On yield stresses and the influence of curing stresses on stress paths and strength measured in triaxial testing of stabilized soils

被引:56
作者
Ahnberg, Helen [1 ]
机构
[1] Swedish Geotech Inst, SE-58193 Linkoping, Sweden
关键词
stabilization; triaxial tests; strength; quasi-preconsolidation pressure; strain; binders;
D O I
10.1139/T06-096
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Studies on the behaviour of stabilized soils under different loading conditions are essential to identify which parameters are relevant in the design of deep mixing, An investigation has been performed on soils stabilized with different types of binders with the purpose of demonstrating the effects of quasi-preconsolidation pressures, i.e., yield stresses that are not primarily linked to previous consolidation pressures but to the cementation taking place, on the strength behaviour of stabilized soil. The effect of stresses applied during curing has also been studied. Drained triaxial compression tests and undrained triaxial compression and extension tests were performed on two stabilized clays. The binders used were cement, lime, slag, and fly ash in different combinations. Comparisons have also been made with results from previous tests on two organic soils stabilized with much the same types of binder. The results show that both the cementation processes involved and the stresses applied during curing affect the quasi-preconsolidation pressure. This pressure is strongly linked to the strength of the stabilized soil and has a considerable influence on its deformation behaviour. A model is proposed which describes the strength behaviour in the same effective stress plane that is commonly used for natural clays.
引用
收藏
页码:54 / 66
页数:13
相关论文
共 43 条
[31]  
Rao M. R., PROC INST CIV ENG-GR, V161, P23, DOI [10.1680/grim.2008.161.1.23, DOI 10.1680/GRIM.2008.161.1.23]
[32]   Isotropic yielding in an artificially cemented soil cured under stress [J].
Rotta, GV ;
Consoli, NC ;
Prietto, PDM ;
Coop, MR ;
Graham, J .
GEOTECHNIQUE, 2003, 53 (05) :493-501
[33]  
*SWED STAND I, 1992, 027129 SS SWED STAND
[34]  
*SWED STAND I, 1991, 027126 SS SWED STAND
[35]  
Tatsuoka F., 1983, P 8 EUR C SOIL MECH, V8, P421
[36]   Mechanical improvement and vertical yield stress prediction of clayey soils from eastern Canada treated with lime or cement [J].
Tremblay, H ;
Leroueil, S ;
Locat, J .
CANADIAN GEOTECHNICAL JOURNAL, 2001, 38 (03) :567-579
[37]   Lime treated clay: Salient engineering properties and a conceptual model [J].
Uddin, MK ;
Buensuceso, BR .
SOILS AND FOUNDATIONS, 2002, 42 (05) :79-89
[38]  
von Post L., 1924, Das genetische system der organogenen bildungen schwedens. Memoires sur la nomenclature et la classification des sols, P287
[39]  
YAMAMOTO T, 2002, P 4 INT C GROUND IMP, P761
[40]  
Yin JH, 2001, GEOTECH TEST J, V24, P299