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Erschienen in: Geotechnical and Geological Engineering 2/2012

01.04.2012 | Original paper

Deformation Modulus of Fly Ash Modified with Lime and Gypsum

verfasst von: Ambarish Ghosh, Chillara Subbarao

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 2/2012

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Abstract

Deformation modulus of fly ash is one of the most important mechanical properties generally used in different design problems and also as an input parameter to sophisticated numerical techniques employed to assess the response of different structures resting on fly ash fill or embankment made of fly ash. Deformation modulus is usually expressed in terms of compressive strength. This paper presents the deformation modulus of fly ash modified with lime alone or in combination with gypsum at different strain levels. The values of deformation modulus obtained from both unconfined compression test and unconsolidated undrained triaxial test results are presented herein. The specimens for unconfined compression test and for undrained triaxial tests were cured up to 90 and 28 days, respectively. The effects of addition of lime (4–10%) and gypsum (0.5 and 1.0%) on the deformation modulus of class F fly ash are highlighted. With addition of lime and gypsum, the class F fly ash achieved the deformation modulus in the range of 190 MPa in UCS test and up to 300 MPa in triaxial test specimens tested under all round pressure of 0.4 MPa. Based on the present test results empirical relationships are developed to estimate deformation modulus of modified fly ash from unconfined compressive strength and relationships between initial tangent modulus and secant modulus at different strain levels are also developed.

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Literatur
Zurück zum Zitat Chakrabarti S, Kodikara J (2005) Stabilization of crushed basaltic rocks and clay mixtures using cementitious additives. J Mat Civ Eng ASCE 17(4):432–439CrossRef Chakrabarti S, Kodikara J (2005) Stabilization of crushed basaltic rocks and clay mixtures using cementitious additives. J Mat Civ Eng ASCE 17(4):432–439CrossRef
Zurück zum Zitat Chu TY, Davidson DT, Goecker WL, Moh ZC (1955) Soil stabilization with lime-fly ash mixtures: preliminary studies with silty and clayey soils. Highw Res Board Bull 108:102–112 Chu TY, Davidson DT, Goecker WL, Moh ZC (1955) Soil stabilization with lime-fly ash mixtures: preliminary studies with silty and clayey soils. Highw Res Board Bull 108:102–112
Zurück zum Zitat Dhir RK (1986) Pulverized fuel ash. Cement replacement materials. Surrey University Press, London, pp 197–255 Dhir RK (1986) Pulverized fuel ash. Cement replacement materials. Surrey University Press, London, pp 197–255
Zurück zum Zitat DiGioia AM, Nuzzo WL (1972) Fly ash as structural fill. J Power Div ASCE 98(1):77–92 DiGioia AM, Nuzzo WL (1972) Fly ash as structural fill. J Power Div ASCE 98(1):77–92
Zurück zum Zitat Draper NR, Smith H (1998) Applied regression analysis. Wiley, New York Draper NR, Smith H (1998) Applied regression analysis. Wiley, New York
Zurück zum Zitat Duncan JM, Chang CY (1970) Nonlinear analysis of stress and strain in soils. J Soil Mech Found Eng Div ASCE 96(5):1629–1653 Duncan JM, Chang CY (1970) Nonlinear analysis of stress and strain in soils. J Soil Mech Found Eng Div ASCE 96(5):1629–1653
Zurück zum Zitat Ghosh A (1996) Environmental and engineering characteristics of stabilized low lime fly ash. Doctoral Dissertation, Indian Institute of Technology, Kharagpur Ghosh A (1996) Environmental and engineering characteristics of stabilized low lime fly ash. Doctoral Dissertation, Indian Institute of Technology, Kharagpur
Zurück zum Zitat Ghosh A, Subbarao C (1998) Hydraulic conductivity and leachate characteristics of stabilized fly ash. J Envir Eng ASCE 124(9):812–820CrossRef Ghosh A, Subbarao C (1998) Hydraulic conductivity and leachate characteristics of stabilized fly ash. J Envir Eng ASCE 124(9):812–820CrossRef
Zurück zum Zitat Ghosh A, Subbarao C (2001) Microstructural development in fly ash modified with lime and gypsum. J Mat Civ Eng ASCE 13(1):65–70CrossRef Ghosh A, Subbarao C (2001) Microstructural development in fly ash modified with lime and gypsum. J Mat Civ Eng ASCE 13(1):65–70CrossRef
Zurück zum Zitat Ghosh A, Subbarao C (2006a) Tensile strength bearing ratio and slake durability of class F fly ash stabilized with lime and gypsum. J Mat Civ Eng ASCE 18(1):18–27CrossRef Ghosh A, Subbarao C (2006a) Tensile strength bearing ratio and slake durability of class F fly ash stabilized with lime and gypsum. J Mat Civ Eng ASCE 18(1):18–27CrossRef
Zurück zum Zitat Ghosh A, Subbarao C (2006b) Leaching of lime from fly ash stabilized with lime and gypsum. J Mat Civ Eng ASCE 18(1):106–115CrossRef Ghosh A, Subbarao C (2006b) Leaching of lime from fly ash stabilized with lime and gypsum. J Mat Civ Eng ASCE 18(1):106–115CrossRef
Zurück zum Zitat Ghosh A, Subbarao C (2007) Strength characteristics of class F fly ash modified with lime and gypsum. J Geotech Geoenv Eng ASCE 133(7):757–766CrossRef Ghosh A, Subbarao C (2007) Strength characteristics of class F fly ash modified with lime and gypsum. J Geotech Geoenv Eng ASCE 133(7):757–766CrossRef
Zurück zum Zitat Ghosh A, Ghosh A, Bera AK (2005) Bearing capacity of square footing on pond ash reinforced with jute-geotextile. J Geotext Geomembr 23(2):144–173CrossRef Ghosh A, Ghosh A, Bera AK (2005) Bearing capacity of square footing on pond ash reinforced with jute-geotextile. J Geotext Geomembr 23(2):144–173CrossRef
Zurück zum Zitat Goecker WL, Moh ZC, Davidson DT, Chu TY (1956) Stabilization of fine and coarse-grained soils with lime-flyash admixtures. Highw Res Board Bull 129:63–82 Goecker WL, Moh ZC, Davidson DT, Chu TY (1956) Stabilization of fine and coarse-grained soils with lime-flyash admixtures. Highw Res Board Bull 129:63–82
Zurück zum Zitat Gray DH, Lin YK (1972) Engineering properties of compacted fly ash. J Soil Mech Found Eng ASCE 98(4):361–380 Gray DH, Lin YK (1972) Engineering properties of compacted fly ash. J Soil Mech Found Eng ASCE 98(4):361–380
Zurück zum Zitat Janbu N (1963) “Soil compressibility as determined by oedometer and triaxial tests.” Eur Conf Soil Mech Found Eng 1, 19–25 Janbu N (1963) “Soil compressibility as determined by oedometer and triaxial tests.” Eur Conf Soil Mech Found Eng 1, 19–25
Zurück zum Zitat Joshi RC, Duncan DM, McMaster HM (1975) New and conventional engineering uses of fly ash. J Trans Eng ASCE 101(4):791–806 Joshi RC, Duncan DM, McMaster HM (1975) New and conventional engineering uses of fly ash. J Trans Eng ASCE 101(4):791–806
Zurück zum Zitat Joshi RC, Natt GS, Wright PJ (1981) Soil improvement by lime-fly ash slurry injection. In: Proceedings of 10th International Conference on Soil Mechanics and Foundation Engineering. Stockholm, pp 707–712 Joshi RC, Natt GS, Wright PJ (1981) Soil improvement by lime-fly ash slurry injection. In: Proceedings of 10th International Conference on Soil Mechanics and Foundation Engineering. Stockholm, pp 707–712
Zurück zum Zitat Kim SS, Chun BS (1994) The study on a practical use of wasted coal fly ash for coastal reclamation. In: Proceedings of 13th International Conference on Soil Mechanics and Foundation Engineering. New Delhi, India, pp 1607–1612 Kim SS, Chun BS (1994) The study on a practical use of wasted coal fly ash for coastal reclamation. In: Proceedings of 13th International Conference on Soil Mechanics and Foundation Engineering. New Delhi, India, pp 1607–1612
Zurück zum Zitat Lambe TW, Whitman RV (1979) Soil mechanics. Wiley, New Delhi Lambe TW, Whitman RV (1979) Soil mechanics. Wiley, New Delhi
Zurück zum Zitat Lee FH, Lee Y, Chew SH, Yong KY (2005) Strength and modulus of marine clay-cement mixes. J Geotech Geoenvir Eng ASCE 131(2):178–186CrossRef Lee FH, Lee Y, Chew SH, Yong KY (2005) Strength and modulus of marine clay-cement mixes. J Geotech Geoenvir Eng ASCE 131(2):178–186CrossRef
Zurück zum Zitat O’Rourke TD, Crespo E (1988) Geotechnical properties of cemented volcanic soil. J Geotech Eng ASCE 114(10):1126–1147CrossRef O’Rourke TD, Crespo E (1988) Geotechnical properties of cemented volcanic soil. J Geotech Eng ASCE 114(10):1126–1147CrossRef
Zurück zum Zitat Palmer BG, Edil TB, Benson CH (2000) Liners for waste containment constructed with class F and C fly ashes. J Hazard Mater 76:193–216CrossRef Palmer BG, Edil TB, Benson CH (2000) Liners for waste containment constructed with class F and C fly ashes. J Hazard Mater 76:193–216CrossRef
Zurück zum Zitat Raymond S (1958) The utilization of pulverised fuel ash. Civil Eng Public Works Rev Lond 53:1013–1016 Raymond S (1958) The utilization of pulverised fuel ash. Civil Eng Public Works Rev Lond 53:1013–1016
Zurück zum Zitat Schnaid F, Prietto PDM, Consoli NC (2001) Characterization of cemented sand in triaxial compression. J Geotech Geoenv Eng ASCE 127(10):857–868CrossRef Schnaid F, Prietto PDM, Consoli NC (2001) Characterization of cemented sand in triaxial compression. J Geotech Geoenv Eng ASCE 127(10):857–868CrossRef
Zurück zum Zitat Stark TD, Ebeling RM, Vettel JJ (1994) Hyperbolic stress–strain parameters for silts. J Geotech Eng ASCE 120(2):420–441CrossRef Stark TD, Ebeling RM, Vettel JJ (1994) Hyperbolic stress–strain parameters for silts. J Geotech Eng ASCE 120(2):420–441CrossRef
Zurück zum Zitat Vasquez E, Alonso EE (1981) Fly ash stabilization of decomposed granite. In: Proceedings of 10th International Conference on Soil Mechanics and Foundation Engineering. Stockholm, pp 391–395 Vasquez E, Alonso EE (1981) Fly ash stabilization of decomposed granite. In: Proceedings of 10th International Conference on Soil Mechanics and Foundation Engineering. Stockholm, pp 391–395
Zurück zum Zitat Viskochil RK, Handy RL, Davidson DT (1957) Effect of density on strength of lime-fly ash stabilized soil. Highw Res Board Bull 183:5–15 Viskochil RK, Handy RL, Davidson DT (1957) Effect of density on strength of lime-fly ash stabilized soil. Highw Res Board Bull 183:5–15
Metadaten
Titel
Deformation Modulus of Fly Ash Modified with Lime and Gypsum
verfasst von
Ambarish Ghosh
Chillara Subbarao
Publikationsdatum
01.04.2012
Verlag
Springer Netherlands
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 2/2012
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-011-9468-z

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