A Study of Mechanism of Pressure Sensitivity Changes in CaO-Stabilized Red Clay Under Cyclic Loading ConditionsA Study of Mechanism of Pressure Sensitivity Changes in CaO-Stabilized Red Clay Under Cyclic Loading ConditionsShen, Qiao, and Zhang
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作者:
Haiyang Shen
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机构:
Shanxi Vocational University of Engineering Science and Technology,College of Architecture and EngineeringShanxi Vocational University of Engineering Science and Technology,College of Architecture and Engineering
Haiyang Shen
[1
]
Junyi Qiao
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机构:
Shanxi Vocational University of Engineering Science and Technology,College of Architecture and EngineeringShanxi Vocational University of Engineering Science and Technology,College of Architecture and Engineering
Junyi Qiao
[1
]
Zhiqiang Zhang
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机构:
Taiyuan University of Technology,School of Civil EngineeringShanxi Vocational University of Engineering Science and Technology,College of Architecture and Engineering
Zhiqiang Zhang
[2
]
机构:
[1] Shanxi Vocational University of Engineering Science and Technology,College of Architecture and Engineering
[2] Taiyuan University of Technology,School of Civil Engineering
To study the pressure sensitivity of CaO solidified red mud, the pressure sensitivity of CaO solidified red mud under different calcium oxide content and curing age conditions was tested. Through studying the porosity and pore size distribution, the internal relationship between pore structure and pressure sensitivity of materials was discussed. The results show that the compressive strength is the highest when the CaO content is 25%. The resistivity change rate is also better at 25%CaO content, and the pressure sensitivity of the material decreases with increasing curing age. With the increase of CaO content and curing age, the pores of large and small pore size increase at the same time, and the pressure sensitivity of the sample with small porosity changes more under cyclic load, which may be related to the sample being easy to compact and increases in the conductive path. The addition of CaO promoted the active substances in the red mud to participate in the hydration reaction, the generated C-(A)-S-H improved the skeleton structure, the small pore size increased, and the formation of calcium aluminate led to the increase of large pores, which confirmed the change of pore structure.
机构:
College of Mining, Guizhou University, Guizhou, GuiyangCollege of Mining, Guizhou University, Guizhou, Guiyang
Ye P.
Li B.
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机构:
College of Mining, Guizhou University, Guizhou, Guiyang
Natl. & Loc. Jt. Lab. of Eng. for Effective Utiliz. of Regional Mineral Resources from Karst Areas, Guizhou University, Guizhou, Guiyang
Guizhou Key Laboratory of Comprehensive Utilization of Non-metallic Mineral Resources, Guizhou, GuiyangCollege of Mining, Guizhou University, Guizhou, Guiyang
Li B.
Wu X.
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机构:
College of Mining, Guizhou University, Guizhou, GuiyangCollege of Mining, Guizhou University, Guizhou, Guiyang
Wu X.
Song H.
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机构:
College of Mining, Guizhou University, Guizhou, GuiyangCollege of Mining, Guizhou University, Guizhou, Guiyang
Song H.
Cheng Q.
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机构:
College of Mining, Guizhou University, Guizhou, GuiyangCollege of Mining, Guizhou University, Guizhou, Guiyang
Cheng Q.
Xu J.
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机构:
State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, ChongqingCollege of Mining, Guizhou University, Guizhou, Guiyang
Xu J.
Zhongguo Kuangye Daxue Xuebao/Journal of China University of Mining and Technology,
2023,
52
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: 739
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749