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Articles

Effect of powdered mixed recycled aggregates on bedding mortar properties

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References

  • Agrela, F., Barbudo, A., Ramírez, A., Ayuso, J., Carvajal, M. D., & Jiménez, J. R. (2012). Construction of road sections using mixed recycled aggregates treated with cement in Malaga, Spain. Resources, Conservation and Recycling, 58, 98–106. doi:10.1016/j.resconrec.2011.11.003
  • Arm, M. (2001). Self-cementing properties of crushed demolished concrete in unbound layers: Results from triaxial tests and field tests. Waste Management, 21, 235–239. doi:10.1016/S0956-053X(00)00095-7
  • Braga, M., de Brito, J., & Veiga, R. (2012). Incorporation of fine concrete aggregates in mortars. Construction and Building Materials, 36, 960–968. doi:10.1016/j.conbuildmat.2012.06.031
  • Braga, M., de Brito, J., & Veiga, R. (2014). Reduction of the cement content in mortars made with fine concrete aggregates. Materials and Structures, 47(1–2), 171–182. doi:10.1617/s11527-013-0053-1
  • Cartuxo, F., de Brito, J., Evangelista, L., Jiménez, J. R., & Ledesma, E. F. (2015). Rheological behaviour of concrete made with fine recycled concrete aggregates – Influence of the superplasticizer. Construction and Building Materials, 89, 36–47. doi:10.1016/j.conbuildmat.2015.03.119
  • Cartuxo, F., de Brito, J., Evangelista, L., Jiménez, J. R., & Ledesma, E. F. (2016). Increased durability of concrete made with fine recycled concrete aggregates using superplasticizers. Materials, 9, 98. doi:10.3390/ma9020098
  • Corinaldesi, V. (2009). Mechanical behavior of masonry assemblages manufactured with recycled-aggregate mortars. Cement and Concrete Composites, 31, 505–510. doi:10.1016/j.cemconcomp.2009.05.003
  • Corinaldesi, V. (2010). Mechanical and elastic behaviour of concretes made of recycled-concrete coarse aggregates. Construction and Building Materials, 24, 1616–1620. doi:10.1016/j.conbuildmat.2010.02.031
  • Corinaldesi, V., Giuggiolini, M., & Moriconi, G. (2002). Use of rubble from building demolition in mortars. Waste Management, 22, 893–899. doi:10.1016/S0956-053X(02)00087-9
  • Corinaldesi, V., & Moriconi, G. (2009a). Behaviour of cementitious mortars containing different kinds of recycled aggregate. Construction and Building Materials, 23, 289–294. doi:10.1016/j.conbuildmat.2007.12.006
  • Corinaldesi, V., & Moriconi, G. (2009b). Influence of mineral additions on the performance of 100% recycled aggregate concrete. Construction and Building Materials, 23, 2869–2876. doi:10.1016/j.conbuildmat.2009.02.004
  • Corinaldesi, V., Moriconi, G., & Naik, T. R. (2010). Characterization of marble powder for its use in mortar and concrete. Construction and Building Materials, 24, 113–117. doi:10.1016/j.conbuildmat.2009.08.013
  • Corinaldesi, V., & Moriconi, G. (2011). The role of industrial by-products in self-compacting concrete. Construction and Building Materials, 25, 3181–3186. doi:10.1016/j.conbuildmat.2011.03.001
  • Corinaldesi, V. (2012). Environmentally-friendly bedding mortars for repair of historical buildings. Construction and Building Materials, 35, 778–784. doi:10.1016/j.conbuildmat.2012.04.131
  • Evangelista, L., & de Brito, J. (2007). Mechanical behaviour of concrete made with fine recycled concrete aggregates. Cement and Concrete Composites, 29, 397–401. doi:10.1016/j.cemconcomp.2006.12.004
  • Evangelista, L., & de Brito, J. (2010). Durability performance of concrete made with fine recycled concrete aggregates. Cement and Concrete Composites, 32, 9–14. doi:10.1016/j.cemconcomp.2009.09.005
  • Fernández-Ledesma, E., Jiménez, J. R., Ayuso, J., Corinaldesi, V., & Iglesias-Godino, F. J. (2016). A proposal for the maximum use of recycled concrete sand in masonry mortar design. Materiales de Construcción, 66, e075. doi:10.3989/mc.2016.08414
  • Fonseca, N., de Brito, J., & Evangelista, L. (2011). The influence of curing conditions on the mechanical performance of concrete made with recycled concrete waste. Cement and Concrete Composites, 33, 637–643. doi:10.1016/j.cemconcomp.2011.04.002
  • Jiménez, J. R., Ayuso, J., Agrela, F., López, M., & Galvín, A. P. (2012). Utilisation of unbound recycled aggregates from selected CDW in unpaved rural roads. Resources, Conservation and Recycling, 58, 88–97. doi:10.1016/j.resconrec.2011.10.012
  • Jiménez, J. R., Ayuso, J., Galvín, A. P., López, M., & Agrela, F. (2012). Use of mixed recycled aggregates with a low embodied energy from non-selected CDW in unpaved rural roads. Construction and Building Materials, 34, 34–43. doi:10.1016/j.conbuildmat.2012.02.042
  • Jiménez, J. R., Ayuso, J., López, M., Fernández, J. M., & de Brito, J. (2013). Use of fine recycled aggregates from ceramic waste in masonry mortar manufacturing. Construction and Building Materials, 40, 679–690. doi:10.1016/j.conbuildmat.2012.11.036
  • Kirgiz, M. S. (2011). Chemical properties of blended cement pastes. Journal of Construction Engineering and Management, 137, 1036–1042. doi:10.1061/(ASCE)CO.1943-7862.0000378
  • Kirgiz, M. S. (2014). Effects of blended-cement paste chemical composition changes on some strength gains of blended-mortars. The Scientific World Journal, 2014. doi:10.1155/2014/625350
  • Kirgiz, M. S. (2015a). Use of ultrafine marble and brick particles as raw materials in cement manufacturing. Materials and Structures, 48, 2929–2941. doi:10.1617/s11527-014-0368-6
  • Kirgiz, M. S. (2015b). Strength gain mechanisms of blended-cements containing marble powder and brick powder. KSCE Journal of Civil Engineering, 19, 165–172. doi:10.1007/s12205-014-0557-4
  • Kirgiz, M. S. (2016). Advancements in mechanical and physical properties for marble powder–cement composites strengthened by nanostructured graphite particles. Mechanics of Materials, 92, 223–234. doi:10.1016/j.mechmat.2015.09.013
  • Ledesma, E. F., Jiménez, J. R., Fernández, J. M., Galvín, A. P., Agrela, F., & Barbudo, A. (2014). Properties of masonry mortars manufactured with fine recycled concrete aggregates. Construction and Building Materials, 71, 289–298. doi:10.1016/j.conbuildmat.2014.08.080
  • Ledesma, E. F., Jiménez, J. R., Ayuso, J., Fernández, J. M., & de Brito, J. (2015). Maximum feasible use of recycled sand from construction and demolition waste for eco-mortar production – Part-I: Ceramic masonry waste. Journal of Cleaner Production, 87, 692–706. doi:10.1016/j.jclepro.2014.10.084
  • Lin, K. L., Wu, H. H., Shie, J. L., Hwang, C. L., & Cheng, A. (2010). Recycling waste brick from construction and demolition of buildings as pozzolanic materials. Waste Management & Research, 28, 653–659. doi:10.1177/0734242X09358735
  • López-Uceda, A., Ayuso, J., López, M., Jimenez, J. R., Agrela, F., & Sierra, M. J. (2016). Properties of non-structural concrete made with mixed recycled aggregates and low cement content. Materials, 9, 74. doi:10.3390/ma9020074
  • López-Uceda, A., Ayuso, J., Jiménez, J. R., Agrela, F., Barbudo, A., & De Brito, J. (2016). Upscaling the use of mixed recycled aggregates in non-structural low cement concrete. Materials, 9, 91. doi:10.3390/ma9020091
  • Miranda, L. F., & Selmo, S. M. (2006a). CDW recycled aggregate renderings: Part I – Analysis of the effect of materials finer than 75 μm on mortar properties. Construction and Building Materials, 20, 615–624. doi:10.1016/j.conbuildmat.2005.02.025
  • Miranda, L. F., & Selmo, S. M. (2006b). CDW recycled aggregate renderings: Part II – Analysis of the effect of materials finer than 75 μm under accelerated aging performance. Construction and Building Materials, 20, 625–633. doi:10.1016/j.conbuildmat.2005.02.026
  • Neno, C., Brito, J. D., & Veiga, R. (2014). Using fine recycled concrete aggregate for mortar production. Materials Research, 17, 168–177. doi:10.1590/S1516-14392013005000164
  • Ortiz, O., Castells, F., & Sonnemann, G. (2009). Sustainability in the construction industry: A review of recent developments based on LCA. Construction and Building Materials, 23, 28–39. doi:10.1016/j.conbuildmat.2007.11.012
  • Sánchez de Rojas, M. I., Frías, F., Rivera, J., Escorihuela, M. J., & Marin, F. P. (2001). Research about the pozzolanic activity of waste materials from calcined clay. Materiales de Construccion, 51, 45–52. doi:10.3989/mc.2001.v51.i261.379
  • Silva, J., de Brito, J., & Veiga, R. (2008). Fine ceramics replacing cement in mortars partial replacement of cement with fine ceramics in rendering mortars. Materials and Structures, 41, 1333–1344. doi:10.1617/s11527-007-9332-z
  • Silva, J., de Brito, J., & Veiga, R. (2009). Incorporation of fine ceramics in mortars. Construction and Building Materials, 23, 556–564. doi:10.1016/j.conbuildmat.2007.10.014
  • Vegas, I., Ibañez, J. A., Lisbona, A., de Cortazar, A. S., & Frías, M. (2011). Pre-normative research on the use of mixed recycled aggregates in unbound road sections. Construction and Building Materials, 25, 2674–2682. doi:10.1016/j.conbuildmat.2010.12.018

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