To study the mechanical properties of saturated sandstone, experiments were conducted under hydro-mechanical coupling on saturated sandstone. A damage constitutive model was established to describe the response of saturated sandstone under pore pressure, and its validity was verified using the results of the triaxial tests. The results indicate that the peak strength (σ p), effective peak strength (σ p′), residual strength (σ r), effective normal stress (σ n′), effective shear strength (τ n′), elasticity modulus (E), and rupture angle (θ) of sandstone are positively correlated with the confining pressure (σ 3) and negatively correlated with the pore pr...
‘Coupled process’ implies that one process affects the initiation and progress of the others and vic...
In order to explore the failure characteristics of sandstone under unloading conditions in deep zone...
A dynamic constitutive model of tensile and compressive damage was constructed on the basis of the Z...
In this paper, mechanical property tests of sandstone with multiple shapes of prefabricated fracture...
This paper investigates mechanical behaviours of sandstone during post-peak cyclic loading and unloa...
Chemical corrosion has a significant impact on the damage evolution behavior of rock. To investigate...
It is important to study the dilatancy property of water-saturated rock for understanding the engine...
The study on hydromechanical coupling properties of rocks is of great importance for rock engineerin...
Hydraulic coupling often leads to progressive rock failure accidents. Mechanical tests were performe...
The mechanical and hydraulic properties of rock mass play a crucial role in underground engineering....
To investigate the mechanical properties and energy evolution characteristics of sandstone depending...
Given that apparent differences exist between physical and mechanical properties of sandstone consti...
In the engineering fields of mining, tunneling, slopes, and dams, rocks are usually subject to the c...
Aiming at the problem of temperature-mechanics-chemical (T-M-C) action encountered by rocks in under...
Deep in-situ rock mechanics considers the influence of the in-situ environment on mechanical propert...
‘Coupled process’ implies that one process affects the initiation and progress of the others and vic...
In order to explore the failure characteristics of sandstone under unloading conditions in deep zone...
A dynamic constitutive model of tensile and compressive damage was constructed on the basis of the Z...
In this paper, mechanical property tests of sandstone with multiple shapes of prefabricated fracture...
This paper investigates mechanical behaviours of sandstone during post-peak cyclic loading and unloa...
Chemical corrosion has a significant impact on the damage evolution behavior of rock. To investigate...
It is important to study the dilatancy property of water-saturated rock for understanding the engine...
The study on hydromechanical coupling properties of rocks is of great importance for rock engineerin...
Hydraulic coupling often leads to progressive rock failure accidents. Mechanical tests were performe...
The mechanical and hydraulic properties of rock mass play a crucial role in underground engineering....
To investigate the mechanical properties and energy evolution characteristics of sandstone depending...
Given that apparent differences exist between physical and mechanical properties of sandstone consti...
In the engineering fields of mining, tunneling, slopes, and dams, rocks are usually subject to the c...
Aiming at the problem of temperature-mechanics-chemical (T-M-C) action encountered by rocks in under...
Deep in-situ rock mechanics considers the influence of the in-situ environment on mechanical propert...
‘Coupled process’ implies that one process affects the initiation and progress of the others and vic...
In order to explore the failure characteristics of sandstone under unloading conditions in deep zone...
A dynamic constitutive model of tensile and compressive damage was constructed on the basis of the Z...