Properties of using excavated soil waste as fine and coarse aggregates in unfired clay bricks after dry-wet cycles
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[1] Y. Pontikes,et al. High performance mortars from vitrified bauxite residue; the quest for the optimal chemistry and processing conditions , 2022, Cement and Concrete Research.
[2] Xiwen Guan,et al. Utilization of dewatered extracted soil in concrete blocks produced with Portland cement or alkali-activated slag: engineering properties and sustainability , 2021, Case Studies in Construction Materials.
[3] X. Guan,et al. Hydration kinetics of cement-calcined activated bauxite tailings composite binder , 2021 .
[4] B. Akinyemi,et al. The potential of calcium carbide waste and termite mound soil as materials in the production of unfired clay bricks , 2021 .
[5] B. Kumar,et al. Mechanical properties of concrete beam with steel fiber and baxuite residual , 2020 .
[6] Haifeng Wu,et al. Effects of accelerator–water reducer admixture on performance of cemented paste backfill , 2020 .
[7] S. Angulo,et al. Characterization flowchart for assessing the potential reuse of excavation soils in Sao Paulo city , 2019 .
[8] K. Ramamurthy,et al. Influence of Temperature and Duration of Thermal Treatment on Properties of Excavated Soil as Fine Aggregate in Cement Mortar , 2019, Journal of Materials in Civil Engineering.
[9] Guosong Yang,et al. Parametric sensitivity analysis and modelling of mechanical properties of normal- and high-strength recycled aggregate concrete using grey theory, multiple nonlinear regression and artificial neural networks , 2019, Construction and Building Materials.
[10] K. Ramamurthy,et al. Reuse potential of stabilized excavation soil as fine aggregate in cement mortar , 2018, Construction and Building Materials.
[11] A. Ćwirzeń,et al. Calcium chloride acceleration in ordinary Portland cement , 2018, Magazine of Concrete Research.
[12] K. Ramamurthy,et al. Sustainable reuse of excavation soil in cementitious composites , 2018 .
[13] Baoshan Huang,et al. Use of water reducer to enhance the mechanical and durability properties of cement-treated soil , 2018 .
[14] A. Ramezanianpour,et al. A new approach for application of silica fume in concrete: Wet granulation , 2017 .
[15] K. Ramamurthy,et al. Excavated soil waste as fine aggregate in fly ash based geopolymer mortar , 2017 .
[16] Rui Wang,et al. The influence of rheological parameters of cement paste on the dispersion of carbon nanofibers and self-sensing performance , 2017 .
[17] Liu Chuanzheng,et al. Genetic mechanism of landslide tragedy happened in Hong'ao dumping place in Shenzhen,China , 2016 .
[18] Fei Zhengyue,et al. Permeability of recycled aggregate concrete containing fly ash and clay brick waste , 2014 .
[19] Velu Saraswathy,et al. Estimation of the permeability of silica fume cement concrete , 2010 .
[20] Zeng Rong. ANALYSIS THE EFFECT OF RAINFALL ON ENGINEERING SOIL DEPOSITS STABILITY , 2010 .
[21] K. Tosun. Effect of SO3 content and fineness on the rate of delayed ettringite formation in heat cured Portland cement mortars , 2006 .
[22] J. F. Young,et al. Thermal stability of ettringite in alkaline solutions at 80 °C , 2004 .
[23] C. Tasdemir,et al. Combined effects of mineral admixtures and curing conditions on the sorptivity coefficient of concrete , 2003 .
[24] Karen Scrivener,et al. Delayed ettringite formation , 2001 .