Mechanical Responses of Fine Sand under Different Impact Loading Frequencies and Intermediate Principal Stresses
Zhangming Li
Abstract
Zhangming Li
Abstract
We carried out cyclic impact and consolidation tests with different intermediate principal stresses on saturated fine sand by using improved SPAX-2000 true triaxial testing system,and investigated the mechanical responses of the sand such as stress-strain relations and strength variation of specimen after the impact loading under different conditions.Results showed that: when intermediate principal stress increased,the specimen under impact loading was easily tend to be dense,and shear strength was largely improved;when the frequency of impact load was lower and the intermediate principal stress smaller,shear strength of the specimen increased significantly,while when the second principal stress was larger,shear strength of the specimen rarely varied.The results indicate that intermediate principal stress and frequency of impact load are important factors affecting the dynamic consolidation.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We carried out cyclic impact and consolidation tests with different intermediate principal stresses on saturated fine sand by using improved SPAX-2000 true triaxial testing system,and investigated the mechanical responses of the sand such as stress-strain relations and strength variation of specimen after the impact loading under different conditions.Results showed that: when intermediate principal stress increased,the specimen under impact loading was easily tend to be dense,and shear strength was largely improved;when the frequency of impact load was lower and the intermediate principal stress smaller,shear strength of the specimen increased significantly,while when the second principal stress was larger,shear strength of the specimen rarely varied.The results indicate that intermediate principal stress and frequency of impact load are important factors affecting the dynamic consolidation.
Key concepts: Principal stress, Consolidation (business), Geotechnical engineering, Shear (geology), Shear stress, Materials science, Triaxial shear test, Composite material