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Original Articles

Strength prediction of cement-stabilised reclaimed asphalt pavement and lateritic soil blends

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Pages 332-338 | Received 25 Aug 2016, Accepted 24 Jan 2017, Published online: 14 Mar 2017

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William Fedrigo, Washington Peres Núñez, Daniel Pinheiro Fernandes, Lucas Marin Malabarba, Jorge Augusto Pereira Ceratti & Lélio Antônio Teixeira Brito. (2021) Effects of RAP residual asphalt binder type, content and ageing on the mechanical behaviour of cold recycled cement-treated mixtures. Road Materials and Pavement Design 22:6, pages 1389-1406.
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Silvia Caro, Juan Pablo Agudelo, Bernardo Caicedo, Luisa Fernanda Orozco, Fernando Patiño & Natalia Rodado. (2019) Advanced characterisation of cement-stabilised lateritic soils to be used as road materials. International Journal of Pavement Engineering 20:12, pages 1425-1434.
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Articles from other publishers (21)

J. Suebsuk, A. Kampala, P. Waiyakorn, C. Suksiripattanapong & P. Chindaprasirt. (2023) Variations in strength and stiffness of cement-stabilized reclaimed asphalt pavement and marginal lateritic soil blends in tropical climate. Construction and Building Materials 409, pages 134062.
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Nattapong Damrongwiriyanupap, Sangsan Wongchairattana, Tanakorn Phoo-Ngernkham, Aruz Petcherdchoo, Suchart Limkatanyu & Prinya Chindaprasirt. (2023) Influence of Recycled Glass on Strength Development of Alkali-Activated High-Calcium Fly Ash Mortar. Advances in Materials Science and Engineering 2023, pages 1-11.
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Ambika Behl, G. Bharath & Amit Kumar. 2023. Recent Trends in Transportation Infrastructure, Volume 1. Recent Trends in Transportation Infrastructure, Volume 1 177 187 .
Luíza Rijo Valoura, Matheus Francisco Da Silva & Ana Paula Furlan. (2022) Laboratory investigation of soil-aggregate-cement mixture. TRANSPORTES 30:3, pages 2646.
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Andressa da Silva, Lucas Festugato, João Victor Linch DaroncoEstéfano da Silva Menger. (2022) Mechanical Response of a Sand, Reclaimed-Asphalt Pavement, and Portland Cement Mixture. Journal of Materials in Civil Engineering 34:9.
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Nattapong Damrongwiriyanupap, Todsaporn Srikhamma, Chittinat Plongkrathok, Tanakorn Phoo-ngernkham, Worathep Sae-Long, Sakonwan Hanjitsuwan, Piti Sukontasukkul, Long-yuan Li & Prinya Chindaprasirt. (2022) Assessment of equivalent substrate stiffness and mechanical properties of sustainable alkali-activated concrete containing recycled concrete aggregate. Case Studies in Construction Materials 16, pages e00982.
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Jun Zhang, Jinxiao Bai & Shouxin Wang. (2022) Fatigue damage evolution rule of cement stabilized macadam used in pavement’s base course at different curing time. Construction and Building Materials 325, pages 126827.
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Nattapong Damrongwiriyanupap, Akaraphol Wachum, Kamonphop Khansamrit, Satakhun Detphan, Sakonwan Hanjitsuwan, Tanakorn Phoo-ngernkham, Piti Sukontasukkul, Long-yuan Li & Prinya Chindaprasirt. (2021) Improvement of recycled concrete aggregate using alkali-activated binder treatment. Materials and Structures 55:1.
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Sarella Chakravarthi & S. Shankar. (2021) Utilization of recycled aggregates in cement-treated bases: a state-of-the-art review. Innovative Infrastructure Solutions 6:4.
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Rishi Singh Chhabra, G.D.R.N. Ransinchung & Sk Sohel Islam. (2021) Performance analysis of cement treated base layer by incorporating reclaimed asphalt pavement material and chemical stabilizer. Construction and Building Materials 298, pages 123866.
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William Fedrigo, Washington Peres Núñez & Alex T. Visser. (2020) A review of full-depth reclamation of pavements with Portland cement: Brazil and abroad. Construction and Building Materials 262, pages 120540.
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Behnam Ghorbani, Arul Arulrajah, Guillermo Narsilio & Suksun Horpibulsuk. (2020) Experimental and ANN analysis of temperature effects on the permanent deformation properties of demolition wastes. Transportation Geotechnics 24, pages 100365.
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Jirayut Suebsuk & Panupong Panpipat. (2020) Compressive Strength and Workability of Cement Mortar Containing Recycled Asphalt Pavement. Key Engineering Materials 856, pages 384-390.
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Hernán Gonzalo-Orden, Alaitz Linares-Unamunzaga, Heriberto Pérez-Acebo & Jesús Díaz-Minguela. (2019) Advances in the Study of the Behavior of Full-Depth Reclamation (FDR) with Cement. Applied Sciences 9:15, pages 3055.
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Komkorn Chaidachatorn, Jirayut Suebsuk, Suksun Horpibulsuk & Arul Arulrajah. (2019) Extended water/cement ratio law for cement mortar containing recycled asphalt pavement. Construction and Building Materials 196, pages 457-467.
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Maheshbabu Jallu & Sireesh Saride. 2019. Advances in Geosynthetics Engineering. Advances in Geosynthetics Engineering 124 136 .
Arooran Sounthararajah, Ha Hong BuiNhu NguyenPeerapong JitsangiamJayantha Kodikara. (2018) Early-Age Fatigue Damage Assessment of Cement-Treated Bases under Repetitive Heavy Traffic Loading. Journal of Materials in Civil Engineering 30:6.
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Phuttipong Sudla, Suksun Horpibulsuk, Avirut Chinkulkijniwat, Arul Arulrajah, Martin D. Liu & Menglim Hoy. (2018) Marginal lateritic soil/crushed slag blends as an engineering fill material. Soils and Foundations 58:3, pages 786-795.
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Emmanuel Mengue, Hussein Mroueh, Laurent Lancelot & Robert Medjo Eko. (2018) Design and parametric study of a pavement foundation layer made of cement-treated fine-grained lateritic soil. Soils and Foundations 58:3, pages 666-677.
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William Fedrigo, Washington Peres Núñez, Mario Alexander Castañeda López, Thaís Radünz Kleinert & Jorge Augusto Pereira Ceratti. (2018) A study on the resilient modulus of cement-treated mixtures of RAP and aggregates using indirect tensile, triaxial and flexural tests. Construction and Building Materials 171, pages 161-169.
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Apichat Suddeepong, Artit Intra, Suksun Horpibulsuk, Cherdsak Suksiripattanapong, Arul Arulrajah & Jack Shuilong Shen. (2018) Durability against wetting-drying cycles for cement-stabilized reclaimed asphalt pavement blended with crushed rock. Soils and Foundations 58:2, pages 333-343.
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