Browse > Article
http://dx.doi.org/10.5394/KINPR.2012.36.5.395

Characteristics of River Sand Soil Parameter for Single Work-Hardening Constitutive Model to Stress Path  

Lee, Jong-Cheon (Dept. of Civil Engineering & Landscape Architecture, DongKang College)
Cho, Won-Beom (Korea Institute of Construction Technology)
Abstract
The stress-strain relationship of soil is dependent on a number of factors such as soil type, density, stress level and stress path. Th accurate stress-stain relationship can be predict using a constitutive model incorporated all influencing factors. In this study, an isotropic compression-expansion test and a series of drained conventional triaxial tests with several stress paths were performed on Baekma river sand to investigate parameters characteristics of Lade's single work hardening model depending on the stress path.. Based on test results, the parameters of yield function (h, ${\alpha}$) are not much influenced by stress level and stress path, the these parameters do affect a little bit of stress-strain behavior. The parameters h and ${\alpha}$ are closely related to failure criterion ${\eta}_1$, they can be replaced by failure criterion parament. We also observed that predicted values from the Lade's single hardening constitutive model are well matched with the observed data.
Keywords
Single Work-Hardening Constitutive Model; Soil Parameter; Stress Path; CD test; Istropic test;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Yudhbir S.K. and A.Varadarajan(1975), "Stress Path Dependent Deformation Module of Clay", Journal of Geotechnical Engineering, ASCE, Vol.101, No. GT3, pp.315-327.
2 정진섭, 김찬기, 이문수(1992), "단일항복면 구성모델에 의한 입상토의 비배수거동해석", 대한토목학회 논문집, 제12권, 제2호, pp. 177-189.
3 김찬기, 조원범, 김중철(2011), "백마강 모래의 상대밀도에 따른 Lade의 단일항복면 구성모델의 토질매개변수 특성", 대한토목학회 논문집, 제31권, 제1C호, pp.11-17.
4 Desai, C.S.(1977), "Constitutive law for geologic media" In C.S., Desai and J.T. Christian(ed.), Numerical methods in geotechical engineering, pp.65-115, McGraw hill Book Company, New York.
5 Druker, D.C., Gibson, R.E. and Henkel, D.J.(1957), "Soil mechanics and work-hardening theories of plasticity", Trans, Vol. 122, pp. 333-345.
6 Kondner, R.L.(1963), "Hyperbolic Stress-Strain Response: Cohesive Soils", Journal of the Soil Mechanics and Foundations Division, ASCE, Vol. 89, No, SM1, pp.115-143.
7 Lade, P.V.(1990), "Single Hardening Model with Application to NC Clay", Journal of Geotechnical Engineering, ASCE, Vol.116, No.3, pp.394-414.   DOI
8 Roscoe, K. H., Schofield, A. N. and Worth, C.P.(1958) On the Yielding of Soil. Geotechnique, Vol.8, No.1, pp.22-52.   DOI
9 Varadarajan, A. and Mishra, S.S.(1980), "Stress-path Dependent Stress Strain Volume Change Behaviour of a Granular Soil", Proc. International Symposium on Soils under Cyclic and Transient Loading, Swansea, pp. 109-119.