Crack Initiation and Coalescence Behavior of Two Non-parallel Flaws

Crack initiation and coalescence behavior of rock or rock-like specimens containing artificial flaws under uniaxial compression have been subjects of intensive investigation in the past. Most of these investigations however focused on crack initiation and coalescence between two or more parallel fla...

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Published inGeotechnical and geological engineering Vol. 36; no. 1; pp. 105 - 133
Main Authors Afolagboye, Lekan Olatayo, He, Jianming, Wang, Sijing
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.02.2018
Springer Nature B.V
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ISSN0960-3182
1573-1529
DOI10.1007/s10706-017-0310-0

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Abstract Crack initiation and coalescence behavior of rock or rock-like specimens containing artificial flaws under uniaxial compression have been subjects of intensive investigation in the past. Most of these investigations however focused on crack initiation and coalescence between two or more parallel flaws. Although there have been few experimental studies on non-parallel flaws, these studies did not address the influence of geometrical factors such as ligament length and ligament angle on the crack initiation and coalescence behavior of non-parallel flaws. To investigate whether the individual geometrical factors have similar effects on the crack initiation and coalescence behavior of both parallel and non-parallel flaws, we conducted uniaxial compression tests to investigate crack cracking and coalescence processes in rock like material containing two non-parallel flaws. The paper presents the influence of individual geometrical factors on the crack initiation process and coalescence pattern of non-parallel flaws. Initiation of primary first cracks from all the tips of the two flaws did not occur simultaneously in all the flaw configurations. The flaw configuration of the non-parallel flaws influences the crack initiation, crack trajectories and coalescence behavior. The crack coalescence pattern changes with an increasing ligament angle from indirect to shear crack or mixed tensile-shear crack to tensile crack coalescence. The chance of direct coalescence is reduced with an increase in ligament length. In conclusion, the crack initiation and coalescence behavior of prismatic rock-like specimens with non-parallel flaws, as influenced by the geometrical factors, are analogous to the cracking and coalescence pattern observed in specimens with parallel flaws.
AbstractList Crack initiation and coalescence behavior of rock or rock-like specimens containing artificial flaws under uniaxial compression have been subjects of intensive investigation in the past. Most of these investigations however focused on crack initiation and coalescence between two or more parallel flaws. Although there have been few experimental studies on non-parallel flaws, these studies did not address the influence of geometrical factors such as ligament length and ligament angle on the crack initiation and coalescence behavior of non-parallel flaws. To investigate whether the individual geometrical factors have similar effects on the crack initiation and coalescence behavior of both parallel and non-parallel flaws, we conducted uniaxial compression tests to investigate crack cracking and coalescence processes in rock like material containing two non-parallel flaws. The paper presents the influence of individual geometrical factors on the crack initiation process and coalescence pattern of non-parallel flaws. Initiation of primary first cracks from all the tips of the two flaws did not occur simultaneously in all the flaw configurations. The flaw configuration of the non-parallel flaws influences the crack initiation, crack trajectories and coalescence behavior. The crack coalescence pattern changes with an increasing ligament angle from indirect to shear crack or mixed tensile-shear crack to tensile crack coalescence. The chance of direct coalescence is reduced with an increase in ligament length. In conclusion, the crack initiation and coalescence behavior of prismatic rock-like specimens with non-parallel flaws, as influenced by the geometrical factors, are analogous to the cracking and coalescence pattern observed in specimens with parallel flaws.
Author He, Jianming
Wang, Sijing
Afolagboye, Lekan Olatayo
Author_xml – sequence: 1
  givenname: Lekan Olatayo
  surname: Afolagboye
  fullname: Afolagboye, Lekan Olatayo
  organization: Key Laboratory of Shale Gas and Geoengineering, Institute of Geology and Geophysics, Chinese Academy of Sciences, University of Chinese Academy of Sciences
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  givenname: Jianming
  surname: He
  fullname: He, Jianming
  email: hjm@mail.iggcas.ac.cn
  organization: Key Laboratory of Shale Gas and Geoengineering, Institute of Geology and Geophysics, Chinese Academy of Sciences
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  givenname: Sijing
  surname: Wang
  fullname: Wang, Sijing
  organization: Key Laboratory of Shale Gas and Geoengineering, Institute of Geology and Geophysics, Chinese Academy of Sciences
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Geotechnical and Geological Engineering is a copyright of Springer, (2017). All Rights Reserved.
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Keywords Non-parallel flaws
Molded gypsum
Primary cracks
Crack coalescence
Crack initiation
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Snippet Crack initiation and coalescence behavior of rock or rock-like specimens containing artificial flaws under uniaxial compression have been subjects of intensive...
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StartPage 105
SubjectTerms Civil Engineering
Coalescence
Coalescing
Compression
Compression tests
Configurations
Crack initiation
Cracks
Earth and Environmental Science
Earth Sciences
Geotechnical Engineering & Applied Earth Sciences
Hydrogeology
Investigations
Ligaments
Original Paper
Rocks
Shear
Terrestrial Pollution
Waste Management/Waste Technology
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Title Crack Initiation and Coalescence Behavior of Two Non-parallel Flaws
URI https://link.springer.com/article/10.1007/s10706-017-0310-0
https://www.proquest.com/docview/2259810602
Volume 36
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