ACI 207.5R-11. 2011. “Report on roller compacted mass concrete”. ACI Manual of Concrete Practice, USA, 71.
ACI 325.10R-95, 2001. “Report on roller-compacted concrete pavements”. American Concrete Institute.
Adamu, M., Mohammed, B. S., Shafiq, N. and Liew, M. S. 2018. “Durability performance of high volume fly ash roller compacted concrete pavement containing crumb rubber and nano silica”. Int. J. Pavement Eng. DOI:
https://doi.org/10.1080/10298436.2018.1547825.
Algin, Z. and Gerginci, S. 2020. “Freeze-thaw resistance and water permeability properties of roller compacted concrete produced with macro synthetic fibre”. Constr. Build. Mater., 234: 117382. DOI:
https://doi.org/10.1016/j.conbuildmat.2019.117382.
AliAhmad, M., Miri, M. and Rashki, M. 2017. “Probabilistic and experimental investigating the effect of pozzolan and Lumachelle fine aggregates on roller compacted concrete properties”. Constr. Build. Mater., 151: 755-766. DOI:
https://doi.org/10.1016/j.conbuildmat.2017.06.107.
Association, P. C. 2004. “Guide specification for construction of roller-compacted concrete pavements”. Portland Cement Association (PCA), Skokie, IL, USA.
ASTM, C1170. 1998. “Standard test method for determining consistency and density of roller compacted concrete using a vibrating table”. West Conshohocken, ASTM International.
ASTM, C33. 2003. “Standard specification for concrete aggregates”. American Society for Testing and Materials, Philadelphia, PA.
ASTM, C1176. 2008. “Standard practice for making roller compacted concrete in cylinder molds using a vibrating table”. American Society of Testing and Materials, Philadelphia, PA.
ASTM, C496. 2008. “Standard test method for splitting tensile strength of cylindrical concrete specimens”. Annual Book of ASTM Standards 2008: section 4.
ASTM, C39. 2010. “Standard test method for compressive strength of cylindrical concrete specimens”. Annual Book of ASTM Standards.
ASTM, C78. 2010. “Standard test method for flexural strength of concrete (using simple beam with third-point loading)”. American Society of Testing and Materials.
ASTM, C469. 2014. “Standard test method for static modulus of elasticity and Poisson's ratio of concrete in compression”. Annual Book of ASTM Standards.
Chhorn, C., Kim, Y. K., Hong, S. J. and Lee, S. W. 2019. “Evaluation on compactibility and workability of roller-compacted concrete for pavement”. Int. J. Pavement Eng. 20(8): 905-910. DOI:
https://doi.org/10.1080/10298436.2017.1366762
Dasmeh, A., Fakher, A., Shekarchi, M. and Gharavy, M. 2000. “The influence of compaction time on the mechanical properties of RCC”. Int. J. Hydropower Dams, 7(3): 60-63.
Engineer, U. S. A. C. O. 1992. “Standard practice for selecting proportions for roller compacted concrete (RCC) pavement mixtures using soil compaction concepts”. Department of the Army Corps of Engineers, Washington, D.C.
Harrington, D., Abdo, F., Adaska, W., Hazaree, C. V., Ceylan, H. and Bektas, F. 2010. “Guide for roller-compacted concrete pavements”. Manual, 114 p.
Hashemi, M., Shafigh, P., Karim, M. and Rehan Bin Atis, C. D. 2018. “The effect of coarse to fine aggregate ratio on the fresh and hardened properties of roller-compacted concrete pavement”. Constr. Build. Mater., 169: 553-566. DOI:
https://doi.org/10.1016/j.conbuildmat.2018.02.216
Institute–ACI, A. C. 2009. “Guide for selecting proportions for no-slump concrete (ACI 211.3 R-02)”. ACI Committee 211, Detroit, USA.
Noroozi, R., Shafabakhsh, G., Kheyroddin, A. and Moghaddam, A. M. 2019. “Investigating the effects of recycled PET particles, shredded recycled steel fibers and metakaolin powder on the properties of RCCP”. Constr. Build. Mater., 224: 173-187. DOI:
https://doi.org/10.1016/j.conbuildmat.2019.07.012
Osipov, A., Sharkunov, S., Semenenok, S. and Magiton, A. 1992. “Roller compacted concrete with high values of strength, frost resistance, and impermeability”. Hydrotech. Constr., 26(7): 400-404. DOI:
https://doi.org/10.1007/BF01545014.
Qasrawi, H. Y., Asi, I. M. and Wahhab, H. A. A. 2005. “Proportioning RCCP mixes under hot weather conditions for a specified tensile strength”. Cement Concrete Res., 35(2): 267-276. DOI:
https://doi.org/10.1016/j.cemconres.2004.04.030.
Rahmani, E., Sharbatdar, M. K. and Beygi, M. 2020. “A comprehensive investigation into the effect of water to cement ratios and cement contents on the physical and mechanical properties of Roller Compacted Concrete Pavement (RCCP)”. Constr. Build. Mater., 253: 119177. DOI:
https://doi.org/10.1016/j.conbuildmat.2020.119177.
Rooholamini, H., Hassani, A. and Aliha, M. 2018. “Evaluating the effect of macro-synthetic fibre on the mechanical properties of roller-compacted concrete pavement using response surface methodology”. Constr. Build. Mater., 159: 517-529. DOI:
https://doi.org/10.1016/j.conbuildmat.2017.11.002
Şengün, E., Alam, B., Shabani, R. and Yaman, I. 2019. “The effects of compaction methods and mix parameters on the properties of roller compacted concrete mixtures”. Constr. Build. Mater., 228: 116807. DOI:
https://doi.org/10.1016/j.conbuildmat.2019.116807
Shafiq, N., Zahid, M. and Jalal, A. 2018. “Investigating the effects of solarcure curing method on the compressive strength, microstructure and polymeric reaction of fly ash based geopolymer”. Constr. Build. Mater., 181: 227-237.
Siamardi, K. and Shabani, S. 2021. “Evaluation the effect of micro-synthetic fiber on mechanical and freeze-thaw behavior of non-air-entrained roller compacted concrete pavement using response surface methodology”. Constr. Build. Mater., 295: 123628.
Sukontasukkul, P., Chaisakulkiet, U., Jamsawang, P., Horpibulsuk, S., Jaturapitakkul, C. and Chindaprasirt, P. 2019. “Case investigation on application of steel fibers in roller compacted concrete pavement in Thailand”." Case Stud. Constr. Mater., 11: e00271. DOI:
https://doi.org/10.1016/j.cscm.2019.e00271
Zahid, M., Shafiq, N., Isa, M. H. and Gil, L. 2018. “Statistical modeling and mix design optimization of fly ash based engineered geopolymer composite using response surface methodology”. J. Clean. Prod., 194: 483-498. DOI:
https://doi.org/10.1016/j.jclepro.2018.05.158