Experimental study on the bearing mechanical characteristics and deformation failure mechanism of damaged sandy mudstone

Author:

Zhang Dongxiao1ORCID,Zhang Pengfei1,Zhang Yueying1,Guo Wenjing1,Zhao Yongqiang2,Zhang Wei3ORCID,Fu Guangsheng4

Affiliation:

1. College of Energy and Mining Engineering Shandong University of Science and Technology Qingdao China

2. Beijing Low‐Carbon Clean Energy Research Institute National Energy Group State Key Laboratory of Coal Mining Water Resources Protection and Utilization China

3. School of Architecture and Engineering Liaocheng University Liaocheng China

4. Qingdao Geological Exploration of China Metallurgical Geology Bureau Qingdao China

Abstract

AbstractStudying the mechanical properties and failure mechanisms of damaged rocks holds practical significance in guiding tunnel or roadway support and assessing the stability of engineering rock masses. To uncover the failure mechanisms of sandy mudstone with varying degrees of damage, we conducted cyclic loading‐unloading tests to create specimens at different damage levels. Subsequently, uniaxial loading tests were performed to investigate the fundamental mechanical properties, wave velocity, and acoustic emission (AE) parameter evolution characteristics of the damaged specimens. The classification of damaged rocks was based on the energy evolution characteristics of damaged sandy mudstone. Finally, we discuss the damage and deterioration mechanisms of different types of sandy mudstone. The findings contribute to establishing a theoretical foundation for evaluating the degree of rock damage.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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