Experimental and Theoretical Studies on the Creep Behavior of Bayer Red Mud

Author:

Zhao Baoyun12ORCID,Huang Wei12,Shu Zhile3,Han Mengmeng4,Feng Yanbo5

Affiliation:

1. School of Civil Engineering and Architecture, Chongqing University of Science and Technology, Chongqing 401331, China

2. Chongqing Key Laboratory of Energy Engineering Mechanics and Disaster Prevention and Mitigation, Chongqing 401331, China

3. School of Civil and Environmental Engineering, Xihua University, Chengdu 610039, China

4. Chongqing Test Center of Geology and Minerals, Chongqing 400042, China

5. School of Civil Engineering and Architecture, Chongqing University of Arts and Sciences, Chongqing 402160, China

Abstract

Long-term stability and safety of the Bayer red mud (BRM) disposal field is very important for the local residents’ life, which necessitates the knowledge of its creep behavior. In order to investigate the creep behavior of BRM, a series of triaxial drained creep tests were conducted by using an improved triaxial creep apparatus. The results indicate that the creep behavior of BRM is significant with confining and deviatoric stresses being critical factors. The creep strain is in a nonlinear relationship with stress and time, and a larger deviator stress will lead to a larger creep strain. The main failure mechanism of BRM is plastic shear, accompanied by a significant compression and ductile dilatancy. Based on the test results, two well-established creep models, the Burgers creep model and Singh–Mitchell creep model, were used to comparatively analyze the creep behavior of the Bayer red mud under a certain stress level. Then, an improved Burgers creep damage constitutive model with the addition of a damage variable was proposed, whose parameters were also analyzed in detail. The comparison of the calculated values of the creep model and the experimental values shows that the proposed creep damage model can better describe the instant elastic deformation, attenuation creep, steady-state creep, and accelerated creep stages of the Bayer red mud.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

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