Fracturing behaviors of flawed granite induced by dynamic loadings: A study based on DIP and PFC

Author:

Wang Xiao1,Sun Wenbin1,He Changdi2ORCID,Yuan Wei3,Sarfarazi Vahab4,Wang Haozheng56

Affiliation:

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

2. Department of Mining Engineering University of Utah Salt Lake City Utah USA

3. School of Civil Engineering Southeast University Nanjing China

4. College of Mining Engineering Hamedan University of Technology Hamedan Iran

5. Zhejiang Scientific Research Institute of Transport Hangzhou China

6. Key Laboratory of Road and Bridge Detection and Maintenance Technology of Zhejiang Province Hangzhou China

Abstract

AbstractThis study explored the dynamic behaviors and fracturing mechanisms of flawed granite under split‐Hopkinson pressure bar testing, focusing on factors like grain size and flaw dimensions. By means of digital image processing and the discrete element method, Particle Flow Code 2D (PFC2D) models were constructed based on real granite samples, effectively overcoming the limitations of prior studies that mainly relied on randomized parameters. The results illustrate that the crack distribution of granite is significantly influenced by grain size and flaw dimensions. Tension cracks predominate and mineral boundaries, such as between feldspar and quartz, become primary crack sites. Both flaw length and width critically affect the crack density, distribution, and dynamic strength of granite. Specifically, dynamic strength tends to decrease with the enlargement of flaws and increase with an increase in flaw angles up to 90°.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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