Strength Characterization of Cement Stabilized and Fiber Reinforced Clay–Pond Ash Mixes

Deepak Gupta1, Arvind Kumar1
1Department of Civil Engineering, Dr B R Ambedkar National Institute of Technology Jalandhar, Jalandhar, Punjab, India

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Beeghly JH (2003) Recent experiences with lime: fly ash stabilization of pavement subgrade soils, base, and recycled asphalt. In: International ash utilization symposium, University of Kentuchy, Center for Applied Energy Research, Lexington

Gray DH, Tons E, Thiruvengadam TR (1994) Performance evaluation of a cement-stabilized fly ash base. Trans Res Rec 1440:8

Shirazi H (1999) Field and laboratory evaluation of the use of lime fly ash to replace soil cement as a base course. Trans Res Rec 1652(1):270–275

Andersland OB, Khattak AS (1979) Shear strength of kaolinite/fibre soil mixture. Proc 1st Int Conf Soil Reinf 1:11–16

Freitag DR (1986) Soil randomly reinforced with fibers. J Geotech Eng 112(8):823–825

Setty KRNS, Rao SVG (1987) Characterisation of fiber reinforced lateritic soil. IGC, Bangalore, pp 329–333

Maher MH, Gray DH (1990) Static response of sands reinforced with randomly distributed fibers. J Geotech Eng 116(11):1661–1677

Al-Refeai TO (1991) Behaviour of granular soils reinforced with discrete randomly oriented inclusions. Geotext Geomembr 10:319–333

Fatani MN, Bauer GE, Al-Joulani N (1991) Reinforcing soil with aligned and randomly oriented metallic fibers. ASTM, West Conshohocken, pp 78–87

Maher MH, Ho YC (1994) Mechanical properties of kaolinite/fiber soil composite. J Geotech Eng 120(8):1381–1393

Michalowski RL, Zaho A (1996) Failure of fiber-reinforced granular soils. J Geotech Eng 122(3):226–234

Ranjan G, Vasan RM, Charan HD (1996) Pobabilistic analysis of randomly distributed fiber reinforced soil. J Geotech Eng 122(6):419–426

Consoli NC, Prietto PDM, Ulbrich LA (1998) Influence of fiber and cement addition on behavior of sandy soil. J Geotech Geoenviron Eng 124:1211–1214

Consoli NC, Montardo JP, Prietto PDM, Pasa GS (2002) Engineering behavior of sand reinforced with plastic waste. J Geotech Geoenviron Eng 128(6):462–472

Santoni RL, Tingle JS, Webster S (2001) Engineering properties of sand fiber mixtures for road construction. J Geotech Geoenviron Eng 127(3):258–268

Kumar A, Walia BS, Mohan J (2005) Compressive strength of fiber reinforced highly compressible clay. Constr Build Mater 10(20):1063–1068

Consoli NC, Casagrande MDT, Coop MR (2005) Effect of fiber reinforcement on the isotropic compression behaviour of sand. J Geotech Geoenviron Eng 131:1434–1436

Casagrande MDT, Coop MR, Consoli NC (2006) Behaviour of fiber reinforced bentonite at large shear displacement. J Geotech Geoenviron Eng 132(11):1505–1508

Casagrande MDT, Consoli NC, Coop MR (2007) Performance of a fiber reinforced sand at shear strains. Geotechnique 57:751–756

Casagrande MDT, Consoli NC, Hieneck KS, Coop MR (2007) Shear strength behavior of fiber-reinforced sand considering triaxial tests under distinct stress paths. J Geotech Geoenviron Eng 133(11):1466–1469

Park SS (2008) Effect of fiber reinforcement and distribution on unconfined compressive strength of fiber-reinforced cemented sand. Geotext Geomembr 27:162–166

Anggraini V, Asadi A, Huat BK, Nahazanan H (2014) Effects of coir fibers on tensile and compressive strength of lime treated soft soil. Measurement 59:372–381

Chand SK, Subbarao C (2007) Strength and slake durability of lime stabilized pond ash. J Mater Civil Eng 19:601–608

Sarkar R, Abbas SM, Shahu JT (2012) A comparative study of geotechnical behaviour of lime stabilized pond ashes from Delhi region. Int J Geomate 1(3):273–279

Bera AK, Ghosh A, Ghosh A (2007) Behavior of model footing on pond ash. Goetech Geol Eng 25:315–325

Kumar A, Gupta D (2016) Behaviour of cement stabilized fiber-reinforced pond ash, rice husk ash–soil mixtures. Geotext Geomembr 44(3):466–474

Roy TK, Chattopadhyay BC (2008) A study on the effect of cement on alluvial soil strengthened with pond and rice husk ash for construction of road subgrade. The 12th international conference of international association for computer methods and advances in geomechanics (IACMAG) 1–6 October, Goa

Ghosh A (2010) Compaction characteristics and bearing ratio of pond ash stabilized with lime and Phosphogypsum. J Mater Civil Eng ASCE 22(4):343

Pandian NS, Krishna KC, Sridharan A (2001) California bearing ratio behavior of soil/fly ash mixtures. J Test Eval JTEVA 29(2):220–226

Sharma S, Kothiyal NC (2015) Influence of grapheme oxide as dispersed phase in cement mortar matrix in defining the crystal patterns of cement hydrates and its effect on mechanical, microstructural and crystallization properties. RSC Advances 5(65):52642–52657

Pandian NS, Krishna KC (2003) The Pozzolanic effect of fly ash on the California bearing ratio behavior of black cotton soil. J Test Eval 31(6):1

Alhassan M (2008) Potentials of rice husk ash for soil stabilization. AU J Technol 11(4):246–250

Ali FH (1992) Stabilisation of a residual soil. Soil Found 32(4):178–185

Jha JN, Gill KS (2006) Effect of rice husk ash on lime stabilization. J Inst Eng 87:33–39

Brooks RM (2009) Soil stabilization with fly ash and rice husk ash. Int J Res Rev Appl Sci 3(1):209–217

Muntohar AS (2002) Utilization of uncontrolled burnt rice husk ash in soil improvement. Dimensi Teknik Sipil 2(4):100–105

Rahman MA (1987) Effect of cement-rice husk ash mixtures on geotechnical properties of lateritic soils. Soils Found 27(2):61–65

Miller G, Azad S (2000) Influence of soil type on stabilization with cement kiln dust. Constr Build Mater 14(2):89–97

Tang CS, Shi B, Gao W, Chen FJ, Cai Y (2007) Strength and mechanical behavior of short polypropylene fiber reinforced and cement stabilized clayey soil. Geotext Geomembr 25(3):194–202

Nataraj MS, McManis KL (1997) Strength and deformation properties of soils reinforced with fibrillated fibers. Geosynth Int 4(1):65–79