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Advanced Experimental Approaches in Conducting Direct Shear Tests for Soil Mechanics Cover

Advanced Experimental Approaches in Conducting Direct Shear Tests for Soil Mechanics

Open Access
|Sep 2025

References

  1. Assallay, A. M., Rogers, C. D. & Smalley, I. J., 1997. Formation and collapse of metastable particle packings in loess deposits. Journal of Engineering Geology and Hydrogeology, 30(3), pp. 163-171.
  2. ASTMD6467, S., 2021. Standard Test Method for Torsional Ring Shear Test to Determine Drained Residual Shear Strength of Fine-Grained Soils. ASTM International.
  3. Axel, M., Li, X., Wen, F. & An, M.-X., 2023. Microstructure and Strength Parameters of Cement-Stabilized Loess.. Geotechnics, Volume 3, pp. 161-178.
  4. Buck, P., 2023. Soil Mechanics Vol 1. 1 ed. Vero Beach: Pile Buck International, Inc..
  5. Budhu, M., 2010. Soil Mechanics and Foundations. s.l.:John Wiley & Sons.
  6. Casagrande, A., 1936. Characteristics of cohesionless soils affecting the stability of slopes and earth fills. Journal of the Boston Society of Civil Engineers, 23(1), pp. 13 - 32.
  7. Dijkstra, T. A., 1995. Erosion thresholds of loose and compacted loess materials. Engineering Geology, 40(1-2), pp. 15-22.
  8. Duncan, J. M. & Wright, S. G., 2005. Soil strength and slope stability. s.l.:ohn Wiley & Sons.
  9. Imran, H., Al-Jeznawi, D., Al-Janabi, M. & Bernardo, L., 2023. Assessment of Soil– Structure Interaction Approaches in Mechanically Stabilized Earth Retaining Walls: A Review.. CivilEng, 4(3), pp. 982-999.
  10. Isaev, O. & Sharafutdinov, R., 2020. Soil Shear Strength at the Structure Interface. Soil Mech Found Eng, Volume 57, p. 139–146.
  11. Jaky, J., 1948. Pressure in silos. s.l., s.n., pp. 103-107.
  12. Jiang, S.-H., Jinsong, H., Xiao-Hui, Q. & Chuang-Bing, Z., 2020. Efficient probabilistic back analysis of spatially varying soil parameters for slope reliability assessment. Engineering Geology, Volume 271, p. 105597.
  13. Lade, P. V., 2010. The mechanics of surficial failure in soil slopes.. Engineering Geology, 114(1-2), pp. 57 - 64.
  14. Moon, S. & Ku, T., 2016. Empirical estimation of soil unit weight and undrained shear strength from shear wave velocity measurements. Australian Geomechanics Society, pp. 1247-1252.
  15. Shiqing, X., Yehuda, B.-Z. & Jean-Paul, A., 2012. Properties of inelastic yielding zones generated by in-plane dynamic ruptures—I. Model description and basic results. Geophysical Journal International, p. 1325–1342.
  16. Stanciu, A., I.C., H. & C, P., 2020. Device for direct shear along on imposed vertical plan of soil samples. Romania, Patent No. 134239.
  17. Stanciu, A. & Lungu, I., 2006. Foundations Vol I - Soil Physics and Mechanics. Bucharest: Technical Publishing House.
  18. Svensson, N. O. B. H., 1925. Utländska erfarenheter och observationer angående jordskred. Geoteknik, Volume 1, pp. 1-50.
  19. Terzaghi, K., 1943. Theoretical soil mechanics. John Wiley & Sons.: s.n.
  20. Terzaghi, K. & Peck, R. B., 1948. Soil Mechanics in Engineering Practice. s.l.:John Wiley & Sons.
  21. Tiwari, B. & Ajmera, B., 2023. Advancements in Shear Strength Interpretation, Testing, and Use for Landslide Analysis.. Progress in Landslide Research and Technology, 2(2), pp. 3-54.
  22. White, D., 2020. Geotechnical centrifuge modelling – current practice. PHYSICAL MODELS: Their historical and current use in civil and building engineering design.
DOI: https://doi.org/10.2478/bipca-2022-0031 | Journal eISSN: 2068-4762 | Journal ISSN: 1224-3884
Language: English
Page range: 57 - 68
Submitted on: Nov 4, 2024
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Accepted on: Jun 25, 2025
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Published on: Sep 8, 2025
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Zakaria Owusu-Yeboah, Mircea Aniculăesi, Florin Bejan, Iancu-Bogdan Teodoru, Irina Lungu, published by Gheorghe Asachi Technical University of Iasi
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.