The distribution and propagation of rock cracks have a significant impact on geotechnical engineering. Taking rock-like materials with bent cracks as the research object, the particle flow code in two dimensions numerical simulation method was used to study the impact of the bend number on rock-like materials strength and crack evolution. According to the results, when the bend number was 1, 3, and 7, the strength of the specimens gradually increased; the elasticity modulus did not change significantly with the crack bend number. Uniaxial compression generated tensile cracks in all the specimens with bent cracks, but in terms of failure mode, the specimens with 0 bend tended to suffer penetrating failure along the fracture strike, while the...
Cracking processes have been extensively studied in brittle rock and rock-like materials. Due to the...
Layered rock masses with holes are common in nature. Their mechanical behavior plays an important ro...
Abstract—A rock material biaxial compression test simulation based on the contact constitutive model...
The General Particle Dynamics code (GPD) is developed to simulate initiation, propagation and coales...
Using discrete element software, namely, particle flow code as two-dimensional program (PFC2D), two ...
In this research, a novel meshless numerical method, termed general particle dynamics (GPD), to simu...
Many research results show that under any stress state the rock mass is most likely to crack, swell,...
To understand the deformation and fracture behavior of rock, it is useful to observe the variation o...
The common occurrence of various number and distribution of hole flaws complicates the mechanical be...
Based on the experimental results of an intact rock specimen under uniaxial compression, particle fl...
Abstract The existence of various types of damage, small cracks, some large voids and the size of th...
Based on the particle flow code, numerical models of vertical and horizontal orientations of holes w...
To explore the failure mechanism of rock with holes and fissures, uniaxial compression tests of sand...
Cracking processes have been extensively studied in brittle rock and rock-like materials. Due to the...
Rocks have formed heterogeneous characteristics after experiencing complex natural geological proces...
Cracking processes have been extensively studied in brittle rock and rock-like materials. Due to the...
Layered rock masses with holes are common in nature. Their mechanical behavior plays an important ro...
Abstract—A rock material biaxial compression test simulation based on the contact constitutive model...
The General Particle Dynamics code (GPD) is developed to simulate initiation, propagation and coales...
Using discrete element software, namely, particle flow code as two-dimensional program (PFC2D), two ...
In this research, a novel meshless numerical method, termed general particle dynamics (GPD), to simu...
Many research results show that under any stress state the rock mass is most likely to crack, swell,...
To understand the deformation and fracture behavior of rock, it is useful to observe the variation o...
The common occurrence of various number and distribution of hole flaws complicates the mechanical be...
Based on the experimental results of an intact rock specimen under uniaxial compression, particle fl...
Abstract The existence of various types of damage, small cracks, some large voids and the size of th...
Based on the particle flow code, numerical models of vertical and horizontal orientations of holes w...
To explore the failure mechanism of rock with holes and fissures, uniaxial compression tests of sand...
Cracking processes have been extensively studied in brittle rock and rock-like materials. Due to the...
Rocks have formed heterogeneous characteristics after experiencing complex natural geological proces...
Cracking processes have been extensively studied in brittle rock and rock-like materials. Due to the...
Layered rock masses with holes are common in nature. Their mechanical behavior plays an important ro...
Abstract—A rock material biaxial compression test simulation based on the contact constitutive model...