Research Article
Feb 1963

Hyperbolic Stress-Strain Response: Cohesive Soils

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Publication: Journal of the Soil Mechanics and Foundations Division
Volume 89, Issue 1

Abstract

The divergent concepts of a stability analysis, as compared with a load-deformation approach to soil mechanics, are shown to be compatible within the framework of a hyperbolic stress-strain relation. The two-constant hyperbolic form of the stress-strain response is such that the ultimate shear strength of the soil is contained within the general formulation and appears in the mathematical limit of the stress as the strain becomes excessive. This is quantiatively demonstrated for a remolded cohesive soil tested in consolidated-undrained triaxial compression. The variables contained in the hyperbolic stress-strain relation include the preconsolidation pressure, rebound stress, lateral pressure during the test, vertical normal stress, strain, and rate of strain. History effects are included in terms of the overconsolidation ratio. The general formulations obtained for the consolidated-undrained triaxial tests are compared with the results reported in the literature by other investigators for both drained and undrained consolidated triaxial tests under various conditions.

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Journal of the Soil Mechanics and Foundations Division
Volume 89Issue 1February 1963
Pages: 115 - 143

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Published in print: Feb 1963
Published online: Feb 12, 2021

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Robert L. Kondner, AM.ASCE
Assoc. Prof. of Civ. Engrg., The Technological Institute, Northwestern Univ., Evanston, Ill.

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