입상토의 응력경로 의존거동

Stress-Path Dependent Behavior of Granular Soil

  • 발행 : 1998.02.01

초록

The nature of stress-path dependency, the principle that governs deformations in granular soil, and the use of Lade's double work-hardening model for predicting soil response for a variety of stress-paths have been investigated, and are examined The test results and the analyses presented show that under some conditions granular soils exhibit stress-path dependent behavior. For stress-paths involving unloading or reloading, the stress-path with the higher average stress level produces the larger strains, whereas all stress-paths having the same intial states of stress, and involving only primary loading conditions, produce strains of similar magnitudes. Experimental evidence indicates that the stress- path dependent response obtained from the double work-hardening model is also observed for real soils. It is concluded that the influence of stress history on the friction angle is negligible and the strains increment direction is uniquely determined from the state of stress but is not perpendicular to the yield surface. The strains calculated from Lade's double work-hardening model are in reasonable agreement with those measured.

키워드

참고문헌

  1. 한국지반공학회지 v.8 탄-소성 구성모델의 토질매개변수 예민성 정진섭;김찬기;이문순
  2. 대한토목학회논문집 v.12 Lade의 Double Work-Hardening 구성모델의 토질매개변수 민감성해석 정진섭;김찬기;이문수
  3. Yielding of Sand in Triaxial Compression v.14 no.2
  4. An Experimental Programme to Define The Yield Function for Sand v.18 no.4 Nova,R.;Wood,D.M.
  5. Journal of Geotechnical Engineering v.101 no.GT3 Stress Path Dependent Deformation Module of Clay. Yudhbir;Varadarajan,A.
  6. International Symposium on Soils under Cyslic and Transient Loading v.7 no.11 Stress Strain Relationship of Sand and Its Application to FEM Analysis Tobita,Y.;Yanagisawa,E.
  7. Journal of the Soil Mechanics and Foundations Division v.99 no.SM10 Stress Path Dependent Behavior of Cohesionless Soli Lade,P.V.;Duncan,J.M.