Open Access
Issue
EPJ Web Conf.
Volume 340, 2025
Powders & Grains 2025 – 10th International Conference on Micromechanics on Granular Media
Article Number 10004
Number of page(s) 4
Section Experimental Methods for Granular Mechanics
DOI https://doi.org/10.1051/epjconf/202534010004
Published online 01 December 2025
  1. J. A. Dijksman, N. Brodu, R. P. Behringer, Refractive index matched scanning and detection of soft particles, 88, 051807 (2017). 10.1063/1.4983047 [Google Scholar]
  2. S. A. Hall, M. Bornert, J. Desrues, Y. Pannier, N. Lenoir, G. Viggiani, P. Bésuelle, Discrete and continuum analysis of localised deformation in sand using X-ray µCT and volumetric digital image correlation, Géotechnique 60, 315 (2010). 10.1680/geot.2010.60.5.315 [Google Scholar]
  3. R. C. Hurley, S. A. Hall, J. E. Andrade, J. Wright, Quantifying Interparticle Forces and Heterogeneity in 3D Granular Materials, Physical Review Letters 117, 098005 (2016). 10.1103/Phys-RevLett.117.098005 [Google Scholar]
  4. K. E. Daniels, J. E. Kollmer, J. G. Puckett, Photoelastic force measurements in granular materials, Review of Scientific Instruments 88, 051808 (2017). 10.1063/1.4983049 [Google Scholar]
  5. A. Abed Zadeh, J. Bares, T. A. Brzinski, K. E. Daniels, J. Dijksman, N. Docquier, H. O. Everitt, J. E. Kollmer, O. Lantsoght, D. Wang et al., Enlightening force chains: a review of photoelasticimetry in granular matter, Granular Matter 21, 83 (2019). 10.1007/s10035-019-0942-2 [Google Scholar]
  6. K. Ramesh, Developments in Photoelasticity: A renaissance (IOP Publishing, 2021) [Google Scholar]
  7. S. Joseph Antony, Power of photo-stress analysis in unravelling the mechanics of granular materials and its applications in interdisciplinary research, Optics and Lasers in Engineering 183, 108512 (2024). 10.1016/j.optlaseng.2024.108512 [Google Scholar]
  8. Photoelasticity. net, https://photoelasticity.net/ [Google Scholar]
  9. T. S. Majmudar, R. P. Behringer, Contact force measurements and stress-induced anisotropy in granular materials, Nature 435, 1079 (2005). 10.1038/na-ture03805 [Google Scholar]
  10. C. Lee, L. McCabe, B. McMillan, A. Naseer, D. Xie, K. Daniels, T. G. Murthy, K. Nordstrom, T. Brzinski, photoelasticity/pegs2: Initial release of pegsv2 (2024), https://doi.org/10.5281/zenodo.15547001 [Google Scholar]
  11. A. Naseer, K. E. Daniels, T. G. Murthy, Extracting contact forces in cohesive granular ensembles, (Powders and Grains, accepted) (2025). [Google Scholar]
  12. A. Naseer, PeGS_for_cohesion (2025), https://github.com/nsrabrar/PeGS_for_Cohesion [Google Scholar]
  13. C. L. Lee, E. Azéma, K. E. Daniels, The stress-forcefabric relation across shear bands, (Powders and Grains, accepted) (2025). [Google Scholar]
  14. X. Dong, PeGS pre- and post-process, https://github.com/XD1729/PeGS2 (2025) [Google Scholar]
  15. Y. Zhao, H. Zheng, D. Wang, M. Wang, R. P. Behringer, Particle scale force sensor based on intensity gradient method in granular photoelastic experiments, New Journal of Physics 21, 023009 (2019). 10.1088/1367-2630/ab05e7 [Google Scholar]
  16. C. L. Lee, E. Bililign, E. Azéma, K. E. Daniels, Loading-dependent microscale measures control bulk properties in granular material: an experimental test of the Stress-Force-Fabric relation (2024). 10.48550/arXiv.2409.08140 [Google Scholar]
  17. B. McMillan, S. Dalziel, N. Vriend, Validation and correction of photoelastic techniques for frictional granular systems, Measurement Science and Technology 36, 055212 (2025). 10.1088/1361-6501/add48b [Google Scholar]

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