Title of article :
Interaction between One Internal Hole and Two Neighboring Joints under Uniaxial Compression using an Experimental Test and a Numerical Simulation
Author/Authors :
Sarfarazi, Vahab Academic Member - Department of Mining Engineering - Hamedan University of Technology, Hamedan, Iran , Asgari, Kaveh Research Scholar - Department of Mining Engineering - Shahid Bahonar University of Kerman, Kerman, Iran , Mohamadi Bolban Abad, Shadman Research Scholar - Hamedan University of Technology, Hamedan, Iran
Pages :
14
From page :
407
To page :
420
Abstract :
The interaction between an internal hole and two surrounded joints under a uniaxial compression are examined using the experimental and discrete element procedures. Inside the concrete sample, two notches and an internal hole are created. The joint angle change from 0° to 90° with an increment of 30°. The distances between the joint and the internal hole are 2 cm and 3 cm. Also the numerical models are provided. The joint angle change from 0° to 90° with an increment of 15°. The distances between the joint and the internal hole are 2 cm, 3 cm, and 4 cm. The compressive strength is 7.2 MPa. The rate of loading is 0.005 mm/s. The experiment indicates that the failure process is significantly dependent on the notch angle and the joint distance from the hole. The pattern of fracture and mechanism of failure of joints affect the shear strengths of the samples. The models with joint angles of 30° and 60° have a less compressive strength since the pure tensile failure occurs in these configurations. The model strength decreases with decrease in the join spacing. In fact, in the case that the joint spacing is 2 cm, the interaction between the hole and the neighboring joint is so strong. Consequently, the compressive strength is declined. In both approaches of the numerical simulation and experimental methods, the pattern and strength of failure are identical.
Keywords :
Compressive test , Joint angle , Joint distance , Hole , PFC2D
Journal title :
Journal of Mining and Environment
Serial Year :
2022
Record number :
2733375
Link To Document :
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