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Study on pore characteristics of sandstone with different preloading ratios under high temperature

  • 01-01-2026
  • Original Paper
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Abstract

This study delves into the intricate world of sandstone, examining how high temperatures and preloading ratios influence its pore characteristics and mechanical properties. Through Nuclear Magnetic Resonance (NMR) tests and Uniaxial compression tests, the research reveals the complex interplay between thermal and mechanical damage, and how these factors affect the stone's compressive strength. The analysis highlights the significant role of fractal dimension in characterizing the internal pore structure of sandstone, with higher preloading ratios leading to a more uniform pore structure. Notably, the study finds that the reduction in sandstone compressive strength after exposure to 400°C is predominantly influenced by mechanical damage, while the decrease after 600°C is mainly controlled by thermal damage. This comprehensive investigation offers valuable insights into the behavior of sandstone under varying conditions, providing a deeper understanding of its physical and mechanical properties. The study concludes that the internal pore characteristics of sandstone samples are altered by both temperature and preloading ratio, with higher preloading ratios resulting in more significant changes in pore proportions. The research underscores the importance of considering both thermal and mechanical damage when assessing the mechanical performance of sandstone, offering crucial data for professionals in the construction, mining, and energy industries.

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Title
Study on pore characteristics of sandstone with different preloading ratios under high temperature
Authors
Chaolin Wang
Rui Wu
Can Du
Wei Tang
Jing Bi
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/s10064-025-04698-x
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