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

Mechanical and Acoustic Emission Characteristics of Coal-like Rock Specimens under Static Direct Shear and Dynamic Normal Load

View through CrossRef
In underground engineering, shear failure is a common failure type in coal-rock mass under medium and low strain-rate disturbance loads. Analyzing the shear failure mechanical properties of coal-rock mass under dynamic normal load is significant. In order to reveal the influence of disturbance load on the shear mechanical properties of coal rock, a dynamic and static load coupling electro-hydraulic servo testing machine was used to conduct the shear tests of coal-like rock materials under dynamic and constant normal load. The amplitude of dynamic load is 10 kN and the frequency is 5 Hz. The damage process of the specimens was detected by the acoustic emission (AE) detection system. The results imply that the shear failure process of coal-like rock materials under constant normal load can be divided into four stages. The normal disturbance decreased the shear strength of the specimens and increased the shear modulus of the specimens. With the increase in normal load, the influence of disturbance on the shear strength of the specimen decreased. By analyzing the AE parameters, it was found that the dynamic load made the internal damage of the specimen more severe during the shear failure process. The damage variable was calculated by AE cumulative energy, and the damage evolution was divided into three stages. The shear failure mechanism of the specimen was judged by RA (rise time/amplitude) and AF (average frequency). It was found that from the elastic deformation stage to the unstable development fracture stage, the proportion of shear fracture increased. When the dynamic normal load was 10 kN and 30 kN, the fracture was mainly shear fracture; When the dynamic normal load was 50 kN, the fracture was mainly tensile or mixed fracture. The dynamic normal load affects the shear strength and failure mechanism. Therefore, the influence of disturbance load on coal-rock mass strength cannot be ignored in underground engineering.
Title: Mechanical and Acoustic Emission Characteristics of Coal-like Rock Specimens under Static Direct Shear and Dynamic Normal Load
Description:
In underground engineering, shear failure is a common failure type in coal-rock mass under medium and low strain-rate disturbance loads.
Analyzing the shear failure mechanical properties of coal-rock mass under dynamic normal load is significant.
In order to reveal the influence of disturbance load on the shear mechanical properties of coal rock, a dynamic and static load coupling electro-hydraulic servo testing machine was used to conduct the shear tests of coal-like rock materials under dynamic and constant normal load.
The amplitude of dynamic load is 10 kN and the frequency is 5 Hz.
The damage process of the specimens was detected by the acoustic emission (AE) detection system.
The results imply that the shear failure process of coal-like rock materials under constant normal load can be divided into four stages.
The normal disturbance decreased the shear strength of the specimens and increased the shear modulus of the specimens.
With the increase in normal load, the influence of disturbance on the shear strength of the specimen decreased.
By analyzing the AE parameters, it was found that the dynamic load made the internal damage of the specimen more severe during the shear failure process.
The damage variable was calculated by AE cumulative energy, and the damage evolution was divided into three stages.
The shear failure mechanism of the specimen was judged by RA (rise time/amplitude) and AF (average frequency).
It was found that from the elastic deformation stage to the unstable development fracture stage, the proportion of shear fracture increased.
When the dynamic normal load was 10 kN and 30 kN, the fracture was mainly shear fracture; When the dynamic normal load was 50 kN, the fracture was mainly tensile or mixed fracture.
The dynamic normal load affects the shear strength and failure mechanism.
Therefore, the influence of disturbance load on coal-rock mass strength cannot be ignored in underground engineering.

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...
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...
The CO2 storage in coal seams at the influence of coal fines migration
The CO2 storage in coal seams at the influence of coal fines migration
Abstract: the pressure of the coal seam decays to a certain value due to the production of CH4, the production wells are switched to CO2 injection wells. The injection of CO2 can i...
Bedding Effect on the Deformation: Damage Differentiation of Coal Mass
Bedding Effect on the Deformation: Damage Differentiation of Coal Mass
In order to reveal the mechanical properties and damage mechanism of coal with parallel multibedding under stress disturbance, the raw coal samples with parallel multibedding were ...
On Flores Island, do "ape-men" still exist? https://www.sapiens.org/biology/flores-island-ape-men/
On Flores Island, do "ape-men" still exist? https://www.sapiens.org/biology/flores-island-ape-men/
<span style="font-size:11pt"><span style="background:#f9f9f4"><span style="line-height:normal"><span style="font-family:Calibri,sans-serif"><b><spa...
Numerical Analysis of Roadway Rock-Burst Hazard under Superposed Dynamic and Static Loads
Numerical Analysis of Roadway Rock-Burst Hazard under Superposed Dynamic and Static Loads
Microseismic events commonly occur during the excavation of long wall panels and often cause rock-burst accidents when the roadway is influenced by dynamic loads. In this paper, th...
Improved Gas-In-Place Determination for Coal Gas Reservoirs
Improved Gas-In-Place Determination for Coal Gas Reservoirs
Abstract The Upper Cretaceous Fruitland Formation of the San Juan Basin of Colorado and New Mexico has been a very active natural gas play in recent years. Case...
Practical Aspects Of Coal Degasification
Practical Aspects Of Coal Degasification
Abstract The increase in value of energy resources has generated serious interest in so-called "unconventional energy resource developments", Coal and coal gas re...

Back to Top