2007•Rock and Soil MechanicsRequires access

Strength and deformation characteristics of concrete under dynamic biaxial loading

Gao Lin

Open publisher page 1 citations

Abstract

Compressive tests on cubic specimens were conducted at different strain rates using a servo-hydraulic multiaxial testing machine.Considerable emphasis was laid on the dynamic strength and deformation properties of concrete in biaxial stress state.The lateral pressure was kept in proportion to the main axial load with the ratio of 0:1,0.25:1,0.5:1,0.75:1 and 1:1 respectively at the strain rate ranging from 10-5/s to 10-2/s.From the test results it is revealed that the dynamic strength is enhanced with the increasing of strain rate.The shear failure envelope is enlarged by 2 %–10 % in case of the strain rate increasing by one order of the magnitude compared with that under static loading.The modulus of elasticity also increases with the increasing of strain rate.The linear part of the stress-strain curves tends to extend as far as strain rate increases,while the curvature of the nonlinear part tends to diminish.Moreover,strain rate has little influence on the fracture modes of specimens in biaxial stress states.

About this research paper

What this paper is about

Compressive tests on cubic specimens were conducted at different strain rates using a servo-hydraulic multiaxial testing machine.Considerable emphasis was laid on the dynamic strength and deformation properties of concrete in biaxial stress state.The lateral pressure was kept in proportion to the main axial load with the ratio of 0:1,0.25:1,0.5:1,0.75:1 and 1:1 respectively at the strain rate ranging from 10-5/s to 10-2/s.From the test results it is revealed that the dynamic strength is enhanced with the increasing of strain rate.The shear failure envelope is enlarged by 2 %–10 % in case of the strain rate increasing by one order of the magnitude compared with that under static loading.The modulus of elasticity also increases with the increasing of strain rate.The linear part of the stress-strain curves tends to extend as far as strain rate increases,while the curvature of the nonlinear part tends to diminish.Moreover,strain rate has little influence on the fracture modes of specimens in biaxial stress states.

Why it matters

OpenAlex reports 1 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

Compressive tests on cubic specimens were conducted at different strain rates using a servo-hydraulic multiaxial testing machine.Considerable emphasis was laid on the dynamic strength and deformation properties of concrete in biaxial stress state.The lateral pressure was kept in proportion to the main axial load with the ratio of 0:1,0.25:1,0.5:1,0.75:1 and 1:1 respectively at the strain rate ranging from 10-5/s to 10-2/s.From the test results it is revealed that the dynamic strength is enhanced with the increasing of strain rate.The shear failure envelope is enlarged by 2 %–10 % in case of the strain rate increasing by one order of the magnitude compared with that under static loading.The modulus of elasticity also increases with the increasing of strain rate.The linear part of the stress-strain curves tends to extend as far as strain rate increases,while the curvature of the nonlinear part tends to diminish.Moreover,strain rate has little influence on the fracture modes of specimens in biaxial stress states.

Key concepts: Materials science, Strain rate, Structural engineering, Composite material, Deformation (meteorology), Envelope (radar), Strain (injury), Curvature

Related papers

Back to paper searchBrowse research topicsOriginal source
Strength and deformation characteristics of concrete under dynamic biaxial loading — Research Paper | ScholarLens