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Shear Behaviour of Cemened River Sand

고결된 하상모래의 전단거동

  • Published : 2007.02.28

Abstract

In this research, artificially cemented sand which is made of a few portland cement and Nak-Dong river sand was researched closely. For providing the fundamental data which is needed in design and analysis of levee material, the shear behavior of cemented sands was investigated by drained triaxial test, and analyzed in accordance with the increase of cement content. The peak strength and elasitc modulus increased and dilation of cemented sand was restricted by the cementation, but after breakage of the cementation, dilation increased, cohesion intercetpt and friction angle increased with the increase of cement content and strain softening behavior appeared in stress-strain curve.

본 연구에서는 낙동강하상모래에 소량의 포틀랜드시멘트를 고결작용제로 사용한 시멘트혼합토의 제체재료의 적합성검토 설계 및 해석에 필요한 기초자료를 제공하고자 배수조건의 삼축압축시험을 수행하여 시멘트혼합율의 증가에 따른 전단거동을 분석하였다. 시멘트혼합율의 증가에 따라 첨두강도 및 탄성계수는 증가 하였고 시멘트의 결합력에 의하여 다일레이션이 억제되었으나 시멘트 결합력의 파괴후 다일레이션은 증가하였다. 그리고 응력-변형률 곡선에서 연화거동이 나타났으며 시멘트혼합율의 증가에 따라 점착력 및 내부마찰각이 증가하였다.

Keywords

References

  1. Asghari, E., Toll, D. G. and Haeri, S. M. (2003), 'Triaxial Behavior of a cemented Gravely Sand. Tehran Alluvium', Journal of Geotechnical and Geological Engineering, Vol.21, No.1, pp.1-28 https://doi.org/10.1023/A:1022934624666
  2. Avramidis and Saxena, S. K. (1985), 'Behavior of cementedstabilized sands under static and dynamic loads', Report No. IITCE85-01, Department of Civil Engineering, Illinois Institute of Technology, Chicago
  3. Black, D. K. and Lee, K. I. (1973), 'Saturating laboratory samples by back pressure', J. Soil Mechanics & Foundation Division ASCE, Vol.99, No.SM1, Paper 9484, pp.75-93
  4. Boyenton, R. S. (1996), 'Chemistry and technology of lime and limestone', John Wiley and Sons
  5. Clough, G. w., Iwabuchi, J., Rad, N. S., and Kuppusamy, T. (1989), 'Influence of cementation on liquefaction of sands', ASCE, Vol.115, No.8, pp.1 102-1 117
  6. Consoli, N. C, Prietto, D. M. and Ulbrich, I. A. (1998), 'Influence of Fiber and Cement Anddition on Behavior of Sandy Soil', Journal of Geotechnical and Geoenvironmental Engineering, ASCE, Vol, 124, No.12, pp.1211-1214 https://doi.org/10.1061/(ASCE)1090-0241(1998)124:12(1211)
  7. Coop, M. R., and Atkinson, J. H. (1993), 'The mechanics of cemented carbonate sands', Geotechnique, vol.43, No.1, pp.53-67 https://doi.org/10.1680/geot.1993.43.1.53
  8. Dupas, J-M. and peeker, A. (1979), Static and dynamic properties of sand-cement. Jouranl of the Geotechnical Engineering Division, ASCE, 105(GT3): 419-436
  9. Fernando S., Pedro D. M., Prietto., and Nilo C. C. (2001) 'Characterization of cemented sand in triaxial compression', ASCE, Vol.127, No.10, pp.857-868
  10. Haeri, S. M., Yasrobi, S., and Asghari, E. (2002), 'Effects of Cementation on the Shear Strength Parameters of Tehran Allubium Using the Large Direct Shear Test', 9th IAEG Contress, Durban, South Africal pp.519-525
  11. Huang, J. T.and Airey, D. W. (1998), 'Properties of Artificially Cemented Carbonate Sand', ASCE, Journal of Geotechbical and Geoenvironmental Engineering, Vol. 124, No.6, pp.482-499
  12. Ismail (2002b), 'Cementation of porous materials using calcite' : Geotechnique, Vol.52, No.5, pp.313-324 https://doi.org/10.1680/geot.52.5.313.38709
  13. Leroueil, S. and Vaughan, P. R. (1990), The general and congruent effects of structure in natural soils and weak rocks. Geotechnique, 40(3): 467-488 https://doi.org/10.1680/geot.1990.40.3.467
  14. Malandraki, V. and Toll, D .G. (2000), 'Drained probing triaxial tests on a weakly bonded artificial soil', Geotechnique, London, 50(2), 141-151 https://doi.org/10.1680/geot.2000.50.2.141
  15. Omae, S., Sato, N., and Oomoto, I. (2003), Dynamic properties of CSG:, Proc of 4th Inter. Conf. on Roller compacted concrete dam, Spain pp.511-518
  16. Saxena, S. K and Lastrico, R. M. (1978), 'Static Properties of Lightly Cemented Sand', ASCE Journal of Geotechnical Engineering, Vol.104, No.12, pp.1449-1465
  17. Skempton, A. W. (1954), The pore pressure coefficients A and B, Geotechnique, London, 4, 143-147 https://doi.org/10.1680/geot.1954.4.4.143
  18. Sowers (1979), Introductory Soil Mechanics and Foundation:Geotechnical Engineering, 4th Edition, Macmillan Company, New York, NY
  19. Wissa and Ladd (1965), 'Effective stress strength parameters of stabilized soils' : Proc., Sixth Int. Conference of Soil Mechanics, International Society of Soil Mechanics and Foundation Engineering, 1, 412-416