2006
DOI: 10.1007/s11440-006-0010-z
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On a viscoplastic model for rocks with mechanism-dependent characteristic times

Abstract: This paper summarizes the results of a theoretical and experimental program at Sandia National Laboratories aimed at identifying and modeling key physical features of rocks and rock-like materials at the laboratory scale over a broad range of strain rates. The mathematical development of a constitutive model is discussed and model predictions versus experimental data are given for a suite of laboratory tests. Concurrent pore collapse and cracking at the microscale are seen as competitive micromechanisms that g… Show more

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Cited by 48 publications
(22 citation statements)
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References 12 publications
(11 reference statements)
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“…On the other hand, the kinematic hardening corresponds to a translation of the elastic domain. The use of this formulation is motivated by the observation of nonlinear behavior during indentation unloading (see Section 2) and its use in a model for rock material can be found e.g., in 37 . The kinematic hardening variable (i.e.…”
Section: Inelastic Flow Hardening and Damagementioning
confidence: 99%
“…On the other hand, the kinematic hardening corresponds to a translation of the elastic domain. The use of this formulation is motivated by the observation of nonlinear behavior during indentation unloading (see Section 2) and its use in a model for rock material can be found e.g., in 37 . The kinematic hardening variable (i.e.…”
Section: Inelastic Flow Hardening and Damagementioning
confidence: 99%
“…There have recently been several successful applications of this model for predicting fracture of ceramics under static and dynamic loading (Fossum and Brannon 2006). The M-C criterion is a special case of the Sandia GeoModel (Fossum and Brannon 2005).…”
Section: Introductionmentioning
confidence: 99%
“…Other concerns are that Eqs. (4.25) and (4.26) have not been well validated in tension, and the current (2008) implementation does not consistently incorporate a "z-tensor" of the type discussed by Brannon [14] that is required in incremental plasticity with elastic-plastic coupling.…”
Section: Shear and Bulk Modulimentioning
confidence: 99%