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dc.creatorPapadimitriou, A. G.en
dc.creatorDafalias, Y. F.en
dc.creatorManzari, M. T.en
dc.date.accessioned2015-11-23T10:42:50Z
dc.date.available2015-11-23T10:42:50Z
dc.date.issued2007
dc.identifier.isbn9780415440271
dc.identifier.isbn415440270
dc.identifier.urihttp://hdl.handle.net/11615/31670
dc.description.abstractSANICLAY is a new simple anisotropic clay plasticity model that builds on a modification of an earlier model with an associated flow rule, in order to include simulations of softening response under undrained compression following Ko consolidation. Non-associativity is introduced by adopting a yield surface different than the plastic potential surface. Besides the isotropic hardening of the yield surface both surfaces evolve according to a combined distortional and rotational hardening rule, simulating the evolving anisotropy. Although built on the general premises of Critical State Soil Mechanics, the model incorporates a Critical State Line in the void ratio - mean effective stress space, which is a function of anisotropy. To facilitate the discussion, the model formulation is presented in the triaxial stress space. The SANICLAY is shown to provide successful simulation of the rate-independent behavior of normally consolidated sensitive clays, and to a satisfactory degree of accuracy of overconsolidated clays. The new model requires merely three more constants than those of the modified Cam clay model, all of which are easily calibrated from well established laboratory tests (two of them by explicit algebraic expressions) following a procedure presented on the basis of data for the Boston Blue clay. © 2007 Taylor & Francis Group.en
dc.source.urihttp://www.scopus.com/inward/record.url?eid=2-s2.0-56249112654&partnerID=40&md5=08e327abd40cea2cb9f0ec4b712b5a72
dc.subjectABS resinsen
dc.subjectAnisotropyen
dc.subjectClay mineralsen
dc.subjectConstitutive modelsen
dc.subjectCritical current density (superconductivity)en
dc.subjectElasticityen
dc.subjectFoundationsen
dc.subjectHardeningen
dc.subjectMechanicsen
dc.subjectNumerical methodsen
dc.subjectPlasticityen
dc.subjectPlasticsen
dc.subjectSoil mechanicsen
dc.subjectStressesen
dc.subjectAlgebraic expressionsen
dc.subjectAnisotropic claysen
dc.subjectAssociated flow rulesen
dc.subjectAssociativityen
dc.subjectBoston Blue claysen
dc.subjectCritical state linesen
dc.subjectCritical state soil mechanicsen
dc.subjectEffective stressesen
dc.subjectIsotropic hardeningsen
dc.subjectLaboratory testsen
dc.subjectModel formulationsen
dc.subjectModified cam clay modelsen
dc.subjectNew modelsen
dc.subjectNormally consolidateden
dc.subjectOverconsolidated claysen
dc.subjectPlastic potentialsen
dc.subjectPlasticity modelsen
dc.subjectRotational hardeningsen
dc.subjectSatisfactory degreesen
dc.subjectSensitive claysen
dc.subjectTriaxial stressesen
dc.subjectUndraineden
dc.subjectVoid ratiosen
dc.subjectYield surfacesen
dc.subjectGeologic modelsen
dc.titleSANICLAY: A new simple anisotropic clay plasticity modelen
dc.typeconferenceItemen


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