Shear strength and durability against wetting and drying cycles of lime-stabilised laterite soil as subgrade
暂无分享,去创建一个
S. Horpibulsuk | R. Razali | M. J. Roshan | Diana Che Lat | A. S. A. Rashid | N. S. A. Rahman | Nurin Hannah Ahmad Rizal
[1] A. S. Rashid,et al. Evaluation of cement stabilised residual soil on macro- and micro-scale for road construction , 2022, Journal of Engineering and Applied Science.
[2] N. N. Nik Daud,et al. Fibre-Reinforced Soil Mixed Lime/Cement Additives: A Review , 2022, Pertanika Journal of Science and Technology.
[3] Pierre Guy Atangana Njock,et al. Evaluation of Lateral Displacement Induced by Jet Grouting using Improved Random Forest , 2022, Geotechnical and Geological Engineering.
[4] A. S. Rashid,et al. Performance Evaluation of Lateritic Subgrade Soil Treated with Lime and Coir Fibre-Activated Carbon , 2022, Applied Sciences.
[5] M. Azmi,et al. Improved methods to prevent railway embankment failure and subgrade degradation: A review , 2022, Transportation Geotechnics.
[6] A. S. Rashid,et al. Compressive and Shear Strengths of Coir Fibre Reinforced Activated Carbon Stabilised Lateritic Soil , 2022, Sustainability.
[7] R. Abdullah,et al. Effectiveness of Laser Diffraction Method for Particle Size Evaluation of Residual Soil , 2022, Indian Geotechnical Journal.
[8] K. Beck,et al. Geotechnical Behavior and Physico-Chemical Changes of Lime-Treated and Cement-Treated Silty Soil , 2021, Geotechnical and Geological Engineering.
[9] Pierre Guy Atangana Njock,et al. Artificial neural network optimized by differential evolution for predicting diameters of jet grouted columns , 2021, Journal of Rock Mechanics and Geotechnical Engineering.
[10] Yuanjie Shen,et al. An experimental investigation on strength characteristics of fiber-reinforced clayey soil treated with lime or cement , 2021 .
[11] Nik Daud Nik Norsyahariati,et al. Strength and Durability of Cement-Treated Lateritic Soil , 2021, Sustainability.
[12] Wenwu Chen,et al. Study on the Mechanism of Stabilizing Loess with Lime: Analysis of Mineral and Microstructure Evolution , 2021 .
[13] Diana Che Lat,et al. The shear strength and electron microscopy of laterite soil with the intrusion of polyurethane , 2021 .
[14] A. Ghalandarzadeh,et al. An investigation into the effects of lime on compressive and shear strength characteristics of fiber-reinforced clays , 2021 .
[15] C. Okeke,et al. Appropriate Use of Lime in the Study of the Physicochemical Behaviour of Stabilised Lateritic Soil under Continuous Water Ingress , 2020, Sustainability.
[16] A. Arulrajah,et al. Strength development of recycled concrete aggregate stabilized with fly ash-rice husk ash based geopolymer as pavement base material , 2020, Road Materials and Pavement Design.
[17] S. Shen,et al. Excess pore water pressure caused by the installation of jet grouting columns in clay , 2020 .
[18] H. Nahazanan,et al. Wetting/Drying Behavior of Lime and Alkaline Activation Stabilized Marine Clay Reinforced with Modified Coir Fiber , 2020, Materials.
[19] S. Abbey,et al. Performance of clay stabilized by cementitious materials and inclusion of zeolite/alkaline metals-based additive , 2020, Transportation Geotechnics.
[20] P. Sivapullaiah,et al. Lime Stabilization of Soil: A Physico-Chemical and Micro-Mechanistic Perspective , 2020, Indian Geotechnical Journal.
[21] J. A. Adzar,et al. Critical green road criteria for Malaysia green rural road index , 2020, IOP Conference Series: Materials Science and Engineering.
[22] S. Nayak,et al. SEM and XRD investigations on lithomargic clay stabilized using granulated blast furnace slag and cement , 2019 .
[23] S. Larsson,et al. Triaxial extension and tension tests on lime-cement-improved clay , 2019, Soils and Foundations.
[24] Jay X. Wang,et al. A study of the swell-shrink behavior of expansive Moreland clay , 2019 .
[25] M. Hussain,et al. The strength and microstructural behavior of lime stabilized subgrade soil in road construction , 2019, International Journal of Geotechnical Engineering.
[26] Xian Li,et al. Behavior of Fiber-Reinforced and Lime-Stabilized Clayey Soil in Triaxial Tests , 2019, Applied Sciences.
[27] N. Consoli,et al. Physical–Mineralogical–Chemical Characterization of Carbide Lime: An Environment-Friendly Chemical Additive for Soil Stabilization , 2018, Journal of Materials in Civil Engineering.
[28] Hisham Mohamad,et al. Behaviour of soft soil improved by floating soil–cement columns , 2018 .
[29] Rachid Zentar,et al. Durability and Swelling of Solidified/Stabilized Dredged Marine Soils with Class-F Fly Ash, Cement, and Lime , 2018 .
[30] T. N. Singh,et al. Experimental study to examine the independent roles of lime and cement on the stabilization of a mountain soil: A comparative study , 2018 .
[31] A. Amadi,et al. Use of quick and hydrated lime in stabilization of lateritic soil: comparative analysis of laboratory data , 2017, International Journal of Geo-Engineering.
[32] Saman Soleimani Kutanaei,et al. Microstructure characteristics of cement-stabilized sandy soil using nanosilica , 2017 .
[33] Christopher L. Meehan,et al. Tropical residual soil stabilization: A powder form material for increasing soil strength , 2017 .
[34] Z. F. Wang,et al. Estimation of lateral displacement induced by jet grouting in clayey soils , 2017 .
[35] G. Russo,et al. Multi-scale analysis and time evolution of pozzolanic activity of lime treated clays , 2017 .
[36] Christopher L. Meehan,et al. Sustainable Improvement of Tropical Residual Soil Using an Environmentally Friendly Additive , 2017, Geotechnical and Geological Engineering.
[37] R. K. Etim,et al. Stabilization of black cotton soil with lime and iron ore tailings admixture , 2017 .
[38] N. Consoli,et al. Durability, Strength, and Stiffness of Dispersive Clay–Lime Blends , 2016 .
[39] A. N. Ghani,et al. ROAD SUBMERGENCE DURING FLOODING AND ITS EFFECT ON SUBGRADE STRENGTH , 2016 .
[40] Renato Cabral Guimaraes,et al. Tropical soils for highway construction: Peculiarities and considerations , 2015 .
[41] Hisham Mohamad,et al. Behavior of Weak Soils Reinforced with End-Bearing Soil-Cement Columns Formed by the Deep Mixing Method , 2015 .
[42] S. Taibi,et al. Evolution of the properties of lime-treated silty soil in a small experimental embankment , 2015 .
[43] Jonathan A. Black,et al. Behaviour of weak soils reinforced with soil cement columns formed by the deep mixing method: Rigid and flexible footings , 2015 .
[44] M. D. Sante,et al. Influence of delayed compaction on the compressibility and hydraulic conductivity of soil–lime mixtures , 2015 .
[45] N. Yunus,et al. Physico-Chemical Characterization Of Lime Stabilized Tropical Kaolin Clay , 2015 .
[46] D. N. Arnepalli,et al. A Critical Appraisal of the Role of Clay Mineralogy in Lime Stabilization , 2015 .
[47] Haryati Yaacob,et al. Relationship between liquidity index and stabilized strength of local subgrade materials in a tropical area , 2014 .
[48] A. Javadi,et al. Chemo-mechanical modelling of lime treated soils , 2014 .
[49] T. Ko. Nature and Properties of Lateritic Soils Derived from Different Parent Materials in Taiwan , 2014, TheScientificWorldJournal.
[50] A Athanasopoulou,et al. Addition of Lime and Fly Ash to Improve Highway Subgrade Soils , 2014 .
[51] A. S. Muntohar,et al. Engineering Properties of Silty Soil Stabilized with Lime and Rice Husk Ash and Reinforced with Waste Plastic Fiber , 2013 .
[52] S. Shen,et al. Generalized Approach for Prediction of Jet Grout Column Diameter , 2013 .
[53] Martin D. Liu,et al. Variations in strength of lime-treated soft clays , 2012 .
[54] Muzahim Al-Mukhtar,et al. Microstructure and geotechnical properties of lime-treated expansive clayey soil , 2012 .
[55] Sujit Kumar Dash,et al. Lime Stabilization of Soils: Reappraisal , 2012 .
[56] F. Portelinha,et al. Modification of a Lateritic Soil with Lime and Cement: An Economical Alternative for Flexible Pavement Layers , 2012, Soils and Rocks.
[57] Amin Eisazadeh,et al. Characterization of phosphoric acid- and lime-stabilized tropical lateritic clay , 2011 .
[58] Pedro Domingos Marques Prietto,et al. Variables Controlling Stiffness and Strength of Lime-Stabilized Soils , 2011 .
[59] Muzahim Al-Mukhtar,et al. Behaviour and mineralogy changes in lime-treated expansive soil at 50°C. , 2010 .
[60] A. Haque,et al. Improvement of problematic soils by lime slurry pressure injection: case study , 2010 .
[61] Norbaya Sidek,et al. Effect of pozzolanic process on the strength of stabilized lime clay , 2008 .
[62] K. Kassim,et al. Modification and stabilization of Malaysian cohesive soils with lime , 2005 .
[63] F. Bell,et al. LIME STABILIZATION OF CLAY MINERALS AND SOILS , 1996 .
[64] N. Attoh-Okine. Lime treatment of laterite soils and gravels — revisited , 1995 .
[65] D. Osula. Lime modification of problem laterite , 1991 .
[66] B. Akoto. The effect of repeated loading on the ultimate unconfined compressive strength of a lime-stabilized laterite , 1986 .
[67] James K. Mitchell,et al. Practical problems from surprising soil behavior , 1986 .
[68] S. A. Ola,et al. The potentials of lime stabilization of lateritic soils , 1977 .
[69] Marshall R Thompson,et al. Lime Reactivity of Illinois Soils , 1966 .
[70] A. S. Rashid,et al. Stability of Railway Embankment in Saturated and Unsaturated Conditions , 2021 .
[71] A. S. Rashid,et al. Effects of Cement on the Compaction Properties of Lateritic Soil , 2021 .
[72] H. Missoum,et al. Effect of quick lime on physicochemical properties of clay soil , 2018 .
[73] A. Arulrajah,et al. Durability against Wetting–Drying Cycles of Water Treatment Sludge–Fly Ash Geopolymer and Water Treatment Sludge–Cement and Silty Clay–Cement Systems , 2016 .
[74] Jean-Claude Morel,et al. Microstructure, geotechnical and mechanical characteristics of quicklime-lateritic gravels mixtures used in road construction , 2012 .
[75] Jianchao Li,et al. Incorporating Subgrade Lime Stabilization into Pavement Design , 2000 .
[76] Sidney Diamond,et al. MECHANISMS OF SOIL-LIME STABILIZATION , 1965 .