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01-04-2025 | Original Paper

Shear failure and strength upscaling characterization of block-in-matrix geomaterials through the bim cell

Authors: Minghui Ren, Hai Pu, Guangsi Zhao, Runhua Zhang, Qian Yin

Published in: Bulletin of Engineering Geology and the Environment | Issue 4/2025

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Abstract

The article investigates the shear failure mechanisms and strength upscaling of block-in-matrix geomaterials, focusing on the bim cell as a fundamental unit of analysis. It highlights the heterogeneity and discontinuity inherent in geological bodies, such as pores, fractures, and inclusions, and how these features influence the mechanical properties of bim geomaterials. The study employs a combination of experimental tests and 3D Discrete Element Modeling (DEM) to elucidate the coupled mechanical processes within the bim cell. Key findings include the identification of the bim cell's role in understanding the shear strength and failure characteristics of these complex materials. The research also explores the effects of block size and structural complexity on the mechanical behavior of bim geomaterials, providing a foundation for future studies on more intricate block structures. The article concludes with a detailed discussion on the block-controlled shear failure processes and strength mechanisms, offering a comprehensive overview of the subject matter.

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Metadata
Title
Shear failure and strength upscaling characterization of block-in-matrix geomaterials through the bim cell
Authors
Minghui Ren
Hai Pu
Guangsi Zhao
Runhua Zhang
Qian Yin
Publication date
01-04-2025
Publisher
Springer Berlin Heidelberg
Published in
Bulletin of Engineering Geology and the Environment / Issue 4/2025
Print ISSN: 1435-9529
Electronic ISSN: 1435-9537
DOI
https://doi.org/10.1007/s10064-025-04208-z