Affiliation:
1. Odessa State Academy of Civil Engineering & Architecture
2. University North
Abstract
Abstract
Modified concretes and fiber concretes for rigid pavements have been investigated. Four-factor experiment was conducted. The amount of Portland cement, polypropylene fiber, metakaolin and polycarboxylate superplasticizer varied in the experiment. All mixtures had the same mobility S2.
The active mineral additive metakaolin increases the compressive strength of concrete and its tensile strength in bending. The amount of metakaolin at the level of 15.20 kg/m3 is rational. Due to a decrease in W/C with an increase in the amount of superplasticizer Coral ExpertSuid-5 to 0.9.1%, the compressive strength of concrete increases by 5.7 MPa, the tensile strength in bending increases by 0.5.0.6 MPa. Due to the introduction of polypropylene fiber, the tensile strength of concrete in bending increases by 0.6.0.9 MPa, the frost resistance of concrete increases by 50 cycles. Due to the use of a rational amount of superplasticizer and metakaolin, the frost resistance of concretes and fiber concretes concrete increases by 50-100 cycles. The use of a rational amount of modifiers and fiber reduces the abrasion of concretes by 40.45%.
The developed modified fiber concretes of rigid pavements, depending on the amount of Portland cement, have compressive strength from 55 MPa to 70 MPa, tensile strength in bending from 8 MPa to 9.5 MPa, frost resistance from F350 to F450, abrasion from 0.30 to 0.40 g/cm2. Such strength, frost resistance and abrasion resistance allow the use of fiber concretes in pavements with the greatest load and ensures high durability of the material and corresponds to the directions and tasks of the state scientific and technical program “National Transport Strategy of Ukraine for the period up to 2030”
Reference12 articles.
1. Vozny, S.P. (2017). Prospects for the development of cement concrete roads in Ukraine. Modern technologies and methods of calculations in construction, 6, 47-55.
2. Chen, Y., Cen, GP., Cui, YH. (2018). Comparative study on the effect of synthetic fiber on the preparation and durability of airport pavement concrete. Construction and Building Materials, 184, 34-44.
3. Neville, A.M. (2000). Properties of Concrete (4th ed.), Longman.
4. Liu, J., Yu, C., Ran, Q., Yang, Y. (2019). Recent advance of chemical admixtures in concrete. Cement and Concrete Research, 124, 105834.
5. Gupta, S., Rao, V.V.L.K., Sengupta, J. (2008). Evaluation of polyester fiber reinforced concrete for use in cement concrete pavement works. Road materials and pavement design, 9 (3), 441-461.
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献