TY - JOUR
T1 - Mechanical characteristics and energy dissipation characteristics of dredged sand concrete during triaxial loading
AU - Luan, Jinjin
AU - Chen, Xudong
AU - Ning, Yingjie
AU - Zhang, Wei
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2022/9/1
Y1 - 2022/9/1
N2 - During the service period, the concrete structures such as water gates, dams and concrete offshore platforms are often in a complex stress state such as triaxial loading. Therefore, it is very necessary to explore the force of concrete with different dredged sand contents under triaxial loading. In this paper, the failure modes of dredged sand concrete under different confining pressures were analyzed firstly. And then the mechanical property was explored. Finally, combined with CT technology, the three-dimensional structure of the fractured sample was reconstructed to realize the 3D visualization and the energy evolution mechanism of concrete triaxial monotonic compression under different confining pressures was explored. The results showed that the residual stress of concrete under triaxial cyclic loading was smaller than that under monotonic loading. According to Mohr-Coulomb failure criterion, the prediction failure angle of the sample is generally 66.1°–77.1°. With the increase of loading times, the energy loss developed more slowly, and the elastic modulus of loading and unloading decreased slightly. The calculation results of the parameterized constitutive equations of concrete under triaxial compression were in good agreement with the experimental results. Concrete was seriously damaged under the condition of low confining pressure and cyclic loading. Before the peak stress, the concrete samples mainly stored elastic energy.
AB - During the service period, the concrete structures such as water gates, dams and concrete offshore platforms are often in a complex stress state such as triaxial loading. Therefore, it is very necessary to explore the force of concrete with different dredged sand contents under triaxial loading. In this paper, the failure modes of dredged sand concrete under different confining pressures were analyzed firstly. And then the mechanical property was explored. Finally, combined with CT technology, the three-dimensional structure of the fractured sample was reconstructed to realize the 3D visualization and the energy evolution mechanism of concrete triaxial monotonic compression under different confining pressures was explored. The results showed that the residual stress of concrete under triaxial cyclic loading was smaller than that under monotonic loading. According to Mohr-Coulomb failure criterion, the prediction failure angle of the sample is generally 66.1°–77.1°. With the increase of loading times, the energy loss developed more slowly, and the elastic modulus of loading and unloading decreased slightly. The calculation results of the parameterized constitutive equations of concrete under triaxial compression were in good agreement with the experimental results. Concrete was seriously damaged under the condition of low confining pressure and cyclic loading. Before the peak stress, the concrete samples mainly stored elastic energy.
KW - CT scan
KW - Dredged sand concrete
KW - Energy mechanism
KW - Mechanical property
KW - Triaxial loading
UR - http://www.scopus.com/inward/record.url?scp=85131061174&partnerID=8YFLogxK
U2 - 10.1016/j.jobe.2022.104700
DO - 10.1016/j.jobe.2022.104700
M3 - Article
AN - SCOPUS:85131061174
SN - 2352-7102
VL - 55
JO - Journal of Building Engineering
JF - Journal of Building Engineering
M1 - 104700
ER -