Frost-induced microstructure degradation of rocks is one of the main reasons for the changes in their dynamic mechanical behavior in cold environments. To this end, computed tomography (CT) was performed to quantify the changes in the microstructure of yellow sandstone after freeze–thaw (F–T) action. On this basis, the influence of the microscopic parameters on the dynamic mechanical behavior was studied. The results showed that the strain rate enhanced the dynamic mechanical properties, but the F–T-induced decrease in strength and elastic modulus increased with increasing strain rate. After 40 F–T cycles, the dynamic strength of the samples increased by 41% to 75.6 MPa when the strain rate was increased from 75 to 115 s−1, which is 2.5 tim...
The mechanical properties of fractured rock mass are largely dependent on the fracture structure und...
Under freeze-thaw cycles, the relationship between rock microstructure deterioration and its macrosc...
Aiming at the dynamic mechanical properties of weakly cemented fine sandstone in the rich water-bear...
Frost-induced microstructure degradation of rocks is one of the main reasons for the changes in thei...
Abstract Rock deterioration under freeze–thaw cycles is a concern for in-service tunnel in cold regi...
Rocks in cold regions are often exposed to extreme temperature change, and different loading conditi...
In order to study the damage characteristics of the yellow sandstone containing pores under the free...
In order to understand the mechanical properties and energy dissipation law of frozen sandstone unde...
The mesostructures of rocks determine their macromechanical properties. These rock mesostructures ma...
The freeze–thaw process plays a dominant role as far as the exploration and development of natural r...
In order to study the mechanical properties of sandstone under the coupling action of chemical erosi...
The repeated cyclic freeze-thaw effect in low-temperature environments causes irreversible damage an...
After rocks are damaged under stress loading, the changes of their microstructural and mechanical pr...
To analyze the effects of freeze-thaw cycles and confining pressure on the mechanical properties of ...
Using the freeze-thaw cycle test chamber, the red sandstone samples are subjected to cyclic freeze-t...
The mechanical properties of fractured rock mass are largely dependent on the fracture structure und...
Under freeze-thaw cycles, the relationship between rock microstructure deterioration and its macrosc...
Aiming at the dynamic mechanical properties of weakly cemented fine sandstone in the rich water-bear...
Frost-induced microstructure degradation of rocks is one of the main reasons for the changes in thei...
Abstract Rock deterioration under freeze–thaw cycles is a concern for in-service tunnel in cold regi...
Rocks in cold regions are often exposed to extreme temperature change, and different loading conditi...
In order to study the damage characteristics of the yellow sandstone containing pores under the free...
In order to understand the mechanical properties and energy dissipation law of frozen sandstone unde...
The mesostructures of rocks determine their macromechanical properties. These rock mesostructures ma...
The freeze–thaw process plays a dominant role as far as the exploration and development of natural r...
In order to study the mechanical properties of sandstone under the coupling action of chemical erosi...
The repeated cyclic freeze-thaw effect in low-temperature environments causes irreversible damage an...
After rocks are damaged under stress loading, the changes of their microstructural and mechanical pr...
To analyze the effects of freeze-thaw cycles and confining pressure on the mechanical properties of ...
Using the freeze-thaw cycle test chamber, the red sandstone samples are subjected to cyclic freeze-t...
The mechanical properties of fractured rock mass are largely dependent on the fracture structure und...
Under freeze-thaw cycles, the relationship between rock microstructure deterioration and its macrosc...
Aiming at the dynamic mechanical properties of weakly cemented fine sandstone in the rich water-bear...