2008Rock and Soil MechanicsRequires access

Research on large size direct shear test for geocell reinforced soil

Huang Fangjun

Open publisher page 2 citations

Abstract

The experimental research on shear properties of geocell reinforced soil and geocell reinforced cement stabilized soil was carried out by using a large size direct shear equipment (500 mm×500 mm×400 mm, length×width×height) which was developed by South China University of Technology. Through the experiments, the shearing process of geocell reinforced soil was simulated. The shear strength indices and its strengthening theory by mechanics were determined. The experimental results show that the relationship curve of shear stress to shear strain of geocell reinforced soil is nonlinear. In addition, the cohesive force index was increased greatly. The friction angle was increased relatively less. Furthermore, on the purpose of understanding the influences of testing methods, three kinds of shear tests including regular direct shear test, large size direct shear test and triaxial compression test with in-situ soil and 5 % dosage of cement stabilized soil were conducted. The corresponding shear strength indices of different kinds of testing methods are in sequence from less to more as below: Friction angle of soil: triaxial compression test less than large size direct shear test less than regular direct shear test. Cohesive of soil: large size direct shear test is less than triaxial compression test less than regular direct shear test. Friction angle of cement stabilized soil: triaxial compression test is less than large size direct shear test. Cohesive force of cement stabilized soil: triaxial compression test less than large size direct shear test.

About this research paper

What this paper is about

The experimental research on shear properties of geocell reinforced soil and geocell reinforced cement stabilized soil was carried out by using a large size direct shear equipment (500 mm×500 mm×400 mm, length×width×height) which was developed by South China University of Technology. Through the experiments, the shearing process of geocell reinforced soil was simulated. The shear strength indices and its strengthening theory by mechanics were determined. The experimental results show that the relationship curve of shear stress to shear strain of geocell reinforced soil is nonlinear. In addition, the cohesive force index was increased greatly. The friction angle was increased relatively less. Furthermore, on the purpose of understanding the influences of testing methods, three kinds of shear tests including regular direct shear test, large size direct shear test and triaxial compression test with in-situ soil and 5 % dosage of cement stabilized soil were conducted. The corresponding shear strength indices of different kinds of testing methods are in sequence from less to more as below: Friction angle of soil: triaxial compression test less than large size direct shear test less than regular direct shear test. Cohesive of soil: large size direct shear test is less than triaxial compression test less than regular direct shear test. Friction angle of cement stabilized soil: triaxial compression test is less than large size direct shear test. Cohesive force of cement stabilized soil: triaxial compression test less than large size direct shear test.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The experimental research on shear properties of geocell reinforced soil and geocell reinforced cement stabilized soil was carried out by using a large size direct shear equipment (500 mm×500 mm×400 mm, length×width×height) which was developed by South China University of Technology. Through the experiments, the shearing process of geocell reinforced soil was simulated. The shear strength indices and its strengthening theory by mechanics were determined. The experimental results show that the relationship curve of shear stress to shear strain of geocell reinforced soil is nonlinear. In addition, the cohesive force index was increased greatly. The friction angle was increased relatively less. Furthermore, on the purpose of understanding the influences of testing methods, three kinds of shear tests including regular direct shear test, large size direct shear test and triaxial compression test with in-situ soil and 5 % dosage of cement stabilized soil were conducted. The corresponding shear strength indices of different kinds of testing methods are in sequence from less to more as below: Friction angle of soil: triaxial compression test less than large size direct shear test less than regular direct shear test. Cohesive of soil: large size direct shear test is less than triaxial compression test less than regular direct shear test. Friction angle of cement stabilized soil: triaxial compression test is less than large size direct shear test. Cohesive force of cement stabilized soil: triaxial compression test less than large size direct shear test.

Key concepts: Direct shear test, Triaxial shear test, Geotechnical engineering, Shearing (physics), Materials science, Shear (geology), Soil test, Soil mechanics

Related papers

Back to paper searchBrowse research topicsOriginal source
Research on large size direct shear test for geocell reinforced soil — Research Paper | ScholarLens