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Articles

Optimum moisture content in roller-compacted concrete pavement

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Pages 1769-1779 | Received 24 Oct 2017, Accepted 07 Jan 2019, Published online: 31 Jan 2019

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M. Selvam & Surender Singh. (2023) Tailoring of Compaction Parameters of the Vibratory Table and Vibratory Hammer for Roller Compacted Concrete Pavements to Resemble Field Properties. Transportation Research Record: Journal of the Transportation Research Board.
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Hai-Van Thi Mai, Son Hoang Trinh & Hai-Bang Ly. (2023) Enhancing Compressive strength prediction of Roller Compacted concrete using Machine learning techniques. Measurement 218, pages 113196.
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M. Selvam & Surender Singh. (2023) Influence of Compaction Methods on the Optimum Moisture Content and Performance of Roller Compacted Concrete Pavements. Journal of Materials in Civil Engineering 35:7.
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H.S. Gökçe, N. Öksüzer, H.A. Kamiloğlu & F. Yılmaz. (2023) Gamma-ray and neutron shielding capability of blended cement-stabilized barite fillers developed by maximum density method. Progress in Nuclear Energy 161, pages 104743.
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Hosein Arabyarmohammadi, Mohammad Kazem Sharbatdar & Hosein Naderpour. (2022) Experimental Investigation of Mix Proportions Effects on Roller-Compacted Concrete Properties Using Response Surface Methodology. International Journal of Pavement Research and Technology 16:4, pages 1021-1046.
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M. Selvam, Kalyan NSSP, Ramesh Kannan Kandasami & Surender Singh. (2023) Assessing the effect of different compaction mechanisms on the internal structure of roller compacted concrete. Construction and Building Materials 365, pages 130072.
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. (2023) Review on Influence of Compaction Mechanisms on Roller-Compacted Concrete Pavement Performance. ACI Materials Journal 120:1.
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Onur Ozturk, Hakan Nuri Atahan & Nilufer Ozyurt. (2022) Effects of Synthetic Fibers on the Mechanical Properties and Thickness Requirements of Roller-Compacted Concrete for Pavements. Journal of Transportation Engineering, Part B: Pavements 148:4.
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M. Selvam & Surender Singh. (2022) Material Selection and Mixture Proportioning Methods for Sustainable Roller-Compacted Concrete Pavements. Journal of Materials in Civil Engineering 34:11.
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Xun Wang, Junhua Wang, Syed Minhaj Saleem Kazmi & Yu-Fei Wu. (2022) Development of new layered compression casting approach for concrete. Cement and Concrete Composites 134, pages 104738.
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Xuejiang Lan, Xiao Zhang, Zhongqing Hao & Yongbao Wang. (2022) Strength and shrinkage properties of cement stabilized macadam bases incorporating 0–2.36 millimetre recycled fine aggregate. Case Studies in Construction Materials 16, pages e00984.
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Mohammad Kazem Sharbatdar & Farzam Rahmati. (2022) Experimental evaluation of multi-functional effects of fibers on mechanical and performance properties of Roller-compacted concrete pavements (RCCP). Construction and Building Materials 316, pages 125890.
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M. Selvam, Solomon Debbarma, Surender Singh & Xijun Shi. (2022) Utilization of alternative aggregates for roller compacted concrete pavements – A state-of-the-art review. Construction and Building Materials 317, pages 125838.
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Kianoush Siamardi & Shahin Shabani. (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. Construction and Building Materials 295, pages 123628.
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Mamdouh Mohamed & Dai Q. Tran. (2021) Risk-based inspection for concrete pavement construction using fuzzy sets and bayesian networks. Automation in Construction 128, pages 103761.
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E. Rahmani, M.Kazem. Sharbatdar & M. H.A.Beygi. (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). Construction and Building Materials 253, pages 119177.
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Hedelvan Emerson Fardin & Adriana Goulart dos Santos. (2020) Roller Compacted Concrete with Recycled Concrete Aggregate for Paving Bases. Sustainability 12:8, pages 3154.
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Mohammad Hashemi, Payam Shafigh, Mehdi Abbasi & Iman Asadi. (2019) The effect of using low fines content sand on the fresh and hardened properties of roller-compacted concrete pavement. Case Studies in Construction Materials 11, pages e00230.
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