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Articles

Proportioning of self–compacting concrete mixes based on target plastic viscosity and compressive strength: Part I - mix design procedure

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Pages 199-216 | Received 02 Dec 2014, Accepted 07 Apr 2015, Published online: 13 May 2015

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Mahya Askarian, Siavash Fakhretaha Aval & Alireza Joshaghani. (2018) A comprehensive experimental study on the performance of pumice powder in self-compacting concrete (SCC). Journal of Sustainable Cement-Based Materials 7:6, pages 340-356.
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Joseph Jean Assaad. (2017) Influence of recycled aggregates on dynamic/static stability of self-consolidating concrete. Journal of Sustainable Cement-Based Materials 6:6, pages 345-365.
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M.S. Abo Dhaheer, M.M. Al-Rubaye, W.S. Alyhya, B.L. Karihaloo & S. Kulasegaram. (2016) Proportioning of self-compacting concrete mixes based on target plastic viscosity and compressive strength: Part II - experimental validation. Journal of Sustainable Cement-Based Materials 5:4, pages 217-232.
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Articles from other publishers (15)

U. V. Narayana RaoCh. Naga Satish Kumar. (2023) Mechanical Properties of High Strength Self Compacting Concrete Based on Rheological Mix Proportioning. Civil and Environmental Engineering 19:1, pages 260-270.
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Dorys C. González, Álvaro Mena, Gonzalo Ruiz, José J. Ortega, Elisa Poveda, Jesús Mínguez, Rena Yu, Ángel De La Rosa & Miguel Á. Vicente. (2023) Size effect of steel fiber–reinforced concrete cylinders under compressive fatigue loading: Influence of the mesostructure. International Journal of Fatigue 167, pages 107353.
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Abdullah Alshahrani, Sivakumar Kulasegaram & Abhishek Kundu. (2022) Elastic modulus of self-compacting fibre reinforced concrete: Experimental approach and multi-scale simulation. Case Studies in Construction Materials, pages e01723.
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Abdulkarim Mimoun & Sivakumar Kulasegaram. (2022) Plastic-viscosity-based mix design and effect of limestone on self-compacting concrete. Proceedings of the Institution of Civil Engineers - Construction Materials, pages 1-15.
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Ángel De La Rosa, Gonzalo Ruiz, Enrique Castillo & Rodrigo Moreno. (2022) Probabilistic Assessment of the Dynamic Viscosity of Self-Compacting Steel-Fiber Reinforced Concrete through a Micromechanical Model. Materials 15:8, pages 2763.
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Abdulkarim Mimoun & Sivakumar Kulasegaram. (2022) Assessing the Effect of Coarse Aggregate Size on Self-Compacting Fibre Reinforced Concrete Mix. International Journal of Civil Infrastructure.
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Abdullah Alshahrani, Tianyi Cui & Sivakumar Kulasegaram. (2022) Effect of Sand to Aggregate Ratio on the Properties of Self-Compacting High-Performance Concrete. International Journal of Civil Infrastructure.
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Ángel De La Rosa, Lucía Garijo, Gonzalo Ruiz & Rodrigo Moreno. (2021) Non-linear rheological behavior of superplasticized cementitious suspensions at high shear rates. Construction and Building Materials 306, pages 124825.
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Abubakar Muhammad, Karl-Christian Thienel & Ricarda Sposito. (2021) Suitability of Blending Rice Husk Ash and Calcined Clay for the Production of Self-Compacting Concrete: A Review. Materials 14:21, pages 6252.
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Jian Ma. (2021) Study on Quasi-Static Mechanical Property of SFRSCC. Journal of Physics: Conference Series 2021:1, pages 012079.
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Ángel De La Rosa, Gonzalo Ruiz, Enrique Castillo & Rodrigo Moreno. (2021) Calculation of Dynamic Viscosity in Concentrated Cementitious Suspensions: Probabilistic Approximation and Bayesian Analysis. Materials 14:8, pages 1971.
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Tumadhir Merwai Borhan, M. S. Abo Dhaheer & Zaid Abdulzahra Mahdi. (2020) Characteristics of Sustainable Self-compacting Concrete Reinforced by Fibres from Waste Materials. Arabian Journal for Science and Engineering 45:5, pages 4359-4367.
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Ángel de la Rosa, Elisa Poveda, Gonzalo Ruiz & Héctor Cifuentes. 2020. Rheology and Processing of Construction Materials. Rheology and Processing of Construction Materials 11 18 .
S. Kulasegaram & B.L. Karihaloo. 2018. Computational Modelling of Concrete Structures. Computational Modelling of Concrete Structures 173 182 .
Muna AL-Rubaye, Sivakumar Kulasegaram & Bhushan Lal Karihaloo. (2017) Simulation of self-compacting concrete in an L-box using smooth particle hydrodynamics. Magazine of Concrete Research 69:12, pages 618-628.
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