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Analysis the feedback characteristics of sandstone during sliding process

  • 01-01-2026
  • Original Paper
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Abstract

This study delves into the feedback characteristics of sandstone during sliding processes, a critical aspect of slope stability research. Through a series of experiments, the nonlinear behavior of sliding friction on sandstone fracture surfaces is examined, highlighting the cyclic nature of asperity shearing and wear accumulation. The friction coefficient exhibits a nonlinear variation, influenced by the energy accumulation and release within the system. A sliding friction model is developed to analyze the evolution of the friction process, revealing the underlying feedback mechanisms. The study concludes that the sliding of sandstone involves a periodic fluctuation in energy, characterized by cycles of decay, growth, and decay. The feedback loop model established for the sandstone sliding friction process provides a criterion for the onset of positive feedback, which is crucial for understanding system instability and mitigating landslide hazards. This research offers valuable insights into the dynamics of slope systems and the mechanisms behind landslide disasters, contributing to the development of effective strategies for slope stability and hazard control.

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Title
Analysis the feedback characteristics of sandstone during sliding process
Authors
Guochao Zhao
Laigui Wang
Na Zhao
Publication date
01-01-2026
Publisher
Springer Berlin Heidelberg
Published in
Bulletin of Engineering Geology and the Environment / Issue 1/2026
Print ISSN: 1435-9529
Electronic ISSN: 1435-9537
DOI
https://doi.org/10.1007/s10064-025-04685-2
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