Physical and mechanical properties of sand stabilized by cement and natural zeolite
暂无分享,去创建一个
[1] M. Kitazume,et al. Using fiber and liquid polymer to improve the behaviour of cement-stabilized soft clay , 2017 .
[2] M. Perraki,et al. Geotechnical properties of a natural zeolite , 2017 .
[3] S. Salamatpoor,et al. Evaluation of adding crushed glass to different combinations of cement-stabilized sand , 2017, International Journal of Geo-Engineering.
[4] A. Negm,et al. Unconfined Compressive Strength of Compacted Disturbed Cement-Stabilized Soft Clay , 2016 .
[5] M. Abdi,et al. Effects of Discrete Short Polypropylene Fibers on Behavior of Artificially Cemented Kaolinite , 2016 .
[6] Siavash Salamatpoor,et al. Evaluation of Babolsar Sand Behaviour by Using Static Triaxial Tests and Comparison with Case History , 2014 .
[7] N. Consoli,et al. Porosity/cement ratio controlling initial bulk modulus and incremental yield stress of an artificially cemented soil cured under stress , 2014 .
[8] N. Consoli,et al. Key parameters for strength control of rammed sand–cement mixtures: Influence of types of portland cement , 2013 .
[9] Ali Ghorbani,et al. Monotonic triaxial experiments to evaluate steady-state and liquefaction susceptibility of Babolsar sand , 2013 .
[10] Ali Akbar Ramezanianpour,et al. Use of Natural Zeolite to Produce Self-Consolidating Concrete with Low Portland Cement Content and High Durability , 2013 .
[11] C. Bilim. Properties of cement mortars containing clinoptilolite as a supplementary cementitious material , 2011 .
[12] Cenk Karakurt,et al. Effect of blended cements produced with natural zeolite and industrial by-products on alkali-silica reaction and sulfate resistance of concrete , 2011 .
[13] Sung-Sik Park,et al. Unconfined compressive strength and ductility of fiber-reinforced cemented sand , 2011 .
[14] Yeliz Yukselen-Aksoy,et al. Characterization of two natural zeolites for geotechnical and geoenvironmental applications. , 2010 .
[15] Mohammad Shekarchi,et al. Use of natural zeolite as a supplementary cementitious material , 2010 .
[16] Nilo Cesar Consoli,et al. Key parameters dictating strength of lime/cement-treated soils , 2009 .
[17] Sung-Sik Park,et al. Effect of fiber reinforcement and distribution on unconfined compressive strength of fiber-reinforced cemented sand , 2009 .
[18] B. Mohanty,et al. Performance evaluation of silty sand subgrade reinforced with fly ash and fibre , 2008 .
[19] Domenico Caputo,et al. Some advances in understanding the pozzolanic activity of zeolites: The effect of zeolite structure , 2008 .
[20] P. Chindaprasirt,et al. Resistance to chloride penetration of blended Portland cement mortar containing palm oil fuel ash, rice husk ash and fly ash , 2008 .
[21] Ravi Naidu,et al. Permeable reactive barrier for groundwater remediation , 2008 .
[22] Duncan Herfort,et al. Sustainable Development and Climate Change Initiatives , 2008 .
[23] J. Olek,et al. Study of the Effectiveness of Cement Kiln Dusts in Stabilizing Na-Montmorillonite Clay , 2008 .
[24] Wei Gao,et al. Strength and mechanical behavior of short polypropylene fiber reinforced and cement stabilized clayey soil , 2007 .
[25] K. S. Heineck,et al. Key Parameters for Strength Control of Artificially Cemented Soils , 2007 .
[26] Jatinder Mohan,et al. Compressive strength of fiber reinforced highly compressible clay , 2006 .
[27] C. Poon,et al. Compressive strength, chloride diffusivity and pore structure of high performance metakaolin and silica fume concrete , 2006 .
[28] G. Stevens,et al. A Natural Zeolite Permeable Reactive Barrier to Treat Heavy-Metal Contaminated Waters in Antarctica: Kinetic and Fixed-bed Studies , 2006 .
[29] Pedro Domingos Marques Prietto,et al. Yielding–compressibility–strength relationship for an artificially cemented soil cured under stress , 2006 .
[30] Roslan Hashim,et al. Stabilization of residual soil with rice husk ash and cement , 2005 .
[31] M. Ismail. Performance of cement-stabilized retaining walls , 2005 .
[32] M. A. Yurdusev,et al. USE OF ZEOLITE, COAL BOTTOM ASH AND FLY ASH AS REPLACEMENT MATERIALS IN CEMENT PRODUCTION , 2004 .
[33] Abidin Kaya,et al. Utilization of bentonite-embedded zeolite as clay liner , 2004 .
[34] G. Kakali,et al. The effect of natural zeolites on the early hydration of Portland cement , 2003 .
[35] J. Loehr,et al. SPECIMEN SIZE EFFECTS FOR FIBER-REINFORCED SILTY CLAY IN UNCONFINED COMPRESSION , 2003 .
[36] H. Koyuncu,et al. Use of natural zeolites as a landfill liner , 2003, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[37] Jaewon Lee,et al. Lab scale experiments for permeable reactive barriers against contaminated groundwater with ammonium and heavy metals using clinoptilolite (01-29B). , 2002, Journal of hazardous materials.
[38] Andrea Boddy,et al. Long-term testing of the chloride-penetration resistance of concrete containing high-reactivity metakaolin , 2001 .
[39] C. Cheeseman,et al. Properties of alkali-activated clinoptilolite , 2000 .
[40] Pedro Domingos Marques Prietto,et al. Influence of curing under stress on the triaxial response of cemented soils , 2000 .
[41] N. Consoli,et al. Influence of fiber and cement addition on behavior of sandy soil , 1998 .
[42] Kamil Kayabali,et al. Engineering aspects of a novel landfill liner material: bentonite-amended natural zeolite , 1997 .
[43] M H Maher,et al. Behavior of Fiber-Reinforced Cemented Sand Under Static and Cyclic Loads , 1993 .
[44] J. H. Atkinson,et al. The mechanics of cemented carbonate sands , 1993 .
[45] N. S. Rad,et al. CEMENTED SANDS UNDER STATIC LOADING , 1981 .
[46] Surendra K. Saxena,et al. Static Properties of Lightly Cemented Sand , 1978 .
[47] E. Selig,et al. Preparing Test Specimens Using Undercompaction , 1978 .
[48] K. T. Greene,et al. Natural pozzolans for concrete , 1951 .
[49] Charles D. Shackelford,et al. Consolidation and Hydraulic Conductivity of Zeolite-Amended Soil-Bentonite Backfills , 2012 .