Effects of a Weak Interlayer Zone on the Tensile Mechanical Properties and Failure Characteristics of Rock

ABSTRACT Brazilian tests on limestone with weak interlayers (thickness 0.1–1.35 mm) were performed using RMT and 3D scanning. Results show that BTS decreases nonlinearly with increasing thickness and exhibits a complex angle dependence: fracture length and roughness first rise then peak at 30°, while microscopic features of rock fracture surfaces are mainly represented by four types of failure: limestone matrix failure, interface failure, interlayer failure, and cross interlayer failure. Energy densities increase nonlinearly with angle but decline with thickness, severely reducing storage capacity. Interlayer samples suffer varying degrees of damage to their energy storage capacity due to variations in interlayer angle and thickness compared to samples without weak interlayer interactions. These data‐driven findings provide robust reference for engineering anisotropy problems.

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Publication Details

Journal
Fatigue & Fracture of Engineering Materials & Structures
Published
2026-09-24
DOI
https://doi.org/10.1111/ffe.70455
Primary Topic
Rock Mechanics and Modeling
Type
article
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Effects of a Weak Interlayer Zone on the Tensile Mechanical Properties and Failure Characteristics of Rock

Jing Bi, Lin Ning, Deyi Jiang, Zhiping Lin et al.
Fatigue & Fracture of Engineering Materials & Structures
Rock Mechanics and Modeling
article

Effects of a Weak Interlayer Zone on the Tensile Mechanical Properties and Failure Characteristics of Rock

Jing Bi, Lin Ning, Deyi Jiang, Zhiping Lin, Yueming Kang, Sheng Ren
article en

Abstract

ABSTRACT Brazilian tests on limestone with weak interlayers (thickness 0.1–1.35 mm) were performed using RMT and 3D scanning. Results show that BTS decreases nonlinearly with increasing thickness and exhibits a complex angle dependence: fracture length and roughness first rise then peak at 30°, while microscopic features of rock fracture surfaces are mainly represented by four types of failure: limestone matrix failure, interface failure, interlayer failure, and cross interlayer failure. Energy densities increase nonlinearly with angle but decline with thickness, severely reducing storage capacity. Interlayer samples suffer varying degrees of damage to their energy storage capacity due to variations in interlayer angle and thickness compared to samples without weak interlayer interactions. These data‐driven findings provide robust reference for engineering anisotropy problems.

Fatigue & Fracture of Engineering Materials & Structures
Chongqing University (CN), Chongqing University of Science and Technology (CN), Guizhou University (CN), Chongqing 2D Materials Institute (China) (CN), Fujian Petrochemical Group (China) (CN), CCTEG Chongqing Research Institute (China) (CN)
Affordable and clean energy
Openalex Percentile: Top 20%
Rock Mechanics and Modeling
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Effects of a Weak Interlayer Zone on the Tensile Mechanical Properties and Failure Characteristics of Rock — Jing Bi, Lin Ning, et al. · Fatigue & Fracture of Engineering Materials & Structures (2026) | TGRS Research Map | TGRS