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Erschienen in: Bulletin of Engineering Geology and the Environment 8/2019

13.04.2019 | Original Paper

The effect of plastic fines on the shear modulus and damping ratio of silty sands

verfasst von: Ke Cheng, Jun Zhang, Yu Miao, Bin Ruan, Tao Peng

Erschienen in: Bulletin of Engineering Geology and the Environment | Ausgabe 8/2019

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Abstract

The dynamic behavior of soil material is of importance in construction and geotechnical engineering. This study focuses on the dynamic properties of silty sands, particularly on the effect of plastic fines content (FC) on the shear modulus and damping ratio. Natural sand (Taiyuan sand) and fines (Taiyuan loess) were collected from an engineering site in China. Fujian standard sand, kaolin, and stone powder were also used for comparison. Fines plasticity, FC, effective confining pressure, and relative density were considered. A series of tests were conducted using a Stokoe-type resonant column apparatus manufactured by GDS Instruments, UK. The small strain shear modulus (Gmax) of the samples were investigated under various test conditions. Hardin’s function was used to fit the experimental data. The results indicate that the shear modulus changes non-linearly with increasing FC. The shear modulus of various mixtures initially decreases and then increases. The threshold FC (FCth) of Taiyuan and Fujian sand mixtures is 30% and 20%, respectively, which indicates that the FCth is related to the host sand. The addition of plastic fines will decrease the shear modulus. The effect of non-plastic fines on the shear modulus of sand–fines mixtures is dependent on FC. The damping ratio of various mixtures initially increases and then decreases with increasing FC. The addition of fines will increase the damping ratio. Moreover, the damping ratio of plastic fines mixtures is higher than that of non-plastic fines mixtures. The values of the fitting constant, namely, A, n, and d, are related to fines plasticity. The findings of this study can provide a reference for engineering designers.

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Literatur
Zurück zum Zitat ASTM. D4015-15 (2015) Standard test methods for modulus and damping of soils by fixed-base resonant column devices. ASTM International, West Conshohocken ASTM. D4015-15 (2015) Standard test methods for modulus and damping of soils by fixed-base resonant column devices. ASTM International, West Conshohocken
Zurück zum Zitat Cavallaro A, Maugeri M (2005) Seismic prevention of damage: a case study in a Mediterranean City, Chapter 7: Non Linear Behaviour of Sandy Soil for the City of Catania, Wit Press, Southampton, p 115–132CrossRef Cavallaro A, Maugeri M (2005) Seismic prevention of damage: a case study in a Mediterranean City, Chapter 7: Non Linear Behaviour of Sandy Soil for the City of Catania, Wit Press, Southampton, p 115–132CrossRef
Zurück zum Zitat Hardin BO, Black WL (1966) Sand stiffness under various triaxial stresses. J Soil Mech Found Div ASCE 92(2):27–42 Hardin BO, Black WL (1966) Sand stiffness under various triaxial stresses. J Soil Mech Found Div ASCE 92(2):27–42
Zurück zum Zitat Hardin BO, Drnevich VP (1972) Shear modulus and damping in soil: measurement and parameter effects. J Soil Mech Found Div 98(6):603–624 Hardin BO, Drnevich VP (1972) Shear modulus and damping in soil: measurement and parameter effects. J Soil Mech Found Div 98(6):603–624
Zurück zum Zitat Hardin BO, Richart FE (1963) Elastic wave velocities in granular soils. J Soil Mech Found Div ASCE 89(1):33–65 Hardin BO, Richart FE (1963) Elastic wave velocities in granular soils. J Soil Mech Found Div ASCE 89(1):33–65
Zurück zum Zitat Isenhower WM (1979) Torsional simple shear-resonant column properties of San Francisco Bay mud. PhD thesis. The University of Texas at Austin, Austin, TX Isenhower WM (1979) Torsional simple shear-resonant column properties of San Francisco Bay mud. PhD thesis. The University of Texas at Austin, Austin, TX
Zurück zum Zitat Ishihara K (1996) Soil behaviour in earthquake geotechnics. Oxford Science, Oxford Ishihara K (1996) Soil behaviour in earthquake geotechnics. Oxford Science, Oxford
Zurück zum Zitat Jamiolkowski M, Lancellotta R, Lo Presti DCF (1995) Remarks on the stiffness at small strains of six Italian clays. In: Proceedings of the first international symposium prefailure deformation characteristics of geomaterials, p 817–836 Jamiolkowski M, Lancellotta R, Lo Presti DCF (1995) Remarks on the stiffness at small strains of six Italian clays. In: Proceedings of the first international symposium prefailure deformation characteristics of geomaterials, p 817–836
Zurück zum Zitat Kramer LS (1996) Geotechnical earthquake engineering. Prentice Hall, Upper Saddle River Kramer LS (1996) Geotechnical earthquake engineering. Prentice Hall, Upper Saddle River
Zurück zum Zitat Seed HB, Idriss IM (1970) Soil moduli and damping factors for dynamic response analyses. University of California, Berkeley, CA, Report EERC-70-10, Earthquake Engineering Research Center Seed HB, Idriss IM (1970) Soil moduli and damping factors for dynamic response analyses. University of California, Berkeley, CA, Report EERC-70-10, Earthquake Engineering Research Center
Zurück zum Zitat Thevanayagam S, Liang J (2001) Shear Wave Velocity Relations for Silty and Gravely Soils. 4th International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics. University of Missouri Rolla, San Diego, CA Thevanayagam S, Liang J (2001) Shear Wave Velocity Relations for Silty and Gravely Soils. 4th International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics. University of Missouri Rolla, San Diego, CA
Metadaten
Titel
The effect of plastic fines on the shear modulus and damping ratio of silty sands
verfasst von
Ke Cheng
Jun Zhang
Yu Miao
Bin Ruan
Tao Peng
Publikationsdatum
13.04.2019
Verlag
Springer Berlin Heidelberg
Erschienen in
Bulletin of Engineering Geology and the Environment / Ausgabe 8/2019
Print ISSN: 1435-9529
Elektronische ISSN: 1435-9537
DOI
https://doi.org/10.1007/s10064-019-01522-1

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