provides a brief overview of some new opportunities for enhanced experimental description of structures and mechanisms relating to the deformation of granular materials exploiting the... (More)
Granular materials (assemblies of contacting grains with inter-granular porosity) form a vast family of materials important in both natural and industrial contexts. Under mechanical loads such systems show complex behaviours relating to the inter-and intra-granular stresses, strains and force transmission as well as the individual grain kinematics and interactions leading to multi-scale, heterogeneous behaviour. To understand such systems requires detailed understanding of these different structures and processes at the pertinent scales. This paper provides a brief overview of some new opportunities for enhanced experimental description of structures and mechanisms relating to the deformation of granular materials exploiting the penetrating power of x-rays for both imaging, giving access to granular structures and their evolution, and diffraction-based measurements, giving access to intra-granular grain structure and changes as well as inter-and intra-granular force transmission.
(Less)
- author
- Hall, Stephen Alexander LU
- organization
- publishing date
- 2024-07
- type
- Contribution to journal
- publication status
- published
- subject
- keywords
- Full-field measurements, Granular mechanics, Micro-mechanics, Micro-structure, X-ray diffraction, X-ray tomography
- in
- Soils and Rocks
- volume
- 47
- issue
- 3
- article number
- e2024004324
- publisher
- Associacao Brasileira de Mecanica dos Solos
- external identifiers
-
- scopus:85203515520
- ISSN
- 1980-9743
- DOI
- 10.28927/SR.2024.004324
- language
- English
- LU publication?
- yes
- id
- 408199b5-bf8a-42f4-82ea-f9ce6c40c338
- date added to LUP
- 2024-11-26 15:26:10
- date last changed
- 2025-04-04 15:27:27
@article{408199b5-bf8a-42f4-82ea-f9ce6c40c338, abstract = {{<p>Granular materials (assemblies of contacting grains with inter-granular porosity) form a vast family of materials important in both natural and industrial contexts. Under mechanical loads such systems show complex behaviours relating to the inter-and intra-granular stresses, strains and force transmission as well as the individual grain kinematics and interactions leading to multi-scale, heterogeneous behaviour. To understand such systems requires detailed understanding of these different structures and processes at the pertinent scales. This paper provides a brief overview of some new opportunities for enhanced experimental description of structures and mechanisms relating to the deformation of granular materials exploiting the penetrating power of x-rays for both imaging, giving access to granular structures and their evolution, and diffraction-based measurements, giving access to intra-granular grain structure and changes as well as inter-and intra-granular force transmission.</p>}}, author = {{Hall, Stephen Alexander}}, issn = {{1980-9743}}, keywords = {{Full-field measurements; Granular mechanics; Micro-mechanics; Micro-structure; X-ray diffraction; X-ray tomography}}, language = {{eng}}, number = {{3}}, publisher = {{Associacao Brasileira de Mecanica dos Solos}}, series = {{Soils and Rocks}}, title = {{Measuring deformation processes in granular materials from intragranular to bulk scales}}, url = {{http://dx.doi.org/10.28927/SR.2024.004324}}, doi = {{10.28927/SR.2024.004324}}, volume = {{47}}, year = {{2024}}, }