Arid
DOI10.3390/min12060704
Mechanical Properties and Acoustic Emission Characteristics of Water-Bearing Coal Specimens under a Coupled Compression-Shear Load
Wang, Lan; Wu, Peng; Li, Ming; Mao, Xianbiao; Chen, Liang
通讯作者Li, M
来源期刊MINERALS
EISSN2075-163X
出版年2022
卷号12期号:6
英文摘要The construction of an underground coal mine reservoir plays an essential role in the ecological environment of arid areas. The moisture content and loading angle inclination significantly impact the strength and stability of the safety coal pillar of underground reservoirs. Water-bearing coal was investigated under a coupled compression-shear load using inclined uniaxial compression tests on coal samples with varying water contents (omega = 0%, 2.42%, 5.53%, 7.55%, and 10.08%) and acoustic emission (AE) technology. The weakening mechanism of the mechanical property parameters and the crack evolution law, combined with the characteristics of the stress-strain curve, the cumulative AE count, and the cumulative AE energy methods, were used. Therefore, the evolution law of the coal's crack closure (CC) threshold, crack initiation (CI) threshold, and crack damage (CD) threshold was analyzed. The results indicate that coal samples' peak stress and elastic modulus decreased when the water content or inclination angle increased. Peak shear stress decreased as the water content rose, and the overall characteristics gradually rose as the inclination angle increased. The exception was when the ratio was 10.08%; when the inclination angle was 0 degrees, the failure mode of the coal sample progressively changed from tension failure (omega = 0%, 2.42%) to tension-shear composite failure (omega = 5.53%), and finally to shear failure (omega = 7.55%, 10.08%). When the inclination angle was 5 degrees, the coal sample was dominated by tension-shear composite failure at any moisture content. When the inclination angle was 10 degrees and 15 degrees, the coal specimens showed shear failure at any moisture content. The evolution law of tensile and shear cracks determined by AE characteristic parameters was consistent with the macrofracture characteristics of the coal specimens. When the water content or inclination angle increased, the crack closure threshold, crack initiation threshold, and damage threshold of the coal samples decreased. Therefore, these results show that their peak stress ratio does not depend on the water content or inclination angle.
英文关键词water-bearing coal specimen inclination angle mechanical characteristics AE characteristics crack evolution
类型Article
语种英语
开放获取类型gold
收录类别SCI-E
WOS记录号WOS:000818143700001
WOS关键词TRIAXIAL COMPRESSION ; CRACK INITIATION ; BRITTLE ROCKS ; FAILURE ; DAMAGE ; BEHAVIOR ; FRACTURE ; STRESS ; PROPAGATION ; EVOLUTION
WOS类目Geochemistry & Geophysics ; Mineralogy ; Mining & Mineral Processing
WOS研究方向Geochemistry & Geophysics ; Mineralogy ; Mining & Mineral Processing
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/393803
推荐引用方式
GB/T 7714
Wang, Lan,Wu, Peng,Li, Ming,et al. Mechanical Properties and Acoustic Emission Characteristics of Water-Bearing Coal Specimens under a Coupled Compression-Shear Load[J],2022,12(6).
APA Wang, Lan,Wu, Peng,Li, Ming,Mao, Xianbiao,&Chen, Liang.(2022).Mechanical Properties and Acoustic Emission Characteristics of Water-Bearing Coal Specimens under a Coupled Compression-Shear Load.MINERALS,12(6).
MLA Wang, Lan,et al."Mechanical Properties and Acoustic Emission Characteristics of Water-Bearing Coal Specimens under a Coupled Compression-Shear Load".MINERALS 12.6(2022).
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