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March 2, 2026Chinese Journal of Rock Mechanics and Engineering0 citationsOpen Access

Shear characteristics and mechanisms of sandstone-mudstone interface under coupled stress and dry-wet cycling

JZJingyu ZhangXQXinzhi QIANHDHuafeng DENG

Key Points

  • This research aims to explore the shear mechanical characteristics of sandstone-mudstone interfaces affected by coupled stress and dry-wet cycles.
  • Conducted stress and dry-wet cycle coupling tests on sandstone-mudstone interfaces from the Three Gorges Reservoir area.
  • Analyzed interfacial shear strength, cohesion, and internal friction angle through experimental data.
  • Developed a shear strength degradation model based on the Mohr-Coulomb criterion.
  • Observed a nonlinear degradation in interfacial shear strength, cohesion, and internal friction angle with increased overburden stress.
  • Initial rapid decline in strength characteristics followed by a gradual reduction over cycles.
  • Microscopic analysis indicated a transition from dense to porous structure at the interface, primarily due to mudstone degradation.

Abstract

Under the combined influence of periodic water level fluctuations and the overlying rock mass, the hydro-fluctuation belt of reservoir bank slopes exhibits significant degradation in physical and mechanical properties, particularly in interbedded sandstone and mudstone formations. To investigate the shear mechanical characteristics of sandstone-mudstone interfaces, typical interfaces from the Three Gorges Reservoir area were examined through stress and dry-wet cycle coupling tests. The results indicate that this coupling effect leads to a nonlinear degradation trend in interfacial shear strength, cohesion, and internal friction angle, characterized by an initial rapid decline followed by a gradual reduction. The degradation intensifies with increasing overburden stress. A shear strength degradation model based on the Mohr-Coulomb criterion showed strong agreement with the experimental data. Microscopic analysis revealed a transition in the interface structure from dense to porous, with mudstone degradation playing a dominant role in the weakening of mechanical properties. These findings provide a theoretical basis for the degradation analysis and stability evaluation of clastic rock bank slopes in the Three Gorges Reservoir area.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69a52920f1e85e5c73bf0745https://doi.org/10.3724/1000-6915.jrme.2025.0418
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