Dynamic mechanical response and failure characteristics of coal and rock under saltwater immersion conditions

The stability of coal and rock masses in water-rich mines is affected by both mine water erosion and dynamic disturbances. Thus, it is necessary to study the dynamic mechanical response and failure characteristics of coal and rock under the combination of saltwater and a high strain rate. To this en...

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Published inScientific reports Vol. 14; no. 1; p. 11869
Main Authors Sun, Xiaoyuan, Liu, Kai, Jin, Tingxu, Wang, Kai, Lin, Shurong, Pang, Jiewen, Xie, Jianlin
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 24.05.2024
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Abstract The stability of coal and rock masses in water-rich mines is affected by both mine water erosion and dynamic disturbances. Thus, it is necessary to study the dynamic mechanical response and failure characteristics of coal and rock under the combination of saltwater and a high strain rate. To this end, a split Hopkinson pressure bar device was employed to investigate the effects of impact velocity, water content, and immersion liquid on the dynamic mechanical behaviours of coal and rock. The results revealed that the weakening effect of saltwater on the dynamic mechanical properties of coal and rock is much greater than that of distilled water. With increasing moisture content, the dynamic compressive strength of the coal specimens decreases monotonically, while that of the rock shows a trend of first increasing and then decreasing. The failure process and destruction of coal and rock are comprehensively affected by both the external impact load and the physical and mechanical properties of the material. The degree of damage of the coal and rock specimens increases with increasing impact velocity and water content. Moreover, the influence of various factors on the impact fracture mechanism of coal and rock under saltwater immersion conditions was revealed. These findings are highly important for the design and maintenance of underground coal and rock building structures.
AbstractList The stability of coal and rock masses in water-rich mines is affected by both mine water erosion and dynamic disturbances. Thus, it is necessary to study the dynamic mechanical response and failure characteristics of coal and rock under the combination of saltwater and a high strain rate. To this end, a split Hopkinson pressure bar device was employed to investigate the effects of impact velocity, water content, and immersion liquid on the dynamic mechanical behaviours of coal and rock. The results revealed that the weakening effect of saltwater on the dynamic mechanical properties of coal and rock is much greater than that of distilled water. With increasing moisture content, the dynamic compressive strength of the coal specimens decreases monotonically, while that of the rock shows a trend of first increasing and then decreasing. The failure process and destruction of coal and rock are comprehensively affected by both the external impact load and the physical and mechanical properties of the material. The degree of damage of the coal and rock specimens increases with increasing impact velocity and water content. Moreover, the influence of various factors on the impact fracture mechanism of coal and rock under saltwater immersion conditions was revealed. These findings are highly important for the design and maintenance of underground coal and rock building structures.
Abstract The stability of coal and rock masses in water-rich mines is affected by both mine water erosion and dynamic disturbances. Thus, it is necessary to study the dynamic mechanical response and failure characteristics of coal and rock under the combination of saltwater and a high strain rate. To this end, a split Hopkinson pressure bar device was employed to investigate the effects of impact velocity, water content, and immersion liquid on the dynamic mechanical behaviours of coal and rock. The results revealed that the weakening effect of saltwater on the dynamic mechanical properties of coal and rock is much greater than that of distilled water. With increasing moisture content, the dynamic compressive strength of the coal specimens decreases monotonically, while that of the rock shows a trend of first increasing and then decreasing. The failure process and destruction of coal and rock are comprehensively affected by both the external impact load and the physical and mechanical properties of the material. The degree of damage of the coal and rock specimens increases with increasing impact velocity and water content. Moreover, the influence of various factors on the impact fracture mechanism of coal and rock under saltwater immersion conditions was revealed. These findings are highly important for the design and maintenance of underground coal and rock building structures.
ArticleNumber 11869
Author Pang, Jiewen
Lin, Shurong
Sun, Xiaoyuan
Xie, Jianlin
Wang, Kai
Liu, Kai
Jin, Tingxu
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  givenname: Xiaoyuan
  surname: Sun
  fullname: Sun, Xiaoyuan
  organization: College of Safety and Emergency Management Engineering, Taiyuan University of Science and Technology, Intelligent Monitoring and Control of Coal Mine Dust Key Laboratory of Shanxi Province, Taiyuan University of Science and Technology
– sequence: 2
  givenname: Kai
  surname: Liu
  fullname: Liu, Kai
  email: 18829036130@163.com
  organization: College of Safety and Emergency Management Engineering, Taiyuan University of Science and Technology
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  givenname: Tingxu
  surname: Jin
  fullname: Jin, Tingxu
  organization: College of Safety and Emergency Management Engineering, Taiyuan University of Science and Technology
– sequence: 4
  givenname: Kai
  surname: Wang
  fullname: Wang, Kai
  organization: College of Safety and Emergency Management Engineering, Taiyuan University of Science and Technology
– sequence: 5
  givenname: Shurong
  surname: Lin
  fullname: Lin, Shurong
  organization: School of Emergency Management and Safety Engineering, China University of Mining and Technology (Beijing)
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  givenname: Jianlin
  surname: Xie
  fullname: Xie, Jianlin
  organization: College of Safety and Emergency Management Engineering, Taiyuan University of Science and Technology
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Keywords Water-bearing coal and rock mass
Dynamic mechanical response
Failure characteristic
Fractal dimension
Saltwater
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Snippet The stability of coal and rock masses in water-rich mines is affected by both mine water erosion and dynamic disturbances. Thus, it is necessary to study the...
Abstract The stability of coal and rock masses in water-rich mines is affected by both mine water erosion and dynamic disturbances. Thus, it is necessary to...
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SubjectTerms 639/166/986
639/4077/4082/4059
Coal
Distilled water
Dynamic mechanical response
Failure characteristic
Fractal dimension
Humanities and Social Sciences
Immersion
Mechanical properties
Mine drainage
Moisture content
multidisciplinary
Physical properties
Rocks
Saline water
Saltwater
Science
Science (multidisciplinary)
Velocity
Water content
Water-bearing coal and rock mass
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Title Dynamic mechanical response and failure characteristics of coal and rock under saltwater immersion conditions
URI https://link.springer.com/article/10.1038/s41598-024-62596-w
https://www.ncbi.nlm.nih.gov/pubmed/38789567
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https://www.proquest.com/docview/3060382503
https://doaj.org/article/72a8f559ce1244c4ae20cd834cf08980
Volume 14
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