Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Study on Mechanical Strength and Mechanism of Coal Gangue–Magnesium Oxide-Stabilized Expansive Soil

View through CrossRef
This study investigates the effectiveness of magnesium oxide (MgO) and coal gangue in improving expansive soil roadbeds through wet–dry cycle tests, unconfined compressive strength tests, and direct shear tests. The results demonstrate that coal gangue effectively suppresses non-load-induced swelling rates in expansive soil. At 15% coal gangue content, the unconfined compressive strength peaked at 0.6 MPa. Further incorporation of MgO at 2%, 4%, 6%, 8%, and 10% concentrations showed that 10% MgO significantly enhanced strength to 3.1 MPa, surpassing both the untreated soil (0.07 MPa) and coal gangue-only treatment (0.6 MPa). While wet–dry cycle tests revealed a gradual decrease in strength with repeated cycles, increasing MgO content mitigated this decline, resulting in coal gangue–MgO-stabilized soil with excellent water stability. Scanning electron microscopy revealed MgO-hydrated cementitious materials encapsulating expansive soil particles and connecting coal gangue particles, though fine cracks were observed near coal gangue surfaces.
Title: Study on Mechanical Strength and Mechanism of Coal Gangue–Magnesium Oxide-Stabilized Expansive Soil
Description:
This study investigates the effectiveness of magnesium oxide (MgO) and coal gangue in improving expansive soil roadbeds through wet–dry cycle tests, unconfined compressive strength tests, and direct shear tests.
The results demonstrate that coal gangue effectively suppresses non-load-induced swelling rates in expansive soil.
At 15% coal gangue content, the unconfined compressive strength peaked at 0.
6 MPa.
Further incorporation of MgO at 2%, 4%, 6%, 8%, and 10% concentrations showed that 10% MgO significantly enhanced strength to 3.
1 MPa, surpassing both the untreated soil (0.
07 MPa) and coal gangue-only treatment (0.
6 MPa).
While wet–dry cycle tests revealed a gradual decrease in strength with repeated cycles, increasing MgO content mitigated this decline, resulting in coal gangue–MgO-stabilized soil with excellent water stability.
Scanning electron microscopy revealed MgO-hydrated cementitious materials encapsulating expansive soil particles and connecting coal gangue particles, though fine cracks were observed near coal gangue surfaces.

Related Results

Coal
Coal
AbstractCoal is an organic, combustible, rock‐like natural substance that occurs in various forms from hard and brittle anthracite to soft and friable lignite. Coal is sometimes cl...
Enhancing Fatigue Performance of Coal Gangue Concrete (CGC) through Polypropylene Fiber Modification: Experimental Evaluation
Enhancing Fatigue Performance of Coal Gangue Concrete (CGC) through Polypropylene Fiber Modification: Experimental Evaluation
Coal gangue is a byproduct of coal mining and processing, and according to incomplete statistics, China has amassed a substantial coal gangue stockpile exceeding 2600 large mountai...
Research on water immersion damage characteristics and equivalent width of coal pillar
Research on water immersion damage characteristics and equivalent width of coal pillar
Abstract Affected by weakening effect of water in the goaf, the bearing capacity of coal pillar reduced, and coal pillar rock burst is prone to occur, which is a serious th...
Field study on the improvement of coal gangue filling using dynamic compaction
Field study on the improvement of coal gangue filling using dynamic compaction
In this study, dynamic compaction method was used to treat the gangue hill of the Xinglongzhuang coal mine in China, and the deep compaction of deep coal gangue was examined. The c...
Character of the Si and Al Phases in Coal Gangue and Its Ash
Character of the Si and Al Phases in Coal Gangue and Its Ash
Abstract:Analysis of the Si and Al phases in coal gangue fuel and its ash is important for use of coal gangue ashes. A comprehensive study by theoretical and experimental analyses ...
Research on Efficient Matching Method of Coal Gangue Recognition Image and Sorting Image
Research on Efficient Matching Method of Coal Gangue Recognition Image and Sorting Image
Abstract The coal gangue sorting robot may encounter variations in the pose of the target coal gangue due to belt slippage, deviation, and speed fluctuations, leading to fa...
Resource-efficient technology for the utilization of serpentine technogenic waste with the production of magnesium oxide
Resource-efficient technology for the utilization of serpentine technogenic waste with the production of magnesium oxide
The article discusses the possibility of using serpentine and serpentine waste from Zhitikara deposit for the production of inorganic magnesium compounds: MgSO4, Mg(OH)2 and MgO. T...

Back to Top