Acceso abierto

Influence of the Air-Entraining Agent in the Concrete Coating on the Reinforcement Corrosion Process in Case of Simultaneous Action of Chlorides and Frost


Cite

1. Ahmad S., Reinforcement corrosion in concrete structures, its monitoring and service life prediction - a review. Cement & Concrete Composites 25(4-5) (2003) 459-471.10.1016/S0958-9465(02)00086-0Search in Google Scholar

2. Shi XM., Xie N, Fortunate KJ., Gong J., Durability of steel reinforced concrete in chloride environments: An overview. Constructions and Buildings Materials 30 (2012) 125-138.10.1016/j.conbuildmat.2011.12.038Search in Google Scholar

3. Andrade C., Alonso C., Molina F.J., Cover cracking as a function of bar corrosion. Part I. Experimental test. Materials and Structures 26(8) (1993) 453-464.10.1007/BF02472805Search in Google Scholar

4. Koteš P., Brodňan M., Bahleda F., Diagnostics of corrosion on a real bridge structure. Advances in Materials Science and Engineering 1 (2016) 1-10.Search in Google Scholar

5. Bacharz M., Goszczyńska B., Trąmpczyński W., Analysis of destructive processes in unloaded early-age concrete with the acoustic emission method. Procedia Engineering 108 (2015) 245-253.Search in Google Scholar

6. Owsiak Z., Grzmil W., The influence of carbonation of self-compacting concrete with granulated blastfurnace slag addition on its chosen properties. Cement Wapno Beton 79 (2013) 137-144.Search in Google Scholar

7. Brodňan M., Bahleda F., Koteš P., Analysis of mechanical properties of concrete of frozen and unfrozen specimens. Procedia Engineering 91 (2014) 435-440.Search in Google Scholar

8. Kotwa A., Spychał E., Influence of mineral additives properties of concrete. Structure and Environment 8 (2016) 15-20.Search in Google Scholar

9. Garbacik A., Drozdz W., Giergiczny Z., Special cements and concrete durability. Underground Infrastructure of Urban Areas 3 (2015) 13-20.Search in Google Scholar

10. Divsholi B.S., Lim T.Y.D., Teng S., Durability properties and microstructure of ground granulated blast furnace slag cement concrete. International Journal of Concrete Structures and Materials 8 (2014) 157-164.Search in Google Scholar

11. Boos P., Giergiczny Z., Testing the frost resistance of concrete with different cement types - experience from laboratory and practice. Architecture Civil Engineering Environment 2 (2010) 41-51.Search in Google Scholar

12. Giergiczny Z., Baran T., Dziuk D., Ostrowski M., The increase of concrete frost resistance by using cement with air-entraining agent. Cement Wapno Beton 21 (2016) 96-104.Search in Google Scholar

13. Molendowska A., Wawrzeńczyk J., Freeze – thaw resistance of air-entrained high strength concrete. Structure and Environment 9(1) (2017) 25-33.Search in Google Scholar

14. Information on http://www.germann.org/TestSystems/GalvaPulse/GalvaPulse.pdf, 2009.Search in Google Scholar

15. Grzmil W., Raczkiewicz W., Evaluation of the effect of cement type on the carbonation of concrete and the corrosion of reinforcement in reinforced concrete samples. Cement Wapno Beton 22(4) (2017) 311-319.Search in Google Scholar

16. Song H.W., Saraswathy V., Corrosion monitoring of reinforced concrete structures - A review. International Journal of Electrochemical Science 2 (2007) 1-28.Search in Google Scholar

17. Raczkiewicz W., Effect of concrete addition of selected micro-fibers on the reinforcing bars corrosion in the reinforced concrete specimens. Advances in Materials Science 16(3) (2016) 38-46.10.1515/adms-2016-0015Search in Google Scholar

eISSN:
2083-4799
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Materials Sciences, Functional and Smart Materials