Hybrid fracture and the transition from extension fracture to shear fracture
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作者:
Jonathan M. Ramsey
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机构:Texas A&M University,Center for Tectonophysics, Department of Geology and Geophysics
Jonathan M. Ramsey
Frederick M. Chester
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机构:Texas A&M University,Center for Tectonophysics, Department of Geology and Geophysics
Frederick M. Chester
机构:
[1] Texas A&M University,Center for Tectonophysics, Department of Geology and Geophysics
[2] Anadarko Petroleum Corporation,undefined
来源:
Nature
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2004年
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428卷
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摘要:
Fracture is a fundamental mechanism of material failure. Two basic types of brittle fractures are commonly observed in rock deformation experiments—extension (opening mode) fractures and shear fractures1,2. For nearly half a century it has been hypothesized that extension and shear fractures represent end-members of a continuous spectrum of brittle fracture types3,4,5,6. However, observations of transitional fractures that display both opening and shear modes (hybrids) in naturally deformed rock have often remained ambiguous, and a clear demonstration of hybrid fracture formation has not been provided by experiments4. Here we present the results of triaxial extension experiments on Carrara marble that show a continuous transition from extension fracture to shear fracture with an increase in compressive stress. Hybrid fractures form under mixed tensile and compressive stress states at acute angles to the maximum principal compressive stress. Fracture angles are greater than those observed for extension fractures and less than those observed for shear fractures. Fracture surfaces also display a progressive change from an extension to shear fracture morphology.
机构:
Fed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, Brazil
Fed Ctr Technol Educ Rio Janeiro, CEFET RJ, BR-20271204 Rio De Janeiro, BrazilFed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, Brazil
Neto, Ranulfo
Mendes, Bernardo
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Fed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, BrazilFed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, Brazil
Mendes, Bernardo
Borges, Bernardo
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Fed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, BrazilFed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, Brazil
Borges, Bernardo
Moreira, Carolina
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机构:
State Univ Rio Janeiro, Lab Adhes & Adhes, BR-28625570 Nova Friburgo, BrazilFed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, Brazil
Moreira, Carolina
Sampaio, Eduardo
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State Univ Rio Janeiro, Lab Adhes & Adhes, BR-28625570 Nova Friburgo, BrazilFed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, Brazil
Sampaio, Eduardo
Banea, Mariana
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机构:
Fed Ctr Technol Educ Rio Janeiro, CEFET RJ, BR-20271204 Rio De Janeiro, Brazil
Univ Aveiro, Aveiro Inst Mat, Dept Mat & Ceram Engn, CICECO, P-3810193 Aveiro, PortugalFed Univ Rio Janeiro, Ctr Technol & Applicat Composites, BR-27965045 Macae, Brazil