Effect of polydisperse reinforcement on the fresh and physical-mechanical properties of self-compacting concrete

被引:6
作者
Ibragimov, Ruslan [1 ]
Bogdanov, Ruslan [1 ]
Miftakhutdinova, Liya [1 ]
Fediuk, Roman [2 ,3 ]
Vatin, Nikolai Ivanovich [3 ]
de Azevedo, Afonso R. G. [4 ]
机构
[1] Kazan State Univ Architecture & Engn, Kazan 420043, Russia
[2] Far Eastern Fed Univ, Polytech Inst, Vladivostok 690922, Russia
[3] Peter Great St Petersburg Polytech Univ, St Petersburg 195251, Russia
[4] UENF State Univ Northern Rio deJaneiro, LECIV Civil Engn Lab, Ave Alberto Lamego 2000, BR-28013602 Campos Dos Goytacazes, RJ, Brazil
关键词
Fiber concrete; Cement composite; Strength; Self -compacting concrete; COMPOSITE BINDERS; STRENGTH; FIBERS; CEMENT;
D O I
10.1016/j.cscm.2022.e01188
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The development of promising concrete mixtures with improved performance is an important scientific problem of modern building materials science. This article presents the effect of mono and polydisperse reinforcement on the rheological properties of concrete mixtures and the physical and mechanical properties of self-compacting concrete (SCC). A central compositional plan determined the content of polydisperse reinforcement in the composition of the SCC: metal fiber of 0.56% (by volume), polypropylene fiber of 0.35% (by volume). It is shown that the installation of concreted structures with a slope of up to 4% is possible with the following rheological parameters of the concrete mixture: within the spreading grade SF1, the ultimate shear stress is 23-28 Pa, viscosity (spreading test t500 according to EN 12350-8:2019) - 8 - 13 s. At the same time, the lower limit of the identified intervals of rheotechnological parameters is due to the content of metal fiber, with an increase in which from 0.5% to 0.8% (by volume) the workability decreases (from 59 to 60 cm to 54-55 cm) and the ultimate shear stress increases ( by 2.5-3 Pa). The upper limit of the studied parameters is due to the content of polypropylene fiber (0.3-0.4% by volume) and metakaolin (4-5%), with an increase in which the viscosity increases (by 30-35%). Self-compacting concrete has been developed with high values of frost resistance and water resistance, recommended for use in load-bearing building structures, industrial floors, and bending elements.
引用
收藏
页数:11
相关论文
共 35 条
[1]   Effect of fiber characteristics on fresh properties of fiber-reinforced concrete with adapted rheology [J].
Abdelrazik, Ahmed T. ;
Khayat, Kamal H. .
CONSTRUCTION AND BUILDING MATERIALS, 2020, 230
[2]   The effect of fibres in the rheology of self-compacting concrete [J].
Alberti, M. G. ;
Enfedaque, A. ;
Galvez, J. C. .
CONSTRUCTION AND BUILDING MATERIALS, 2019, 219 :144-153
[3]   Fly Ash-Based Eco-Efficient Concretes: A Comprehensive Review of the Short-Term Properties [J].
Amran, Mugahed ;
Fediuk, Roman ;
Murali, Gunasekaran ;
Avudaiappan, Siva ;
Ozbakkaloglu, Togay ;
Vatin, Nikolai ;
Karelina, Maria ;
Klyuev, Sergey ;
Gholampour, Aliakbar .
MATERIALS, 2021, 14 (15)
[4]   Investigation of the Potential Use of Curaua Fiber for Reinforcing Mortars [J].
Azevedo, Afonso R. G. de ;
Klyuev, Sergey ;
Marvila, Markssuel T. ;
Vatin, Nikolai ;
Alfimova, Nataliya ;
Lima, Thuany E. S. de ;
Fediuk, Roman ;
Olisov, Andrej .
FIBERS, 2020, 8 (11) :1-13
[5]   Process of hydration and structure formation of the modified self-compacting concrete [J].
Bogdanov, R.R. ;
Ibragimov, R.A. .
Magazine of Civil Engineering, 2017, 73 (05) :14-24
[6]   Improvement of Performances of the Gypsum-Cement Fiber Reinforced Composite (GCFRC) [J].
Chernysheva, Natalia ;
Lesovik, Valery ;
Fediuk, Roman ;
Vatin, Nikolai .
MATERIALS, 2020, 13 (17)
[7]  
EFNARC F., 2002, SPECIFICATION GUIDEL
[8]   Increase in composite binder activity [J].
Fediuk, R. ;
Smoliakov, A. ;
Stoyushko, N. .
INTERNATIONAL CONFERENCE AND YOUTH SCIENTIFIC SCHOOL ON MATERIALS AND TECHNOLOGIES OF NEW GENERATIONS IN MODERN MATERIALS SCIENCE, 2016, 156
[9]   Composite binders for concrete of protective structures [J].
Fediuk, R. S. ;
Lesovik, V. S. ;
Mochalov, A., V ;
Otsokov, K. A. ;
Lashina, I., V ;
Timokhin, R. A. .
MAGAZINE OF CIVIL ENGINEERING, 2018, 82 (06) :208-218
[10]   Using thermal power plants waste for building materials [J].
Fediuk, R. S. ;
Smoliakov, A. K. ;
Timokhin, R. A. ;
Batarshin, V. O. ;
Yevdokimova, Yu G. .
INNOVATIONS AND PROSPECTS OF DEVELOPMENT OF MINING MACHINERY AND ELECTRICAL ENGINEERING, 2017, 87